Cosmetic manufacturing apparatus, control method thereof, and cosmetic manufacturing system
The cosmetic manufacturing apparatus automates the production process, addressing long manufacturing times and cumbersome assembly, by integrating automated components and control methods to produce personalized cosmetics efficiently.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- AMOREPACIFIC CORP
- Filing Date
- 2021-09-17
- Publication Date
- 2026-05-11
AI Technical Summary
Conventional cosmetic manufacturing apparatuses take a long time to produce customized cosmetics, leading to decreased utilization due to user boredom and require manual assembly steps that are cumbersome for operators.
A cosmetic manufacturing apparatus with automated components including a main body, parts supply unit, cosmetic material supply unit, transfer means, and control unit, capable of mixing and assembling cosmetic containers efficiently, and a control method that automates the manufacturing process based on user skin condition data.
The apparatus automates cosmetic production, increases productivity, and reduces manufacturing time while ensuring personalized cosmetics are produced efficiently.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to a cosmetic manufacturing apparatus, a control method thereof, and a cosmetic manufacturing system.
Background Art
[0002] Cosmetics are used for beauty and skin health, and the needs of consumers who want to use cosmetics suitable for themselves are increasing. To meet such needs, various types of user cosmetic manufacturing apparatuses have been proposed.
[0003] Generally, a cosmetic manufacturing apparatus operates by measuring or diagnosing a user's skin condition, calculating a blending ratio of a cosmetic suitable for the user based on the measurement, and then mixing the cosmetic according to the ratio to manufacture a cosmetic. Recently, with the development of technology, such a cosmetic manufacturing apparatus has been proposed as an automated apparatus in which a series of processes can be sequentially performed.
[0004] However, a conventional cosmetic manufacturing apparatus has the following problems. A conventional cosmetic manufacturing apparatus has a problem that it takes a very long time to manufacture a cosmetic desired by a user. In addition, the cosmetic manufacturing apparatus can be provided so that the process of manufacturing a cosmetic is continuously performed from measuring or diagnosing a user's skin condition. From the user's perspective, waiting for the completion of a cosmetic in front of the cosmetic manufacturing apparatus is just a boring process. Therefore, although one or two uses due to curiosity can be expected, the utilization rate of the cosmetic manufacturing apparatus may decrease in the long run.
[0005] In addition, in order for the cosmetic provided by the cosmetic manufacturing apparatus to be transmitted to an actual user, an operator who operates the cosmetic manufacturing apparatus needs to perform additional operations such as attaching a lid of a cosmetic container for finishing the assembly of the cosmetic container containing the cosmetic, attaching and raising a discharge member, and pulling out the cosmetic container from the cosmetic manufacturing apparatus and handing it over to the user, which is troublesome.
Prior Art Documents
[0006] [Patent Document 1] Korean Registered Patent No. 10-1299849 (Published September 17, 2013) [Overview of the Initiative] [Problems that the invention aims to solve]
[0007] A cosmetic manufacturing apparatus, a control method thereof, and a cosmetic manufacturing system according to one embodiment of the present invention have been proposed to solve the above-mentioned problems, and aim to provide a cosmetic manufacturing apparatus, a control method thereof, and a cosmetic manufacturing system that automates the cosmetic manufacturing process and can increase the productivity of cosmetic manufacturers or retailers.
[0008] Furthermore, we aim to provide a cosmetic manufacturing apparatus, a control method thereof, and a cosmetic manufacturing system capable of producing cosmetics suitable for the user's skin condition.
[0009] Furthermore, we aim to provide a cosmetic manufacturing apparatus, a control method thereof, and a cosmetic manufacturing system that can shorten the manufacturing time of cosmetics. [Means for solving the problem]
[0010] According to one aspect of the present invention, a cosmetic manufacturing apparatus may be provided, comprising: a main body 100 that provides a cosmetic manufacturing space 102; a parts supply unit 160 that can provide at least one of a mixing container 161 capable of containing cosmetic materials and components constituting a cosmetic container; a cosmetic material supply unit 200 that can discharge one or more cosmetic materials stored in a cosmetic material storage unit 140 into the mixing container 161; a transfer means 800 that can move at least one of the mixing container 161 and components constituting a cosmetic container that has been provided to the parts supply unit 160; and a control unit 900 that can control at least one of the cosmetic material supply unit 200 and the transfer means 800 so that one or more cosmetic materials stored in the cosmetic material storage unit 140 are mixed and can be contained in at least one of the mixing container 161 and components constituting a cosmetic container.
[0011] Furthermore, a cosmetic manufacturing apparatus may be provided in which the cosmetic manufacturing apparatus 10 further includes a mixing unit 400 that is rotatably provided to mix the cosmetic product contained in the mixing container 161.
[0012] Furthermore, a cosmetic manufacturing apparatus may be provided that includes a plurality of transfer units 801, 802, which move the components provided to the components supply unit 160 to the components storage unit 50, and then assemble the components moved to the components storage unit 50 into a first container provided in a pump-type container or into a second container provided in a compact-type container.
[0013] Furthermore, the transfer means 800 includes a first transfer unit 801 and a second transfer unit 802 that are movable independently of each other, and when assembling a first container that forms a pump-type container, one of the first transfer unit 801 and the second transfer unit 802 grips the cap 1623 of the discharge member 162, and the other is able to move up and down while in contact with the straw 1622 of the discharge member 1622 so that the straw 1622 of the discharge member 162 is aligned with the inlet 1611 of the mixing container 161 located in the component holder unit 50, and when assembling a second container that forms a compact-type container, one of the first transfer unit 801 and the second transfer unit 802 secures the base container 164 that constitutes the second container to the component holder unit 50, and the other is able to tilt the mixing container 161 so that the cosmetic product contained in the mixing container 161 is moved to the base container 164, thus providing a cosmetic manufacturing apparatus.
[0014] Furthermore, the cosmetic manufacturing apparatus may be provided, further including a component mounting unit 50 on which a mixing container 161 in the component supply unit 160 and the components can be moved and secured, wherein the component mounting unit 50 includes a securing section 300 that provides space for a first container provided in a pump-type container to be assembled, and an assembly section 500 that provides space for a second container provided in a compact-type container to be assembled.
[0015] Furthermore, a cosmetic manufacturing apparatus can be provided in which the components in the parts supply unit 160 include a dispensing member 162 provided as part of the first container, the transfer means 800 moves the mixing container 161 in the parts supply unit 160 to the cosmetic supply unit 200 so that the mixing container 161 provided from the parts supply unit 160 in an empty container contains the cosmetic, moves the mixing container 161 in the cosmetic supply unit 200 to the mixing unit 400 so that the cosmetic contained in the mixing container 161 is mixed, moves the mixing container 161 in the mixing unit 400 to the parts storage unit 50 so that the mixing container 161 is provided as part of the first container, and moves the dispensing member 162 in the parts supply unit 160 to the top of the mixing container 161 in the parts storage unit 50, thereby connecting the dispensing member 162 and the mixing container 161.
[0016] Furthermore, the components in the parts supply unit 160 include an impregnation member 168 provided as part of a second container, a base container 164 capable of housing the impregnation member 168, and a cover container 166 capable of covering the impregnation member 168. The transfer means 800 moves the mixing container 161 in the parts supply unit 160 to the cosmetic supply unit 200 so that the mixing container 161 provided from the parts supply unit 160 in an empty container can house the cosmetic, moves the mixing container 161 in the cosmetic supply unit 200 to the mixing unit 400 so that the cosmetic housed in the mixing container 161 can be mixed, moves the base container 164 in the parts supply unit 160 to the parts storage unit 50, and tilts the mixing container 161 storing the cosmetic over the base container 164 so that the base container 164 in the parts storage unit 50 can house the cosmetic.
[0017] Furthermore, a cosmetic manufacturing apparatus may be provided, in which the cosmetic supply unit 200 includes a cosmetic supply means 220 capable of dispensing a fixed amount of cosmetic stored in a cartridge 142, a plurality of discharge ports 232 from which the cosmetic transferred from the cosmetic supply means 220 is discharged, and a mixing container transfer unit 250 that is movable below the discharge ports 232 and fixes the mixing container 161 so that the cosmetic discharged from the plurality of discharge ports 232 can be contained inside the mixing container 161.
[0018] Furthermore, a cosmetic manufacturing apparatus may be provided in which the mixing section 400 includes a first rotating member 402 into which the mixing container 161 is inserted and which is rotatable, and a second rotating member 404 capable of rotating the first rotating member 402, wherein the first rotating member 402 is arranged to be separated by a predetermined distance from the center (M) of the second rotating member 404.
[0019] Furthermore, a cosmetics manufacturing apparatus may be provided in which the control unit 900 can control the first rotating member 402 into which the mixing container 161 is inserted so that it can stop at a predetermined position.
[0020] Furthermore, the component may include a base container 164 and an impregnation member 168 provided as part of a second container, and the cosmetic manufacturing apparatus may further include a moisture-absorbing part 600 capable of impregnating the impregnation member 168 with the cosmetic contained in the base container 164.
[0021] Furthermore, a cosmetic manufacturing apparatus may be provided in which a table 114 is provided on one side of the transfer means 800, the moisture absorption section 600 is provided below the table 114, and a component mounting unit 50 on which at least one of the mixing container 161 and the components can be attached is positioned above the table 114.
[0022] Further, the component supply unit 160 may include a tray 165 on which the assembled product can be placed, a first container component support unit 163 that can support a mixing container 161 provided as a part of the first container, a discharge member 162, a base container 164 provided as a part of the second container, an impregnation member 168, and a second container component support unit 169 that can support a cover container 166. A cosmetic manufacturing apparatus may be provided.
[0023] According to one aspect of the present invention, there may be provided a control method for a cosmetic manufacturing apparatus, including: calculating data for a manufactured cosmetic including a composition ratio by a control unit 900; controlling a cosmetic supply unit 200 and a transfer means 800 by the control unit 900 to discharge the cosmetic stored in a cosmetic storage unit 140 into the mixing container 161 according to the composition ratio; controlling a mixing unit 400 and a transfer means 800 by the control unit 900 to mix the cosmetic discharged into the mixing container 161; and controlling the transfer means 800 by the control unit 900 to store the cosmetic contained in the mixing container 161 in at least one of a first container provided in a pump type container and a second container provided in a compact type container and provide it to a user.
[0024] Further, after the step of mixing the cosmetic discharged into the mixing container 161, if the control unit 900 determines that the cosmetic contained in the mixing container 161 is a sample, the method may further include providing the mixing container 161 to the user and receiving an input from the user as to whether the composition ratio is to be changed.
[0025] Furthermore, a control method for a cosmetic manufacturing apparatus may be provided, in which the step (S20) of controlling the cosmetic supply unit 200 and the transfer means 800 by the control unit 900 to discharge the cosmetic stored in the cosmetic storage unit 140 into the mixing container 161 according to the composition ratio includes the step (S210) of controlling the transfer means 800 by the control unit 900 to move the mixing container 161 in the parts supply unit 160 to the cosmetic supply unit 200, and the step (S220) of controlling the cosmetic supply unit 200 and the transfer means 800 by the control unit 900 to supply the cosmetic to the mixing container 161 according to the composition ratio.
[0026] Furthermore, a control method for a cosmetic manufacturing apparatus may be provided, in which the control unit 900 controls the mixing unit 400 and the transfer means 800 to mix the cosmetic material discharged into the mixing container 161, the control unit 900 controls the transfer means 800 to move the mixing container 161 located in the cosmetic material supply unit 200 to the mixing unit 400, and the control unit 900 controls the mixing unit 400 to rotate and revolve the mixing container 161 to mix the cosmetic material stored in the mixing container 161.
[0027] Further, the step of controlling the transfer means 800 by the control unit 900 to store the cosmetic contained in the mixing container 161 in at least one of the first container provided in a pump-type container and the second container provided in a compact-type container and provide it to the user includes: the step of controlling the transfer means 800 by the control unit 900 to move the mixing container 161 containing the mixed cosmetic to the component placement unit 50; when the type of cosmetic input to the control unit 900 is the first container, the control unit 900 controls the transfer means 800 to move the discharge member 162 in the component supply unit 160 to the upper part of the component placement unit 50, and assembling the discharge member 162 and the mixing container 161 to form the first container; when the type of cosmetic input to the control unit 900 is the second container, the control unit 900 controls the transfer means 800 to move the base container 164, the impregnating member 168, and the cover container 166 in the component supply unit 160 to the component placement unit 50, and assembling the base container 164, the impregnating member 168, and the cover container 166 to form the second container; and the step of controlling the transfer means 800 by the control unit 900 to move the assembled first container or second container to the component supply unit 160. A control method of a cosmetic manufacturing apparatus may be provided.
[0028] According to one aspect of the present invention, there is provided a cosmetic manufacturing system including: a terminal 20 capable of receiving input of information regarding a user context and measuring the skin condition of the user; an operating server 40 capable of collecting and processing data from the terminal 20 and transmitting it to the cosmetic manufacturing apparatus 10; and a cosmetic manufacturing apparatus 10 capable of manufacturing cosmetics according to a composition ratio transmitted from at least one of the terminal 20 and the operating server 40, or calculating a composition ratio by processing information transmitted from at least one of the terminal 20 and the operating server 40.
Effects of the Invention
[0029] A cosmetic manufacturing apparatus, a control method thereof, and a cosmetic manufacturing system according to one embodiment of the present invention have the advantage of automating the cosmetic manufacturing process and potentially increasing the productivity of cosmetic manufacturers or retailers.
[0030] Furthermore, it has the advantage of being able to manufacture cosmetics that are suitable for the user's skin condition. Furthermore, it has the potential to shorten the manufacturing time of cosmetics. [Brief explanation of the drawing]
[0031] [Figure 1] Figure 1 shows the configuration of a cosmetic manufacturing system according to one embodiment of the present invention. [Figure 2] Figure 2 is a perspective view showing the external appearance of the cosmetic manufacturing apparatus in Figure 1. [Figure 3] Figure 3 is a perspective view showing the internal configuration of the cosmetic manufacturing apparatus shown in Figure 2. [Figure 4] Figure 4 is a top view of the interior of the cosmetic manufacturing apparatus shown in Figure 1, viewed from above (transfer means are not shown). [Figure 5] Figure 5 is a perspective view showing the cosmetic supply unit located on one side of the main body of the cosmetic manufacturing apparatus shown in Figure 1. [Figure 6] Figure 6 is a perspective view showing the parts supply unit located on one side of the main body of the cosmetic manufacturing apparatus in Figure 1. [Figure 7] Figure 7 is a perspective view showing a component mounting unit and a moisture absorption unit, which are part of the cosmetic manufacturing apparatus shown in Figure 1. [Figure 8] Figure 8 is a perspective view showing the moisture absorption section, which is a part of the cosmetic manufacturing apparatus shown in Figure 1. [Figure 9] Figure 9 is a perspective view showing the transfer mechanism, which is a part of the cosmetic manufacturing apparatus shown in Figure 1. [Figure 10] Figure 10 is a block diagram showing a configuration that can communicate with the control unit of the cosmetic manufacturing apparatus in Figure 1. [Figure 11] Figure 11 is a flowchart showing the control method for the cosmetic manufacturing apparatus in Figure 1. [Figure 12]Figure 12 is a flowchart illustrating the control method of the cosmetic manufacturing apparatus shown in Figure 1 in more detail. [Figure 13] Figure 13 is a flowchart showing the specific manufacturing process for each type of cosmetic shown in Figure 12. [Figure 14] Figure 14 is a flowchart that combines Figures 12 and 13, showing how to manufacture cosmetic manufacturing equipment according to the type of cosmetic product. [Figure 15] Figure 15 is a view of Figure 7 from direction "A". [Figure 16] Figure 16 is a view of Figure 7 from direction "B". [Figure 17] Figure 17 is a view of Figure 7 from direction "C". [Figure 18] Figure 18 is a cross-sectional view showing the structure of the moisture absorption section's fixed-position holder and the pressurizing section. [Figure 19] Figure 19 is a perspective view showing the first gripper, one of the transfer means in Figure 9. [Figure 20] Figure 20 is a perspective view showing the second gripper, one of the transport means in Figure 9. [Figure 21] Figure 21 is a simplified diagram showing the coupling stage between the mixing container and the dispensing member, which are part of the cosmetic manufacturing apparatus shown in Figure 1. [Figure 22] Figure 22 is a schematic perspective view of the mixing section, which is a part of the cosmetic manufacturing apparatus shown in Figure 1. [Figure 23] Figure 23 is a schematic cross-sectional view of the mixing area in Figure 22. [Figure 24] Figure 24 is a perspective view showing a cosmetic manufacturing apparatus according to another embodiment of the present invention. [Figure 25] Figure 25 is a perspective view showing the parts supply section of the cosmetics manufacturing apparatus in Figure 24. [Modes for carrying out the invention]
[0032] In the following, specific embodiments of the present invention will be described in detail with reference to the drawings. However, in describing the present invention, if it is determined that a specific description of a related known configuration or function may obscure the gist of the present invention, such detailed description will be omitted.
[0033] In the following description, “cosmetics” can be understood as products that act directly or indirectly on the user’s skin to provide a cosmetic effect, protect the skin, improve or alter the condition of the skin, or have one or more of these functions; and “cosmetic composition” can be understood as the substances that make up such cosmetics. In the following, “composition ratio” can be understood as the weight ratio or volume ratio of each cosmetic composition offered as a cosmetic.
[0034] The cosmetic manufacturing apparatus 10 and cosmetic manufacturing system 1 of this embodiment can manufacture custom cosmetics.
[0035] Custom cosmetics can be understood as cosmetics whose composition ratio is determined based on the user's skin condition or the results of an analysis or diagnosis of the skin condition, and which are manufactured according to the determined composition ratio.
[0036] Alternatively, custom cosmetics can be understood as cosmetics manufactured according to a composition ratio determined by the user's will or user context collected through various channels. User context can be understood as data related to the user's life, such as the user's biometric information, spatial information around the user, predetermined time and spatial ranges related to the user's schedule, the user's shopping history, the user's purchase history, and the user's online activity records, and can be transmitted from any device or third party.
[0037] Figure 1 shows the configuration of a cosmetic manufacturing system 1 according to one embodiment of the present invention.
[0038] Referring to Figure 1, a cosmetic manufacturing system 1 according to one embodiment of the present invention may include a cosmetic manufacturing apparatus 10, a terminal 20, and an operating server 40, as a system capable of manufacturing cosmetics by collecting data necessary for manufacturing custom cosmetics and determining the composition ratio. In this embodiment, the cosmetic manufacturing system 1 is described as a system for manufacturing custom cosmetics, and the cosmetic manufacturing apparatus 10 is provided as an apparatus capable of manufacturing custom cosmetics. However, the concept of the present invention is not limited thereto and can also be used to produce cosmetics having a predetermined composition ratio.
[0039] The components constituting the cosmetic manufacturing system 1 may be connected via a network and configured to send and receive data between them, or to transfer data from one to the other. The network may include either a wired network or a wireless network, and is not limited to any type as long as it can transmit data.
[0040] The cosmetic manufacturing apparatus 10 can mix multiple cosmetic ingredients based on composition ratio data necessary for cosmetic manufacturing, and provide them to the user in a cosmetic container. Here, the cosmetic container may include a first container provided in a pump-type container and a second container provided in a compact-type container, as described later.
[0041] Such first and second containers can be understood as containers formed by combining at least one of the following: a mixing container 161 capable of holding cosmetics and components that constitute a cosmetic container.
[0042] For example, if the first container is a pump-type container, the mixing container 161 and a discharge member 162, which is one of the components, may be combined to provide the first container (see Figure 6). However, the concept of the present invention is not necessarily limited to the mixing container 161 being provided as part of the first container; the components may include a separate containment container (not shown) that can be combined with the discharge member 162, and the containment container and the discharge member 162 may be combined to provide the first container.
[0043] Furthermore, if the second container is a compact type container, the base container 164, impregnation member 168, and cover container 166, which are part of the components, can be combined to provide the second container.
[0044] In other words, in this embodiment, the components may include parts that constitute the first container (for example, the discharge member 162 when the mixing container 161 and the discharge member 162 are combined, and the containment container and the discharge member 162 when a separate containment container and the discharge member 162 are combined) and parts that constitute the second container (for example, the base container 164, the impregnation member 168, and the cover container 166).
[0045] Furthermore, the composition ratio data can be understood as electronic data containing multiple cosmetic types and their constituent ratios. Such composition ratio data may be fully processed and provided to the cosmetic manufacturing apparatus 10, or it may be generated by the cosmetic manufacturing apparatus 10 when basic data for processing (including user context) is transmitted to the cosmetic manufacturing apparatus 10.
[0046] For example, composition ratio data may be provided to the cosmetic manufacturing apparatus 10 from a terminal 20 such as a mobile phone, tablet PC, or desktop computer owned by the user. In this case, the composition ratio data may be provided directly from the terminal 20 to the cosmetic manufacturing apparatus 10, or it may be provided to the cosmetic manufacturing apparatus 10 via an operating server 40 managed by the operator of the cosmetic manufacturing apparatus 10. Depending on the embodiment, the terminal 20 may also provide basic data for generating the composition ratio data, such as images of the user's skin.
[0047] Terminal 20 can receive input regarding the user context, and the input information can be transmitted to at least one of the operating server 40 and the cosmetic manufacturing apparatus 10.
[0048] Furthermore, terminal 20 may include a measuring sensor (not shown) for measuring the user's skin condition. For example, the measuring sensor may include one or more of a camera, a moisture sensor, and an oil sensor.
[0049] If the measurement sensor is provided as a camera, the user's skin condition can be captured via the camera provided on the terminal 20, and the user's skin condition can be determined based on the captured skin image.
[0050] The composition ratio data may also be provided to the cosmetic manufacturing apparatus 10 from a measurement sensor in a terminal 20 capable of measuring the user's skin condition.
[0051] Terminal 20 may transmit the results measured by the measurement sensors (e.g., camera, moisture sensor, oil sensor, etc.) directly to the cosmetic manufacturing apparatus 10, or it may transmit skin condition data obtained by analyzing or diagnosing these results to the cosmetic manufacturing apparatus 10.
[0052] In this embodiment, the measurement sensor is described as being provided as part of the terminal 20, but the concept of the present invention is not limited to this, and may include the measurement sensor being provided via a device other than the terminal 20.
[0053] The cosmetic manufacturing apparatus 10 can determine composition ratio data based on the data transmitted from the terminal 20. In some embodiments, the terminal 20 may also transfer the aforementioned skin condition data to the cosmetic manufacturing apparatus 10 via the operating server 40. In this case, the operating server 40 may process the composition ratio data based on the data transmitted from the terminal 20 and provide it to the cosmetic manufacturing apparatus 10.
[0054] Furthermore, the cosmetic manufacturing apparatus 10 may transmit data received from the terminal 20 to the operating server 40, receive composition ratio data generated by the operating server 40, and use it for cosmetic manufacturing.
[0055] As described above, the operating server 40 receives the data necessary for processing the composition ratio data and can either process the composition ratio data and provide it to the cosmetic manufacturing apparatus 10, or it can transmit the transmitted composition ratio data to the cosmetic manufacturing apparatus 10 as is. In this case, the operating server 40 can process composition ratio data tailored to each user based not only on the data transmitted from the terminal 20 but also on separately collected user context, and may transfer the processed composition ratio data to the cosmetic manufacturing apparatus 10 at the request of the user or the cosmetic manufacturing apparatus 10.
[0056] In this embodiment, the cosmetic manufacturing apparatus 10 can assemble a plurality of cosmetic containers having different shapes from each other.
[0057] In this embodiment, the cosmetic manufacturing apparatus 10 is described as being able to assemble two types of cosmetic containers (a first container and a second container), but the concept of the present invention is not limited to this and may include assembling all known cosmetic containers.
[0058] The cosmetic manufacturing apparatus 10 can provide a pump-type container that dispenses cosmetic material by pressure supplied from a pump, and a compact-type container that stores cosmetic material in an impregnation member and allows the cosmetic material to be dispensed using a cosmetic tool such as a puff. Hereinafter, the pump-type container will be referred to as the first container, and the compact-type container as the second container.
[0059] However, this is just one example, and the types of cosmetic containers that the cosmetic manufacturing apparatus 10 can provide are not limited to this.
[0060] For example, the cosmetic manufacturing apparatus 10 may be configured to provide a stick-type container with an applicator, such as a lip tint or mascara, and may provide a cosmetic container consisting of a simple cosmetic container body and cap without a pump. In other words, the types of the first and second containers do not limit the concept of the present invention, and the first and second containers can each be understood as any cosmetic container.
[0061] The detailed configuration of the cosmetic manufacturing apparatus 10 will be described below.
[0062] Figure 2 is a perspective view showing the external appearance of the cosmetic manufacturing apparatus 10 in Figure 1; Figure 3 is a perspective view showing the internal configuration of the cosmetic manufacturing apparatus 10 in Figure 2; Figure 4 is a top view of the interior of the cosmetic manufacturing apparatus in Figure 1, viewed from above (transfer means are not shown); Figure 5 is a perspective view showing the cosmetic supply unit 200 located on one side of the main body of the cosmetic manufacturing apparatus in Figure 1; Figure 6 is a perspective view showing the parts supply unit 160 located on the other side of the main body of the cosmetic manufacturing apparatus in Figure 1; Figure 7 is a perspective view showing the parts stationary unit 50 and the moisture absorption unit 600, which are part of the cosmetic manufacturing apparatus in Figure 1; Figure 8 is a perspective view showing the moisture absorption unit, which is part of the cosmetic manufacturing apparatus in Figure 1; Figure 9 is a perspective view showing the transfer means, which is part of the cosmetic manufacturing apparatus in Figure 1; and Figure 10 is a block diagram showing a configuration that can communicate with the control unit of the cosmetic manufacturing apparatus in Figure 1.
[0063] Referring to Figures 2 to 10, the cosmetic manufacturing apparatus 10 comprises a main body 100 that provides a cosmetic manufacturing space 102, a cosmetic storage section 140 that stores a plurality of cartridges 142 in which cosmetic materials are stored, a component supply section 160 that provides a mixing container 161 capable of containing and mixing cosmetic materials and one or more components that constitute a cosmetic container, a cosmetic supply section 200 that supplies cosmetic materials from the cosmetic storage section 140 to the mixing container 161, a mixing section 400 that applies external force to the mixing container 161 storing the cosmetic materials supplied from the cosmetic supply section 200 to mix the cosmetic materials in the mixing container 161, and a first container and a second The system may include a component storage unit 50 that provides space for assembling a container, a moisture-absorbing unit 600 that impregnates an impregnation member 168, which is provided as a component of a compact container, with cosmetic material, a transfer means 800 that can move components constituting a mixing container 161 and a cosmetic container from one of the cosmetic material supply unit 200, a component supply unit 160, a mixing unit 400, a moisture-absorbing unit 600, and a component storage unit 50 to another, and a control unit 900 that can control at least one of the cosmetic material supply unit 200, the transfer means 800, and the mixing unit 400 to provide a cosmetic or custom cosmetic to a user.
[0064] Here, the component storage unit 50 includes a mounting section 300 that provides space for a first container to be assembled, and an assembly section 500 that provides space for a second container to be assembled, and the mounting section 300 and the assembly section 500 may be located on top of the table 114.
[0065] Depending on the embodiment, the cosmetic manufacturing apparatus 10 may lack one or more of the aforementioned components, and this does not limit the concept of the present invention. For example, if the cosmetic manufacturing apparatus 10 manufactures only the first container, the components of the moisture absorption section 600 and the assembly section 500 may be omitted.
[0066] As described above, the cosmetic manufacturing apparatus 10 can be understood as an apparatus that mixes cosmetic materials according to their composition ratio and provides the mixed cosmetic materials to the user in cosmetic containers (for example, a first container or a second container).
[0067] In this embodiment, the cosmetic manufacturing apparatus 10 is described as being installed in a retail store that sells cosmetics or in any type of sales location where users can visit and purchase cosmetics. However, this is merely an example, and the concept of the present invention is not limited thereto. For example, the cosmetic manufacturing apparatus 10 may be installed in a cosmetics manufacturing plant for mass production, or it may be installed in a space other than a space where cosmetics are sold and used for the purpose of manufacturing cosmetics.
[0068] The main body 100 forms the external appearance of the cosmetic manufacturing apparatus 10 and can provide a cosmetic manufacturing space 102 in which components capable of manufacturing cosmetics (for example, a parts supply unit 160, a cosmetic supply unit 200, a transfer means 800, a parts storage unit 50, a moisture absorption unit 600, etc.) can be installed. In order to provide the cosmetic manufacturing space 102, the main body 100 can have any necessary three-dimensional shape, and in this embodiment, it is shown as an example that it has an overall rectangular parallelepiped shape.
[0069] The cosmetic manufacturing space 102 is equipped with components such as the aforementioned cosmetic storage unit 140, component supply unit 160, cosmetic supply unit 200, component mounting unit 50 (adhesion unit 300 and mixing unit 400), assembly unit 500, moisture absorption unit 600, and transfer means 800. These components may be placed on the base 110 that forms the floor of the cosmetic manufacturing space 102. It is obvious from the embodiment that the above components may be installed on any wall surface forming the cosmetic manufacturing space 102.
[0070] Furthermore, when the cosmetic manufacturing apparatus 10 is viewed from above (see Figure 4), the cosmetic supply unit 200 may be located on the left and right sides, the parts supply unit 160 may be located in the center of the front left, the parts storage unit 50 in the center of the front right, and the transfer means 800 in the center of the rear. The mixing unit 400 may be located behind the parts supply unit 160. In this embodiment, the explanation will be given using the example of two cosmetic supply units 200, one on the left and one on the right. However, this arrangement and the number of cosmetic supply units 200 are merely examples, and their arrangement can be changed as long as the transfer means 800 can move. Note that, based on Figure 3, the front can be understood as the +y direction and the right side as the +x direction.
[0071] Furthermore, the component mounting unit 50 may be positioned on top of the table 114, and the moisture absorption unit 600 may be positioned on the bottom of the table 114.
[0072] Furthermore, the component mounting unit 50 may include a fixing section 300 and an assembly section 500. The assembly section 500 is positioned on one side of the table 114 relative to the fixing section 300, while the pressurized section 640 of the moisture-absorbing section 600 may be exposed on the other side (referencing Figure 4). Here, the pressurized section 640 is exposed through a hole formed in the table 114, and a transfer means 800, described later, can press against the exposed pressurized section 640. The pressurized section 640 is a configuration used in the process of impregnating the impregnation member 168 with cosmetic material during the manufacture of the second container, and a detailed explanation thereof will be given later.
[0073] The main body 100 may include a housing 120 for protecting the cosmetic manufacturing space 102 from the outside space.
[0074] Specifically, the housing 120 constituting the main body 100 may include a front housing 120a in which a transparent window 122 is located, and a rear housing 120b connected to the front housing 120a by a connecting member 123. Here, the connecting member 123 may be a hinge. The user can lift at least a portion of the front housing 120a upward, which may improve the ease of maintenance of the internal components of the cosmetic manufacturing apparatus 10.
[0075] A transparent window 122 may be provided in part of the housing 120 so that the cosmetic manufacturing process taking place in the cosmetic manufacturing space 102 can be observed from the outside. For example, the central front area of the housing 120 may be formed by the transparent window 122, through which the operation of the transfer means 800 and all or part of the work performed in the cosmetic manufacturing space 102 can be exposed to the user, thereby increasing the user's confidence in the custom cosmetics produced by the cosmetic manufacturing apparatus 10.
[0076] Furthermore, a user interface unit 130 may be provided on one side of the housing 120. The user interface unit 130 can provide the user with status information of the cosmetic manufacturing apparatus 10, the manufacturing process of custom cosmetics and related information, and may be configured to receive predetermined information input from the user. For example, the user interface unit 130 may be a touchscreen and may include a microphone and speaker for audio input and output. The position of the user interface unit 130 on the housing 120 is set so as not to overlap with the transparent window 122, and in this embodiment, it is shown as being provided in the area on the front left side of the main body 100.
[0077] The user can perform operations such as analyzing and diagnosing their skin condition via the user interface unit 130, checking the composition ratio data of the custom cosmetics provided to them, adjusting the composition ratio data of the custom cosmetics to be manufactured, and selecting cosmetics with specific composition ratio data. They may also input personal information necessary for personalizing the custom cosmetics to be manufactured.
[0078] Furthermore, at least one side of the housing 120 may be provided with multiple opening / closing doors 126. Users can open the opening / closing doors 126 to replace cartridges 142 or to maintain components located in the cosmetic manufacturing space 102. Below the housing 120, which serves as the cosmetic manufacturing space 102, a lower shelf 127 may be provided for storing various items.
[0079] Furthermore, one side of the housing 120 may be provided with a parts supply door 129 that can be opened and closed as needed. The parts supply door 129 may be provided on the front of the parts supply unit 160, which will be described later, and may be provided so that it can be selectively opened and closed.
[0080] In this case, the parts supply door 129 is provided with a rotating or sliding structure having elastic restoring force, and is pushed open when the tray 165 of the parts supply unit 160 moves to the outside of the main body 100, and then returns to its original state and closes when the tray 165 moves inside the main body 100.
[0081] Furthermore, the user or a separate robot can open the parts supply door 129 and place the components constituting the first container (e.g., the mixing container 161 and the dispensing member 162) and the components constituting the second container (e.g., the base container 164, the impregnation member 168, and the cover container 166) into the parts supply unit 160. Also, once the assembled first or second container is placed in the parts supply unit 160, the user can open the parts supply door 129 and remove the completed product.
[0082] Furthermore, the other side of the housing 120 may be provided with a moisture-absorbing door 128 that can be opened and closed as needed. By providing such a moisture-absorbing door 128, the ease of maintenance of the moisture-absorbing section 600, which will be described later, can be improved.
[0083] On the other hand, when the cosmetic manufacturing apparatus 10 is used to manufacture a second container, the base 110 may be provided with a recovery section 112 for recovering the mixing container 161 that is no longer needed after the cosmetic mixture has been mixed. The recovery section 112 is located adjacent to the assembly section 500 and is provided as a hole perforated in the base 110. The mixing container 161 that has finished discharging into the base container 164 can be recovered by the transfer means 800 simply dropping it onto the recovery section 112. In this case, a recovery box (not shown) for collecting the discarded mixing containers 161 may be provided below the recovery section 112.
[0084] The cosmetic storage unit 140 is located on one side of the main body 100 and may contain multiple cartridges 142. In the following description, one side of the main body 100 is understood to be in one direction relative to the transport means 800 installed on the base 110, and the other side of the main body 100 may be understood to be in a different direction from the aforementioned one. In this embodiment, the cosmetic storage unit 140 is shown as being located on the left and right sides of the transport means 800, respectively, with reference to the drawing.
[0085] Each cartridge 142 may store cosmetic ingredients used as raw materials for cosmetics. Any one cosmetic ingredient may be divided and supplied in multiple cartridges 142. The cartridges 142 may be connected to cosmetic supply means 220, such as a pump, provided in the cosmetic supply unit 200, and may be designed to be replaced when the stored cosmetic is depleted.
[0086] In this embodiment, a plurality of cartridges 142 are provided, and each cartridge 142 stores a predetermined type of cosmetic product. The plurality of cartridges 142 may be arranged side by side on one wall surface constituting the housing 120, and a part of the housing 120 may be formed to be openable for replacement of the cartridges 142.
[0087] Each cartridge 142 can be connected to a cosmetic supply means 220 via a tube 143. The cosmetic stored in the cartridge 142 can be dispensed through the cosmetic supply means 220 to a mixing container 161 located in the mixing container transfer section 250.
[0088] The cosmetic supply unit 200 may be located adjacent to the cosmetic storage unit 140. Specifically, the cosmetic supply unit 200 may be located above the cosmetic storage unit 140. Note that "above" can be understood as the +z direction with reference to Figure 3.
[0089] The cosmetic supply unit 200 can dispense the cosmetic stored in the cartridge 142 into the mixing container 161 in the mixing container transfer unit 250, according to the composition ratio generated by the control unit 900. The composition ratio may be predetermined and stored in memory (not shown), transmitted from the terminal 20 and the operating server 40, or calculated by the control unit 900 based on the transmitted data.
[0090] Furthermore, multiple cosmetic supply units 200 may be provided so as to be separated in independent spaces. In this embodiment, the cosmetic supply units 200 will be described as being provided one on the left side and one on the right side of the main body 100.
[0091] Each cosmetic supply unit 200 may include a cosmetic supply means 220 that provides power for the cosmetic supply unit to transfer the cosmetic stored in the cartridge 142, a plurality of discharge ports 232 from which the cosmetic transferred from the cosmetic supply means 220 is discharged, and a mixing container transfer unit 250 that fixes the mixing container 161 and is provided so as to be movable below the plurality of discharge ports 232 (see Figure 5).
[0092] The cosmetic supply means 220 can draw cosmetic from the cartridge 142 at a predetermined speed and discharge the cosmetic into the mixing container 161. For example, the cosmetic supply means 220 may include a peristaltic pump capable of fine flow rate adjustment.
[0093] In this case, the cosmetic suction and discharge speed of the cosmetic supply means 220 can be varied by predetermined conditions or by control of the control unit 900. For example, the control unit 900 can adjust the supply flow rate and flow rate by controlling the peristaltic pump provided as the cosmetic supply means 220 according to the amount of cosmetic injected into the mixing container 161.
[0094] The cosmetic supply means 220 is supported by the cosmetic supply unit support base 235, and the mixing container transfer unit 250 may be provided below the cosmetic supply means 220.
[0095] Here, one side of the cosmetic supply unit support base 235 is provided with a discharge port 232 from which the cosmetic is discharged, and the mixing container transfer unit 250 is moved below the discharge port 232 so that the cosmetic can be contained in the mixing container 161.
[0096] A connecting channel may be provided between the cosmetic supply means 220 and the discharge port 232 from which the cosmetic is discharged. Here, if the cosmetic supply means 220 is provided by a peristaltic pump, the connecting channel may be a tube 143. In other words, the tube 143 can be understood as a means of connecting the cartridge 142 and the discharge port 232 via the cosmetic supply means 220.
[0097] The cosmetic supply means 220 may be provided in a number corresponding to each cartridge 142, for example, one cosmetic supply means 220 may be connected to one cartridge 142, and each cosmetic supply means 220 may be able to adjust the amount of cosmetic stored in the cartridge 142 that is dispensed.
[0098] The cosmetic supply means 220 can dispense the cosmetic stored in the cartridge 142 into the mixing container 161 which is attached to the mixing container transfer unit 250.
[0099] The mixing container transfer unit 250 may include a groove 2547a for securing the mixing container 161. The mixing container transfer unit 250 may also reciprocate in the direction in which the multiple discharge ports 232 are arranged (y-axis direction).
[0100] The mixing container transfer unit 250 secures the mixing container 161 in the fixing groove 2547a for the mixing container and, while reciprocating the lower part of the discharge port 232, can collect the cosmetic material discharged from multiple discharge ports 232 into the mixing container 161 (see Figure 5). Here, the number of discharge ports 232 may be the same as or greater than the number of cosmetic material supply means 220.
[0101] The mixing container transfer unit 250 may move to the next discharge port 232 after waiting for a predetermined time at the bottom of each discharge port 232. While the mixing container transfer unit 250 waits for the predetermined time, cosmetic material may be discharged from the discharge ports 232 into the mixing container 161.
[0102] Specifically, the mixing container transfer unit 250 may include a mixing container transfer block 254 that moves along a mixing container guide rail 252, a mixing container fixing groove 2547a provided on the upper part of the mixing container transfer block 254 and capable of fixing the mixing container 161, and a mixing container hook lever 255 that extends from the mixing container transfer block 254 and can be gripped by the transfer means 800.
[0103] Furthermore, a guide rail 252 for the mixing container is provided at the lower part of the mixing container transfer section 250, extending along the direction (y-direction) of the outlet 232, and a stopper 256 for the mixing container can be provided at the lower part of the mixing container hook lever 255, into which the mixing container hook lever 255 can be caught. It can be understood that the guide rail 252 for the mixing container and the stopper 256 for the mixing container are provided on the base 110. In addition, the stopper 256 for the mixing container may have multiple grooves into which the mixing container hook lever 255 can be fitted. The spacing between the multiple grooves corresponds to the spacing between the outlets of the cosmetic supply means 220.
[0104] In this embodiment, the movement of the moving block 254 for the mixing container is described using the transfer means 800 as an example. For example, the transfer means 800 can grasp the hook lever 255 for the mixing container, which extends from the moving block 254 for the mixing container, and then reciprocate in the y-axis direction.
[0105] The transfer means 800 can grasp the hook lever 255 for the mixing container to release the restraint of the moving block 254 for the mixing container, move the moving block 254, and then re-restrain the moving block 254 by fitting it into the groove of the stopper 256 for the mixing container at another position, thereby allowing the mixing container 161 to maintain its position stably while the cosmetic is being dispensed. In this case, the moving block 254 for the mixing container is fixed to the stopper 256 for the mixing container, and while one of the cosmetic products is being dispensed into the mixing container 161, the transfer means 800 can freely perform other tasks, thus efficiently configuring the overall manufacturing process and shortening the manufacturing time.
[0106] In some embodiments, the movement and position maintenance of the mixing container moving block 254 can be achieved by a separately provided drive device. For example, the mixing container moving block 254 may be a moving block mounted on a linear motor guide, in which case the control unit 900 can control the linear motor guide so that the mixing container 161, which is fixed to the mixing container moving block 254, is in a fixed position and contains the cosmetic product provided via the cosmetic product supply means 220.
[0107] On the other hand, a weight sensor capable of measuring changes in the weight of the mixing container 161 may be further provided inside the moving block 254 for the mixing container. The weight of the mixing container 161 can change as cosmetic is injected into it by the cosmetic supply unit 200, and the control unit 900 can adjust the rate at which the cosmetic is supplied by the cosmetic supply unit 200 based on the results measured by the weight sensor.
[0108] The parts supply unit 160 can supply components for cosmetic containers (for example, a first container and a second container) that can be assembled in the cosmetic manufacturing apparatus 10.
[0109] Specifically, the parts supply unit 160 may include a tray 165 on which components can be placed, a first container component support unit 163 capable of supporting components that can form a first container, and a second container component support unit 169 capable of supporting components that can form a second container.
[0110] In the following, the components supplied by the parts supply unit 160, such as the mixing container 161 and the components that make up the cosmetic container, will be collectively referred to as "parts."
[0111] The tray 165 is mounted on the base 110 and may be movably mounted such that at least a portion of it is exposed to the outside of the main body 100. For example, the tray 165 may be mounted so that it can slide out of the main body 100 through the parts supply door 129.
[0112] In this case, the user or a separate robot can easily place the components forming the first container and the components forming the second container onto the parts supply unit 160, and the assembled first and second containers can be easily discharged from the main body 100.
[0113] The first container component support section 163 may include a mixing container support section 163a capable of supporting the mixing container 161 and a discharge member support section 163b capable of supporting the discharge member 162.
[0114] The mixing container support portion 163a may be provided with a groove into which the mixing container 161 can be inserted. The dispensing member support portion 163b supports the dispensing member 162 and may also be provided with a groove into which the straw 1622 can be inserted.
[0115] The second container component support section 169 may include a base container support section 169a capable of supporting the base container 164, an impregnation member support section 169b capable of supporting the impregnation member 168, and a cover container support section 169c capable of supporting the cover container 166.
[0116] Furthermore, a groove 167 is provided on the front surface of the tray 165, and the assembled first or second container can be placed in the groove 167 of the tray 165.
[0117] In this embodiment, the first container can be understood as being formed by assembling a mixing container 161 and a dispensing member 162.
[0118] Specifically, the discharge member 162 may include a pumping part 1621 that provides a force capable of transferring fluid by generating a pressure difference, a straw 1622 connected to the pumping part 1621 and inserted inside the mixing container 161, which can draw in the cosmetic stored in the mixing container 161, and a cap 1623 that can seal the inlet 1611 of the mixing container 161.
[0119] The mixing container 161 can provide a space for storing cosmetics and may include an opening 1611 into which a straw 1622 can be inserted.
[0120] The mixing container 161 can also be used as part of the first container to store the finished cosmetic product. In other words, after being used to mix the cosmetics, the mixing container 161 can be used as part of the custom cosmetic product.
[0121] Furthermore, the second container can be understood as being formed by assembling the base container 164, the impregnation member 168, and the cover container 166.
[0122] Specifically, the base container 164 contains an impregnation member 168 consisting of a cosmetic and a sponge, and the cover container 166 can selectively seal the impregnation member 168 inside the base container 164.
[0123] The cover container 166 may be pre-equipped with cosmetic tools such as a puff.
[0124] Specifically, the cover container 166 is coupled to the base container 164 and may include an inner cover that supports the cosmetic tools and covers the impregnation member 168, and an outer cover that protects the entire container by covering the cosmetic tools. The inner cover and the outer cover can rotate to shield the impregnation member 168 or the cosmetic tools, respectively.
[0125] Furthermore, the cosmetic manufacturing space 102 may be provided with a component storage unit 50 on which the first container and the second container can be assembled (see Figure 7).
[0126] Specifically, the component holder unit 50 may include a mounting section 300 on which a first container can be assembled, and an assembly section 500 on which a second container can be assembled. The component holder unit 50 is provided on the upper part of the table 114, and the table 114, which is separated from the component holder unit 50 by a predetermined distance, may be provided with a groove on which a pressurizing section 640 can be exposed.
[0127] The anchoring section 300 may be used in the manufacturing process of custom cosmetics as a temporary waiting position for the mixing container 161 before it moves to the next process, or to support the mixing container 161 in the assembly of the first container. When two robotic arms are used as the transfer means 800, as in this embodiment, the anchoring section 300 may serve to transfer parts between the two robotic arms by being positioned in a location accessible to both robotic arms.
[0128] Specifically, the mixing container 161 may be formed with a structure having corners in its longitudinal cross-section, and the mounting portion 300 may be provided with a mixing container mounting groove 302 having a shape corresponding to the shape of the mixing container 161. The transfer means 800 performs a mounting process after switching the orientation of the mixing container 161 to a predetermined direction so that the mixing container 161 is accurately fitted into the mixing container mounting groove 302. As a result, the mixing container 161 can always be positioned in a predetermined position and can maintain a stable posture against rotational external forces during the coupling process with the discharge member 162.
[0129] The assembly unit 500 can provide a location and space for manufacturing cosmetics as a finished product by assembling the individual components that make up the cosmetic container. In this embodiment, the assembly of the second container is described as an example in the assembly unit 500. That is, in this embodiment, the assembly of the first container is performed in the attachment unit 300 and the assembly of the second container is performed in the assembly unit 500, but the concept of the present invention is not limited to this. For example, the assembly of both the first and second containers may be performed entirely in the attachment unit 300. In this case, the attachment unit 300 can be understood as the assembly unit 500. Alternatively, the assembly of both the first and second containers may be performed entirely in the assembly unit 500. The specific assembly process for each container will be described later.
[0130] On the assembly section 500, the base container 164, the impregnation member 168, and the cover container 166 can be joined together (assembly of the second container). Specifically, the base container 164 is positioned on the assembly section 500 by the transfer means 800, the cosmetic stored in the mixing container 161 is poured into the base container 164, the impregnation member 168 is placed on the base container 164, and after undergoing a moisture absorption process in the moisture absorption section 600, the cover container 166 can be joined to the base container 164 so as to cover the impregnation member 168. A more detailed explanation of this will be given later.
[0131] The assembly unit 500 may include a base container attachment groove 502 into which the base container 164 can be attached so as to accommodate the mixed cosmetic in the mixing container 161 during the assembly process of the second container. The transfer means 800 may grasp the base container 164 of the parts supply unit 160 and move it to the base container attachment groove 502. After mixing is complete, the mixing container 161 can be transferred from the attachment unit 300 or the mixing unit 400 by the transfer means 800 and then discharge the cosmetic into the base container 164 on the assembly unit 500.
[0132] Specifically, the base container 164 is formed in a structure with corners or a cylindrical shape in at least a portion thereof, and the base container mounting groove 502 may be provided to have a shape corresponding to the corner structure or cylindrical shape formed on the base container 164. The transfer means 800 performs a mounting process after switching the orientation of the base container 164 to a predetermined direction so that the base container 164 is precisely fitted into the base container mounting groove 502. As a result, the base container 164 can always be positioned in a predetermined position and can maintain a stable posture against rotational external forces during the coupling process with the cover container 166.
[0133] Furthermore, the base container 164, which has been fixed onto the assembly section 500 and filled with the mixed cosmetic, can be filled with the impregnated member 168 by the transfer means 800. The base container 164, which has been filled with the impregnated member 168, is again moved by the transfer means 800 to the moisture absorption section 600 and undergoes a moisture absorption process.
[0134] In the moisture-absorbing section 600, the process of impregnating the impregnating member 168 contained in the second container with cosmetic material is carried out. The base container 164, in which the cosmetic material has been contained and the impregnating member 168 has been placed on the assembly section 500, is moved to the moisture-absorbing section 600, where the cosmetic material can be sufficiently impregnated into the impregnating member 168 by the moisture-absorbing tool 620 provided in the moisture-absorbing section 600. The moisture-absorbing tool 620 can be used to impregnate the impregnating member 168 by repeatedly applying pressure to the impregnating member 168 at a predetermined pressure.
[0135] The moisture absorption section 600 may include a moisture absorption tool 620 and a base container transfer section 650 (see Figure 8).
[0136] The moisture-absorbing device 620 can be understood as having a configuration that allows the cosmetic to be impregnated into the impregnation member 168 inserted into the base container 164 by applying pressure to the impregnation member 168.
[0137] The base container transfer unit 650 can be understood as being configured to secure the base container 164, which has been moved from the assembly unit 500, and then move it to the lower part of the moisture absorption device 620. Inside the base container 164, which has been secured in the base container transfer unit 650, are the cosmetic material and the impregnation member 168.
[0138] The moisture absorption device 620 may include a fixed-position holder 630 located below the table 114 that moves up and down in the height direction (z direction) to fix the base container 164 attached to the base container transfer unit 650, and a pressurizing unit 640 that can pressurize the impregnation member 168 located on the upper part of the base container 164 fixed by the fixed-position holder 630. Here, the table 114 may have a hole formed therein through which the pressurizing unit 640 can be exposed, and the transfer means 800 can press the exposed pressurizing unit 640 to impregnate the impregnation member 168.
[0139] Furthermore, the base container transfer unit 650 may include a base container transfer block 652 on which the base container 164 is fixed and can be moved, a base container guide rail 651 that provides a path for the base container transfer block 652 to move, a base container hook lever 653 for moving the base container transfer block 652, and a base container stopper 654 that can fix the base container hook lever 653 in a predetermined position. Here, the transfer means 800 can grasp the base container hook lever 653 and move the base container transfer block 652 on which the base container 164 is fixed to the lower part of the pressurizing unit 640.
[0140] The moisture absorption section 600 may include a base container transfer section 650 for housing a base container 164 provided from the assembly section 500 by a transfer means 800 and moving it to a position where moisture absorption by a moisture absorption tool 620 takes place.
[0141] After moisture absorption is complete in the moisture absorption section 600, the base container 164 is transferred back to the assembly section 500 by the transfer means 800 and settled there. The transfer means 800 can then take the cover container 166 from the parts supply section 160 and connect it to the base container 164. The connection between the base container 164 and the cover container 166 may be performed by mechanical fitting such as a hook connection, and for this purpose, the transfer means 800 can apply a predetermined external force to the cover container 166. A more detailed explanation of the moisture absorption section 600 will be provided later with reference to Figures 15 to 18.
[0142] The mixing unit 400 is a component that applies external force to the mixing container 161, which has been filled with cosmetic via the cosmetic supply unit 200, so that the cosmetic is thoroughly mixed within the mixing container 161.
[0143] The mixing unit 400 may be rotatably mounted to allow mixing of the cosmetic product contained in the mixing container 161.
[0144] In this embodiment, the mixing unit 400 will be described as a device that mixes cosmetics by simultaneously orbiting and rotating the mixing container 161 at high speed.
[0145] Specifically, the mixing unit 400 may include a first rotating member 402 into which the mixing container 161 is inserted and which is rotatable, and a second rotating member 404 capable of rotating the first rotating member 402. Here, the first rotating member 402 may be spaced at a predetermined distance from the center (M) of the second rotating member 404, and the first rotating member 402 may be stopped at a predetermined position by the control unit 900.
[0146] In this case, the transfer means 800 can be easily controlled because it can insert the mixing container 161 into the first rotating member 402 which is in a predetermined position.
[0147] After housing the mixing container 161, the mixing unit 400 operates for a predetermined time under the control of the control unit 900. Once the mixing process in the mixing unit 400 is complete, the mixing container 161 can be moved to the position of the subsequent process by the transfer means 800.
[0148] Furthermore, the transfer means 800 can grasp the empty mixing container 161 located in the parts supply unit 160 and move it to the mixing container transfer unit 250 of the cosmetic supply unit 200. In this case, when moving the mixing container 161 to the mixing container transfer unit 250 located on one side of the main body 100 (left side as shown in Figure 4), it can be moved directly from the parts supply unit 160 to the mixing container transfer unit 250. When moving the mixing container 161 to the mixing container transfer unit 250 located on the other side of the main body 100 (right side as shown in Figure 4), it can be moved from the parts supply unit 160 to the mixing container transfer unit 250 via the anchoring unit 300.
[0149] Furthermore, the transfer means 800 can move the mixing container 161, which has finished filling with cosmetic material on the mixing container transfer section 250 or after the mixing process has been carried out in the mixing section 400, to the fixing section 300.
[0150] Furthermore, the transfer means 800 can assemble a first container by either attaching a dispensing member 162 to a mixing container 161 attached to a fixing part 300, or by attaching a base container 164 to an assembly part 500, pouring the cosmetic contained in the mixing container 161 into the base container 164, then placing an impregnating member 168 into the mixing container 161, impregnating the impregnating member 168 with the cosmetic using a moisture-absorbing part 600, and finally covering the base container 164 containing the impregnating member 168 with a cover container 166 to assemble a second container.
[0151] Furthermore, the transfer means 800 can place the assembled first container or second container into the groove 167 of the parts supply unit 160.
[0152] Furthermore, the transfer means 800 can push the tray 165 of the parts supply unit 160 so that at least a portion of the tray 165 is exposed to the outside of the main body 100, thereby providing the assembled first or second container to the user.
[0153] The transfer means 800 may include a plurality of transfer units 801, 802 that can move the components provided in the component supply unit 160 to the component storage unit 50, and assemble the components moved to the component storage unit 50 into a first container provided in a pump-type container or into a second container provided in a compact-type container. In this embodiment, the transfer means 800 is described as having two transfer units 801, 802 as an example, but the number of transfer units is not limited to one or more.
[0154] Specifically, the transport means 800 may include a first transport unit 801 and a second transport unit 802 that are movable independently of each other.
[0155] During the assembly of the first container forming a pump-type container, either the first transfer unit 801 or the second transfer unit 802 may grip the cap 1623 of the discharge member 162, while the other may move up and down in contact with the straw 1622 of the discharge member 1622 so that the straw 1622 of the discharge member 162 is aligned with the inlet 1611 of the mixing container 161 located in the component storage unit 50.
[0156] During the assembly of the second container forming a compact container, either the first transfer unit 801 or the second transfer unit 802 can secure the base container 164 constituting the second container to the component holding unit 50, while the other can invert the mixing container 161 so that the cosmetic contents contained in the mixing container 161 are transferred to the base container 164.
[0157] The transfer means 800 can move parts between components arranged on the base 110 described above. As described above, in this embodiment, a robot arm is provided as the transfer means 800 as an example. Specifically, the transfer means 800 may include a first transfer unit 801 that can correspond to one robot arm and a second transfer unit 802 that can correspond to another robot arm. The first transfer unit 801 and the second transfer unit 802 are each provided by a multi-joint robot arm 810, and the degrees of freedom that the multi-joint robot arm 810 may have may be provided differently depending on the embodiment. In this embodiment, a device having 6 degrees of freedom is used as the multi-joint robot arm 810 as an example.
[0158] The first transfer unit 801 and the second transfer unit 802 may be connected to a single robot arm control unit 820 and extend from the robot arm control unit 820. The robot arm control unit 820 may control the first transfer unit 801 and the second transfer unit 802 under the control of the control unit 900 so that predetermined functions are performed.
[0159] Since various forms of such articulated robot arms 810 are known, specific details regarding their structure and control will be omitted in this embodiment.
[0160] On the other hand, the first transfer unit 801 is provided with a first gripper 840, and the second transfer unit 802 is provided with a second gripper 860. The first gripper 840 and the second gripper 860 may each have a structural form suitable for the function that the first transfer unit 801 and the second transfer unit 802 are to perform. Specific details regarding the grippers 840 and 860 will be described later.
[0161] The functions and operations of the transport means 800 described above may be performed by either the first transport unit 801 or the second transport unit 802, or both. The transport units used for each function and operation may be selected differently depending on the arrangement of the components.
[0162] The first transfer unit 801 and the second transfer unit 802 may perform different operations to move the mixing container 161 provided to the parts supply unit 160 to the cosmetic supply unit 200, depending on the location where the cosmetic supply unit 200 is positioned.
[0163] Specifically, when dispensing cosmetics from the cosmetic supply unit 200 located on one side (left side of Figure 4) into the mixing container 161, the second transfer unit 802 can grasp the mixing container 161 located in the parts supply unit 160 and directly move the mixing container 161 to the mixing container transfer unit 250 located on the other side.
[0164] Furthermore, when supplying cosmetics from the cosmetic supply unit 200 located on the other side (right side of Figure 4) to the mixing container 161, the second transfer unit 802 can grasp the mixing container 161 located on the parts supply unit 160 and secure it to the attachment part 300 of the mixing container 161. Subsequently, the first transfer unit 801 can grasp the mixing container 161 that has been secured to the attachment part 300 and move the mixing container 161 to the mixing container transfer unit 250 located on the other side.
[0165] In this way, the first transfer unit 801 and the second transfer unit 802 can be responsible for different tasks performed within the cosmetic manufacturing space 102, with one unit handling tasks that are performed in the other.
[0166] The first transfer unit 801 can move a component from one of the cosmetic supply unit 200, attachment unit 300, assembly unit 500, or moisture absorption unit 600 located on the other side to another, or it can perform the operations necessary for assembling the first container and the second container (including the moisture absorption process).
[0167] Specifically, the first transfer unit 801 can transfer the mixing container 161 from the anchoring section 300 to the mixing container transfer section 250 located elsewhere, move the mixing container transfer section 250 below the cosmetic supply section 200 located elsewhere, assemble the discharge member 162 onto the mixing container 161 anchored to the anchoring section 300, attach the impregnation member 168 to the base container 164 anchored to the assembly section 500, transfer the base container 164 from the assembly section 500 to the moisture absorption section 600, move the base container 164 in a predetermined order within the moisture absorption section 600, transfer the base container 164 and impregnation member 168, which have completed moisture absorption, back to the assembly section 500 from the moisture absorption section 600, or attach the cover container 166 to the base container 164 anchored to the assembly section 500.
[0168] To this end, the first gripper 840 may have a structure that allows it to grip and move each component. The first gripper 840 may also include a structure that allows it to operate a base container transfer unit 650, which is provided for transferring the base container 164 on the moisture absorption unit 600. Furthermore, the first gripper 840 may also have a function that allows it to rotate to connect the discharge member 162 to the mixing container 161 which is attached to the attachment unit 300.
[0169] Furthermore, the second transfer unit 802 can move parts from one of the parts supply unit 160, the cosmetic supply unit 200 located on one side, the fixing unit 300, the mixing unit 400, and the assembly unit 500 to the other, or perform any operations necessary for assembling the first container and the second container (including the moisture absorption process).
[0170] Specifically, the second transfer unit 802 can perform functions such as moving the mixing container 161 from the parts supply unit 160 to the cosmetic supply unit 200 located on one side (left side in Figure 4), moving the mixing container transfer unit 250 below the cosmetic supply unit 200, moving the mixing container 161 from the cosmetic supply unit 200 located on one side to the mixing unit 400, moving the mixed container 161 after mixing is complete from the mixing unit 400 to the attachment unit 300, assisting in the assembly of the mixing container 161 and the discharge member 162, moving the first container assembled in the attachment unit 300 or the second container assembled in the assembly unit 500 to the groove 167 of the parts supply unit 160, and providing an external force for moisture absorption in the moisture absorption unit 600.
[0171] To this end, the second gripper 860 may have a structure that allows it to grip and move the mixing container 161. The second gripper 860 may also include a structure that allows it to grip and move the mixing container hook lever 255 provided on the mixing container transfer unit 250. Furthermore, the second gripper 860 may have a structure for aligning the straw 1622 when the first transfer unit 801 connects the discharge member 162 to the mixing container 161. The second gripper 860 may also have a structure for operating the moisture absorption tool 620 of the moisture absorption unit 600.
[0172] The operations performed by the first transfer unit 801 and the second transfer unit 802 described above are realized by utilizing the characteristics of the articulated robot arm 810, and various methods for controlling them are publicly known, so a detailed explanation of these methods will be omitted.
[0173] On the other hand, in this embodiment, a multi-joint robot arm 810 was used as an example to explain the transfer means 800, but the concept of the present invention is not limited to this. For example, a transfer device capable of linear movement in three axes may be provided as the transfer means 800, and additional devices for performing the above-mentioned functions may be added thereto.
[0174] On the other hand, the control unit 900 can basically control the aforementioned components. For example, the control unit 900 can control the movement of the transport means 800 and the amount of cosmetic dispensed from the cosmetic supply unit 200. The control unit 900 may also include a skin condition analysis unit 910 that analyzes the skin condition from skin measurement data provided by either the terminal 20 or the operating server 40. As mentioned above, depending on the embodiment, the skin condition analysis unit 910 may provide the analyzed results.
[0175] The control unit 900 may include a composition ratio determination unit 920 that determines composition ratio data for cosmetic ingredients to manufacture custom cosmetics based on the skin condition analysis results generated by the skin condition analysis unit 910. The composition ratio determination unit 920 may determine the composition ratio by substituting the skin condition analysis results as variable values into a predetermined calculation formula, or it may select and determine the composition ratio that is closest to or most appropriate to the skin condition analysis results from among a plurality of preset composition ratios. The preset composition ratio data may be understood to include the type and amount of cosmetic ingredients used and their input ratios, and may include physical property data such as the color and viscosity of the cosmetic ingredients corresponding to each composition ratio data so that the user can intuitively understand it.
[0176] In this case, the control unit 900 may include a composition ratio correction unit 930 that provides the user with the determined composition ratio via the user interface unit 130, thereby providing the user with an opportunity to modify the composition ratio data. The user can review the composition ratio data presented via the user interface unit 130, decide whether to accept it as is or use other composition ratio data, and input the modified data. In this case, the composition ratio data presented to the user may be the ratio itself, or it may be attribute information such as the color and physical properties of the cosmetic product manufactured based on the composition ratio data. Accordingly, the modified data input by the user may also be characteristic information such as the color and physical properties of the cosmetic product. In some embodiments, the composition ratio correction unit 930 may transmit the data to the terminal 20 instead of the user interface unit 130, and the modified data may be input via the terminal 20.
[0177] Furthermore, the control unit 900 may include a cosmetic type receiving unit 940 that receives the desired cosmetic type from the user, a manufacturing mode receiving unit 950 that receives the desired manufacturing mode, and a composition ratio determination unit 920. In this embodiment, the information provided to the cosmetic type receiving unit 940 may be whether the type of custom cosmetic to be manufactured is for a first container or a second container, and the information provided to the manufacturing mode receiving unit 950 may be whether it is a mode for receiving a sample or a mode for receiving a finished product. Here, a sample is a cosmetic manufactured using only a relatively small amount while maintaining the composition ratio of the cosmetic, and a finished product means a cosmetic that has all of the predetermined volumes that should be present in a single product for sale.
[0178] Furthermore, the manufacturing mode may include modes such as a mode in which a finished product is requested after receiving a sample, a mode in which a sample is requested again according to a modified composition ratio after receiving a sample, and a mode in which disposal is requested after receiving a sample. Such manufacturing modes may be presented to the user after receiving a sample.
[0179] The user can select the type of cosmetic and the manufacturing mode via the user interface unit 130. To this end, the user interface unit 130 may present the user with a screen for selecting the type of cosmetic and the manufacturing mode. Alternatively, depending on the embodiment, the user may also provide the type of cosmetic and the manufacturing mode to the cosmetic manufacturing apparatus 10 via the terminal 20 or the operating server 40.
[0180] In the following, a control method for a cosmetic manufacturing apparatus having the above-described configuration will be explained with reference to the drawings.
[0181] Figure 11 is a flowchart showing the control method for the cosmetic manufacturing apparatus in Figure 1.
[0182] Referring to Figure 11, the control method for the cosmetic manufacturing apparatus may include the steps of: calculating data related to the cosmetic to be manufactured, including the composition ratio, using the control unit 900 (S10); controlling the cosmetic supply unit 200 and the transfer means 800 using the control unit 900 to discharge the cosmetic stored in the cosmetic storage unit 140 into the mixing container 161 according to the composition ratio (S20); controlling the mixing unit 400 and the transfer means 800 using the control unit 900 to mix the cosmetic discharged into the mixing container 161 (S30); if the control unit 900 determines that the cosmetic contained in the mixing container 161 is a sample, providing the mixing container 161 to the user and receiving input from the user regarding whether or not the composition ratio has been changed (S40); and controlling the transfer means 800 using the control unit 900 to store the cosmetic contained in the mixing container 161 in at least one of a first container provided in a pump-type container and a second container provided in a compact-type container and provide it to the user (S50).
[0183] The aforementioned S40 can be provided selectively, S10 may include at least one of S110, S120, S130, S140, and S150 described later, S20 may include either S210 or S220 described later, S30 may include at least one of S230 or S240 described later, S40 may include at least one of S310, S320, S330, S340, S350, S360, S370, S380, S390, S400, S420, and S430 described later, and S50 may include at least one of the S500 and S900 steps described later, a detailed explanation of which will be given later.
[0184] Figure 12 is a flowchart that shows in more detail the control method of the cosmetic manufacturing apparatus 10 in Figure 1.
[0185] Referring to Figure 12, the control unit 900 can collect desired cosmetic type data from the user via the cosmetic type receiving unit 940 (S110). As described above, the cosmetic type data can be input via the user interface unit 130 or provided via the terminal 20 and the operating server 40, etc.
[0186] Furthermore, the control unit 900 may collect manufacturing mode data from the user via the manufacturing mode receiving unit 950 regarding whether the product requested for manufacturing is a sample or a finished product (S120). The manufacturing mode data may be input via the user interface unit 130 or provided from the terminal 20 or the operating server 40.
[0187] Then, the control unit 900 analyzes the user's skin condition using the skin condition analysis unit 910 (S130). As mentioned above, the skin condition analysis unit 910 may receive the already analyzed results from either the terminal 20 or the operating server 40.
[0188] The composition ratio determination unit 920 of the control unit 900 determines composition ratio data based on the analysis results provided in step S130 and determines the amount to be manufactured as cosmetics according to the manufacturing mode collected in step S120 (S140). At this stage, the supply amounts of multiple types of cosmetics stored in the cosmetic storage unit 140 may be determined. For example, if the user selects the sample manufacturing mode, the supply amount of cosmetics necessary to manufacture a relatively small amount of cosmetics may be determined. Also, if the user selects the finished product manufacturing mode, a pre-set capacity to be provided as a single product for sale as a relatively large amount is set as the total amount of cosmetics to be manufactured, and the supply amount of each cosmetic for that amount may be determined. In this embodiment, the composition ratio determination unit 920 may determine the composition ratio data from among a plurality of preset composition ratios that is closest to the skin condition analysis results.
[0189] Furthermore, step S140 may include the determination of composition ratio data by the composition ratio determination unit 920, taking into account the user's cosmetic purchase history. For example, if the user has a history of purchasing cosmetics that are lighter in color than the skin condition measured by terminal 10, the composition ratio determination unit 920 may determine the composition ratio data to show a lighter color than the composition ratio data based on the skin condition analysis results.
[0190] Then, the composition ratio correction unit 930 of the control unit 900 presents the determined composition ratio data (at least one of the composition ratios based on skin condition analysis results and the composition ratio considering cosmetic purchase history) to the user via the user interface unit 130 or the like, and can then collect correction data for the composition ratio from the user and correct the composition ratio data and the supply amount of each cosmetic based on the results (S150).
[0191] At step S150, the user may choose not to change the composition ratio via the user interface unit 130 or terminal 20, in which case the composition ratio data determined at step S140 may be maintained as is.
[0192] The aforementioned stages S110 to S150 are stages in which information necessary for cosmetic manufacturing is collected and data is generated. The order of these stages may change, and each stage can be further subdivided into stages that allow for interaction with the user or data processing.
[0193] After the collection of information and processing of data necessary for cosmetic manufacturing are completed, the stage of manufacturing the physical cosmetics begins.
[0194] The control unit 900 can control the robot arm control unit 820 to drive the transport means 800. As described above, the transport means 800 consists of a first transport unit 801 and a second transport unit 802, and in each of the stages described later, one or both of the first transport unit 801 and the second transport unit 802 may be used as the transport means 800 in the cosmetic manufacturing process.
[0195] Specifically, the control unit 900 can control the transfer means 800 to move the mixing container 161 toward the cosmetic supply unit 200 (S210).
[0196] In this case, when the mixing container 161 is moved to the cosmetic supply unit 200 located on one side (left side of Figure 4), the mixing container 161 in the parts supply unit 160 is moved directly to the cosmetic supply unit 200. When the mixing container 161 is moved to the cosmetic supply unit 200 located on the other side (right side of Figure 4), the mixing container 161 in the parts supply unit 160 may be moved to the cosmetic supply unit 200 after being secured to the attachment unit 300.
[0197] Furthermore, the movement of the mixing container 161 towards the cosmetic supply unit 200 can be understood as moving to the fixing groove 2547a for the mixing container in the mixing container transfer unit 250.
[0198] On the other hand, if step S210 is performed from the second time onward, that is, after the mixing container 161 has been provided to the user and then collected again as part of the sample manufacturing mode, the control unit 900 may either move the mixing container 161 in the parts supply unit 160 directly to the cosmetic supply unit 200 using the transfer means 800, or move the mixing container 161 in the parts supply unit 160 to the anchoring unit 300, and then move it back to the cosmetic supply unit 200 from the anchoring unit 300.
[0199] In this way, the method of control changes depending on the number of times step S210 is performed, and by using the mixing container 161 provided to the user as a sample in subsequent processes, unnecessary process waste and material waste can be prevented, thereby lowering the unit cost of product production.
[0200] Subsequently, the control unit 900 controls the cosmetic supply unit 200 to supply cosmetic to the mixing container 161 according to the already determined composition ratio (S220). The control unit 900 can control the sequential discharge of cosmetic from each cartridge 142 via the cosmetic supply means 220 to correspond to the already determined composition ratio data and production volume. To this end, the control unit 900 can control the transfer means 800 to move and fix the moving block 254 for the mixing container of the mixing container transfer unit 250. Specifically, the transfer means 800 can operate the hook lever 255 for the mixing container to selectively restrain it to the stopper 256 for the mixing container, and move the moving block 254 for the mixing container in a predetermined order based on the composition ratio data, so that the mixing container 161 can receive the supply of cosmetic from the cosmetic supply means 220. Furthermore, the movement of the mixing container transfer unit 250 located on one side may be performed by the second transfer unit 802, while the movement of the mixing container transfer unit 250 located on the other side may be performed by the first transfer unit 801.
[0201] On the other hand, at the S220 stage, the control unit 900 can adjust the supply speed of the cosmetic supply means 220 according to the amount of cosmetic to be supplied. For example, when supplying any of the cosmetic stored in one of the cartridges 142 to the mixing container 161, the cosmetic supply means 220 can supply the cosmetic at a relatively high speed if the ratio (B / A) of the amount already supplied (B) to the total amount (A) to be supplied from the cartridge 142 is lower than a predetermined range, and supply the cosmetic at a relatively low speed if the ratio is higher than a predetermined range. This allows for high-speed supply in the initial section where minute control is not required, thereby shortening the overall cosmetic supply time. As for the method of measuring the amount already supplied (B), the control unit 900 may use a method to calculate the supply amount based on the time and speed at which the cosmetic supply means 220 was driven, or it may use a method to calculate it by receiving changing weight data from a weight sensor provided on the moving block 254 for the mixing container.
[0202] The mixing container 161, in which the cosmetic has been injected in the cosmetic supply unit 200, can be moved to the mixing unit 400 by the transfer means 800 (S230).
[0203] Here, if the cosmetic is injected into the mixing container 161 at the cosmetic supply unit 200 located on one side, the mixing container 161 may be moved directly from the cosmetic supply unit 200 to the mixing unit 400 by the second transfer unit 802. Alternatively, if the cosmetic is injected into the mixing container 161 at the cosmetic supply unit 200 located on the other side, the mixing container 161 may be fixed to the fixing unit 300 by the first transfer unit 801, and then moved from the fixing unit 300 to the mixing unit 400 by the second transfer unit 802.
[0204] The control unit 900 drives the mixing unit 400 (for example, by rotating) to apply an external force to the mixing container 161, thereby mixing the cosmetic product contained in the mixing container 161 (S240). As described above, the mixing unit 400 can cause the mixing container 161 to revolve around and rotate at high speed, and the resulting vortex can thoroughly mix the cosmetic product inside the mixing container 161. In this case, after the mixing unit 400 stops rotating, the first rotating member 402 of the mixing unit 400 into which the mixing container 161 is inserted can be controlled by the control unit 900 to stop at the same position. In this case, the transfer means 800 can insert the mixing container 161 into the first rotating member 402 which has stopped at a predetermined position, which has the advantage of making it easy to control the insertion of the mixing container 161 into the first rotating member 402.
[0205] The aforementioned steps S210 to S240 can be understood as steps in which cosmetic ingredients are supplied to the mixing container 161 and the multiple cosmetic ingredients contained in the mixing container 161 are mixed.
[0206] Once step S240 is completed, the control unit 900 determines whether the manufacturing mode collected in step S120 is a sample manufacturing mode or a finished product manufacturing mode (S310).
[0207] If the finished product manufacturing mode is selected instead of the sample manufacturing mode, the process of manufacturing cosmetics (S500) may be carried out according to the type of cosmetic product. The specific details of step S500 will be described later.
[0208] The control unit 900 can supply the completed cosmetic containers (first or second containers) manufactured in step S500 and placed in the groove 167 of the parts supply unit 160 to the user by controlling the transfer means 800 (S900). Specifically, the control unit 900 can control the second transfer unit 802 to place the completed cosmetic containers (first or second containers) in the groove 167 of the parts supply unit 160. At this time, the user can open the parts supply door 129 and receive the completed cosmetic containers placed in the parts supply unit 160. The second transfer unit 802 can also push the tray 165 of the parts supply unit 160 to discharge the completed cosmetic containers placed in the parts supply unit 160 to the outside of the main body 100.
[0209] On the other hand, if the determination result at step S310 is that it is in sample manufacturing mode, the control unit 900 may move the mixing container 161 of the mixing unit 400 to the groove 167 of the parts supply unit 160 or the mixing container support part 163a using the transfer means 800 so that the mixed cosmetic product in the mixing container 161 can be used as a sample (S320). In this case, the second transfer unit 802 may be used as the transfer means 800. In some embodiments, the control unit 900 may also control the system by moving the mixing container 161 of the mixing unit 400 to the anchoring unit 300, and then moving the mixing container 161 from the anchoring unit 300 to the parts supply unit 160.
[0210] The control unit 900 can control the transfer means 800 to supply the mixing container 161, which has been passed to the parts supply unit 160, to the user (S330). Step S330 can be understood in substantially the same way as step S900 described above.
[0211] Since the user has selected the sample manufacturing mode, the user can receive the mixing container 161 provided as a sample, test use it, and then place it back on the parts supply unit 160, specifically on the groove 167 of the parts supply unit 160 or on the mixing container support unit 163a.
[0212] In this case, a predetermined sensing means, such as a weight sensor, may be provided in at least one of the tray 165, groove 167, or mixing container support part 163a, so as to be able to sense whether or not the user has returned the mixing container 161 after finishing using the sample cosmetic. Alternatively, the cosmetic manufacturing apparatus 10 may receive input from the user via the user interface unit 130 regarding whether or not the mixing container 161 has been returned to the parts supply unit 160 after finishing using the sample cosmetic. Alternatively, the control unit 900 may guide the user to return the mixing container 161 to the parts supply unit 160 by notifying the user via the user interface unit 130 that the parts supply unit 160 will be automatically collected after a predetermined time has elapsed.
[0213] The control unit 900 can use the transfer means 800 to move the tray 165 of the parts supply unit 160 back into the main body 100, thereby allowing the mixing container 161 to be recovered again (S340).
[0214] In conjunction with this, the control unit 900 can collect subsequent manufacturing mode data and, if necessary, composition ratio correction data from the user via the manufacturing mode receiving unit 950 (S350). The subsequent manufacturing mode is collected via the user interface unit 130, etc., similar to the manufacturing mode in step S120 described above, and can be one of the following: a request for finished product manufacturing, a request for composition ratio correction, or a disposal request. In this case, if the subsequent manufacturing mode selected by the user is a request for composition ratio correction, the control unit 900 can further collect additional composition ratio correction data via the composition ratio correction unit 930.
[0215] If the subsequent manufacturing mode collected at step S350 is a request for finished product manufacturing (S360), the control unit 900 may change the total production volume data of cosmetics to correspond to finished product manufacturing and change the manufacturing mode from sample manufacturing mode to finished product manufacturing mode (S370). In this case, the production volume data of the additional cosmetics to be manufactured may be set to the volume obtained by subtracting the volume provided as a sample from the total volume required for the finished product. Depending on the embodiment, the control unit 900 may also set the production volume of the additional cosmetics to be manufactured by taking into account the difference between the initial weight provided as a sample and the recovered weight.
[0216] The control unit 900 can then repeat the steps from S210 onwards. As a result, an additional cosmetic supply unit for manufacturing the finished product is performed according to a predetermined composition ratio, and the data has been changed to the finished product manufacturing mode, so the processes from S500 onwards can be performed based on the judgment result in step S310.
[0217] On the other hand, if the result of the S360 step is not a request for the manufacture of a finished product, the control unit 900 determines whether the user's request is a request for a composition ratio modification (S380). In this flowchart, the S360 and S380 steps are shown in sequence as an example, but in an actual control program, this may be processed as branch logic.
[0218] If the judgment result at step S380 is not a request for correction of the composition ratio, this is processed as a request to discard the manufactured sample, and the control unit 900 can control the transfer means 800 to move the mixing container 161, in which the mixed cosmetic is stored, from the parts supply unit 160 to the recovery unit 112 (S420). In this case, the second transfer unit 802 may be used as the transfer means 800.
[0219] If, as a result of the judgment in step S380, there is a request for a composition ratio correction, the control unit 900 determines whether such a correction of the composition ratio is possible (S390). User correction requests can be diverse, and in some cases, it may be impossible to correct the cosmetic composition already manufactured in the mixing container 161. For example, if a cosmetic composition containing a specific ingredient is excluded, or if a specific cosmetic composition is added in an amount greater than what should be included in the finished product, the additional cosmetic supply unit cannot accommodate the mixing container 161 where the manufactured cosmetic composition is stored. In this case, the control unit 900 outputs a message to the user via the user interface unit 130 indicating that the composition ratio correction is impossible (S430), and the mixing container 161, which is the sample manufactured in step S420, can be recovered.
[0220] On the other hand, if it is determined at step S390 that the composition ratio can be modified, the control unit 900 determines the composition ratio data and production volume for manufacturing a new sample according to the requested modification of the composition ratio (S400). This can be done in essentially the same way as at step S150, but the additional amount of each cosmetic ingredient can be calculated taking into account the volume of cosmetic ingredients already put into the mixing container 161.
[0221] The control unit 900 can then re-execute the steps from S210 onwards. This allows the supply of additional cosmetic materials for producing other samples to be performed according to the changed composition ratio data and production volume, and since the system is still in sample production mode, the processes from S320 onwards can be performed based on the decision result in step S310.
[0222] Depending on the embodiment, the number of times a sample modification request can be made may be limited, and the control unit 900 may notify the user via the user interface unit 130 of the limited number of requests before and after the execution of steps S350 and S370, or inform the user that further sample modification requests are not possible.
[0223] The aforementioned steps S310 to S430 can be understood as the stages in which sample cosmetics are provided to the user.
[0224] Through the process described above, users can receive and test samples of the cosmetics they intend to manufacture, or custom cosmetics suited to their skin condition, and can even modify and test them again. They can then manufacture finished products directly or after sample testing, which can significantly improve their satisfaction with the cosmetic manufacturing apparatus 10.
[0225] In the following sections, we will specifically explain the manufacturing process according to the type of cosmetic product (for example, whether it is the first container or the second container) that is carried out as the S500 stage, referring to the drawings.
[0226] Figure 13 is a flowchart showing the specific manufacturing process for each type of cosmetic shown in Figure 12.
[0227] Referring to Figure 13, in step S500, the control unit 900 uses the transfer means 800 to move the mixing container 161, which has been mixed in the mixing unit 400, to the component placement unit 50 (specifically, the securing unit 300), and the mixing container 161 that has been secured in the securing unit 300 can be kept awaited for subsequent processes (S510).
[0228] If the type of cosmetic collected in step S110 is the first container (S520), the control unit 900 may control the transfer means 800 to move the dispensing member 162 provided in the parts supply unit 160 to the top of the mixing container 161 attached to the attachment unit 300 (S610). This process may be carried out by the second transfer unit 802, which may maintain a state of gripping the dispensing member 162 after moving it to a predetermined position. The type of cosmetic may be transmitted to the control unit 900 from the user interface unit 130 or the terminal 20.
[0229] Subsequently, the control unit 900 controls the transfer means 800 to connect the discharge member 162 to the mixing container 161 on the anchoring section 300 (S620). The connection between the mixing container 161 and the discharge member 162 may be made by screw connection, and since the mixing container 161 is fixed to the mixing container anchoring groove 302 of the anchoring section 300, the transfer means 800 can align the discharge member 162 with the upper end of the mixing container 161 and then rotate the discharge member 162 to perform the screw connection.
[0230] In this case, the discharge member 162 may include a straw 1622, a pumping part 1621, and a cap 1623, but the straw 1622 needs to enter the interior of the mixing container 161 before the cap 1623 is screw-connected to the mixing container 161. Incidentally, since the straw 1622 is made of a flexible material and its shape and orientation are not constant, the first transfer unit 801 can support the straw 1622 so that it can smoothly enter the inlet of the mixing container 161 during the connection process. Specifically, the second transfer unit 802 can grip the cap 1623, and the first transfer unit 801 can move up and down in contact with the straw 1622 so that the inlet 1611 of the mixing container 161 of the attachment part 300 and the straw 1622 are aligned.
[0231] Once the mixing container 161 and the dispensing member 162 are joined, the first container is provided as a finished product, and the control unit 900 can control the transfer means 800 to move the assembled container on the anchoring unit 300 to the parts supply unit 160 (S630). This may be done by the second transfer unit 802. The process from S610 to S630 can be understood as the assembly process of the first container.
[0232] On the other hand, if, at step S520, it is determined that the type of cosmetic to be manufactured is the second container, the control unit 900 controls the transfer means 800 to move the base container 164 in the parts supply unit 160 to the assembly unit 500 (S710). This process may be carried out by the second transfer unit 802.
[0233] The control unit 900 then controls the transfer means 800, which can retrieve the mixing container 161 from the anchoring unit 300, place the mixed cosmetic into the base container 164, and discharge it (S720). Discharging the cosmetic from the mixing container 161 can be done by rotating the mixing container 161 and allowing the cosmetic to fall naturally due to gravity. For this purpose, the transfer means 800 can tilt the mixing container 161 to a predetermined angle. In this case, it is possible that the cosmetic inside the mixing container 161 may not be completely discharged. However, the transfer means 800 may further rotate the mixing container 161 to a predetermined angle and shake it after a certain period of time has elapsed so that as much of the cosmetic as possible is discharged by inertia. Such a process may be carried out by the second transfer unit 802. For example, the mixing container 161 can be rotated from 150 to 180 degrees, and when rotated 180 degrees, the inlet 1611 of the mixing container 161 may be facing the bottom.
[0234] The control unit 900 can further control the transfer means 800 that performed step S720 to move the mixing container 161, from which the cosmetic has been discharged, to the recovery unit 112 for recovery.
[0235] The control unit 900 then controls the transfer means 800 to grasp the impregnating member 168 from the parts supply unit 160 and insert it into the base container 164 containing the cosmetic (S730). This process may be carried out by the second transfer unit 802.
[0236] Subsequently, the control unit 900 may move the base container 164 containing the impregnating member 168 to the moisture absorption section 600 using the transfer means 800 (S740). This process may be carried out by the first transfer unit 801.
[0237] In the moisture absorption section 600, the base container transfer section 650 moves the base container 164 to a position corresponding to the moisture absorption tool 620, and the moisture absorption process can be carried out by the moisture absorption tool 620 (S750). The control unit 900 can control the transfer means 800 for the movement of the base container 164 and the operation of the moisture absorption tool 620. Specifically, the operation of moving the base container 164 by operating the base container transfer section 650 can be performed by the first transfer unit 801, and the provision of pressure for moisture absorption by the moisture absorption tool 620 can be performed by the second transfer unit 802. In other words, the moisture absorption process can be carried out by the cooperation of the first transfer unit 801 and the second transfer unit 802. The movement structure of the base container transfer section 650 can include guide rails, movement blocks, hook levers, stoppers, etc., similar to the mixing container transfer section 250 described above, and can operate substantially similarly. However, the movement block of the base container transfer section 650 may further include a structure for interlocking with the moisture absorption tool 620. Through this process, the cosmetic product contained in the base container 164 can be sufficiently impregnated into the impregnation member 168.
[0238] Once the moisture absorption process in step S750 is complete, the control unit 900 may control the transfer means 800 to move the base container 164 again from the moisture absorption section 600 to the assembly section 500 (S760). This process may be carried out by the first transfer unit 801.
[0239] The control unit 900 can then control the transfer means 800 to retrieve the cover container 166 from the parts supply unit 160 and connect it to the base container 164 on the assembly unit 500 (S770). This process can also be carried out by the first transfer unit 801.
[0240] Once the base container 164 and the cover container 166 are joined, the second container is completed as a finished product, and the control unit 900 can control the transfer means 800 to move the assembled container on the assembly unit 500 to the parts supply unit 160 (S780). This can be done by the second transfer unit 802. The process from S710 to S780 can be understood as the assembly process of the second container.
[0241] Through the process described above, the cosmetic manufacturing apparatus 10 and the control method for the cosmetic manufacturing apparatus 10 can provide a first container as a pump-type container and a second container as a compact-type container, according to the user's choice. However, the concept of the present invention is not limited thereto, and in some embodiments, the cosmetic manufacturing apparatus 10 may be implemented and operated to provide only one cosmetic container, either the first or the second container. In this case, components and control methods used for manufacturing other types of cosmetics may be omitted in the above description.
[0242] On the other hand, Figure 14 is a flowchart that combines Figures 12 and 13 to show control methods for cosmetic manufacturing equipment according to the type of cosmetic product.
[0243] Referring to Figure 14, the control method for the cosmetic manufacturing apparatus according to the present invention includes the steps of: collecting or calculating data on the type of cosmetic selected by the user using the control unit 900; controlling the cosmetic supply unit 200 and the transfer means 800 with the control unit 900 to dispense at least one cosmetic into the mixing container 161; controlling the mixing unit 400 and the transfer means 800 with the control unit 900 to mix the cosmetic contained in the mixing container 161 with the mixing unit 400; controlling the transfer means 800 with the control unit 900 to move the mixing container 161 containing the mixed cosmetic to the component storage unit 50 with the transfer means 800; and the steps of: the type of cosmetic selected by the user and input to the control unit 900 being the first If there is one container, the control unit 900 controls the transfer means 800 to move the discharge member 162 in the parts supply unit 160 to the top of the parts storage unit 50 and assembles the discharge member 162 and the mixing container 161 to form the first container. If the type of cosmetic input to the control unit 900 is a second container, the control unit 900 controls the transfer means 800 to move the base container 164, impregnation member 168 and cover container 166 in the parts supply unit 160 to the parts storage unit 50 and assembles them together to form the second container. The control unit 900 controls the transfer means 800 to move the assembled first or second container to the parts supply unit 160 and provide it to the user.
[0244] The moisture-absorbing section 600 will be described in more detail below, with further reference to Figures 15-18, along with Figures 7 and 8.
[0245] The moisture-absorbing section 600 may be provided to receive the base container 164 containing the cosmetic and the impregnating member 168, and to impregnate the impregnating member 168 with the cosmetic. In other words, the moisture-absorbing section 600 can assist in the easy impregnation (absorption) of the cosmetic into the impregnating member 168 when the cosmetic is placed in the base container 164 fixed to the assembly section 500 and the impregnating member 168 is placed on top of the cosmetic. Therefore, the moisture-absorbing section 600 may include a moisture-absorbing tool 620 and a base container transfer section 650.
[0246] The moisture-absorbing device 620 can pressurize the impregnation member 168 at a predetermined pressure to impregnate the impregnation member 168 with cosmetic. The base container transfer unit 650 may be configured to move the base container 164, which contains the cosmetic and the impregnation member 168, to the position where impregnation by the moisture-absorbing device 620 takes place.
[0247] Specifically, referring to Figure 8, the moisture absorption device 620 may include a fixed-position holder 630 and a pressurizing section 640, and may further include a weight section 660.
[0248] The moisture-absorbing device 620 is provided at the bottom of the table 114, where the anchoring section 300 and the assembly section 500 are located. The fixed-position holder 630 may be provided at the bottom of the table 114 so as to be able to move up and down in the height direction. The fixed-position holder 630 may include a support base 631, a holder section 632, a holder lever 633, and a guide section 634.
[0249] The support base 631 can support or connect to the holder portion 632, the holder lever 633, and the guide portion 634. The holder portion 632 is installed on the support base 631 and protrudes downward, and when the base container transfer unit 650, on which the base container 164 is securely attached, is located below it, the holder portion 632 can fix the base container 164 in place so that it does not move, thereby maintaining the base container 164 in a fixed position.
[0250] The holder lever 633 is connected to the support base 631 and is configured to protrude to one side, and can be used to move the support base 631 by moving it up and down or left and right while it is being gripped by one of the transport units of the transport means 800 (e.g., the first transport unit 801).
[0251] Furthermore, the guide portion 634 is positioned between the lower surface of the table 114 and the bottom surface of the moisture-absorbing portion 600, extends through the support base 631 in the height direction, and can guide the support base 631 to move up and down in the height direction.
[0252] As a result, when the support base 631 is raised and the base container 164 is placed directly below the holder portion 632, the transfer means 800 uses the holder lever 633 to lower the support base 631 downwards, and the base container 164 is fixed in place by the holder portion 632, maintaining its fixed position.
[0253] On the other hand, when the base container 164 is fixed in a fixed position without moving, the pressurizing unit 640 moves up and down within the fixed-position holder 630, pressurizing the impregnating member 168 contained in the base container 164 so that the cosmetic contained in the base container 164 is easily absorbed by the impregnating member 168. Specifically, the pressurizing unit 640 may include a pressurizing cylinder 641, a pressurizing handle 642, and a pressurizing spring 643.
[0254] Referring to Figures 16 and 18, the pressurizing cylinder 641 can pressurize the impregnation member 168 located inside the base container 164, which is fixed in a fixed position by the holder portion 632, while sliding vertically within the holder portion 632.
[0255] The pressurizing handle 642 is partially inserted into the pressurizing cylinder 641 by passing through its central portion, while the other portion is exposed to the upper outside of the pressurizing cylinder 641 and protrudes so as to be pushed by the transfer means 800.
[0256] Furthermore, the pressure spring 643 may be elastically installed between the pressure cylinder 641 and the pressure handle 642 to elastically transmit the external force to the pressure cylinder 641 when the pressure handle 642 is pressed. Therefore, for example, when the second transfer unit 802 of the transfer means 800 presses the pressure handle 642 once or more, the pressure cylinder 641 can pressurize the impregnation member 168 with an appropriate elastic force so that the cosmetic material in the base container 164 is impregnated into the impregnation member 168 without damaging the impregnation member 168.
[0257] Referring also to Figures 15 and 16, the weight portion 660 may be provided to maintain the fixed-position holder 630 in its maximum upward position so that the base container 164 can easily enter below the fixed-position holder 630 when no external force is applied to the fixed-position holder 630.
[0258] Since the fixed-position holder 630 is a heavy object, it may be descending due to gravity even when no external force is applied. Therefore, in order for the base container transfer unit 650, into which the base container 164 has been secured, to enter below the fixed-position holder 630, the fixed-position holder 630 must be raised separately, which is inconvenient. To address this, the weight unit 660 can be used to maintain the fixed-position holder 630 in an elevated position so as not to interfere with the fixed-position holder 630 when the base container transfer unit 650, into which the base container 164 has been secured, enters.
[0259] Specifically, the weight portion 660 may be connected to the fixed-position holder 630 via a connecting line 661 such that a force acting on the fixed-position holder 630 is in the opposite direction to gravity. A normal wire may be used for the connecting line 661, and one or more pulley-like pulley mechanisms (not shown) may be used along the path of the connecting line 661 so that the direction of the connecting line 661 can be smoothly changed and moved.
[0260] In this configuration, the weight section 660 is configured to be heavier than the weight of the fixed-position holder 630, so that when no external force is applied to or removed from the fixed-position holder 630, the fixed-position holder 630 rises due to the weight of the weight section 660.
[0261] Therefore, with the weight section 660 connected to the support base 631 of the fixed-position holder 630, the fixed-position holder 630 can be maintained in a state where it is naturally raised by the weight of the weight section 660. Because the fixed-position holder 630 is raised by the weight section 660, the base container transfer section 650 can easily enter so that the base container 164 is positioned below the holder section 632, without having to separately lift the holder section 632 when the base container 164 is mounted on the base container transfer section 650.
[0262] When the base container 164 is positioned below the holder portion 632, the transfer means 800 can push the holder lever 633 downward, causing the holder portion 632 to move downward and fix the base container 164 in place. At this time, as the support base 631 and the holder portion 632 move downward, the weight portion 660 can be raised upward by the external force applied from the transfer means 800.
[0263] Furthermore, once the impregnation of the impregnation member 168 is complete, when the transfer means 800 lightly lifts the holder lever 633 upward, the entire fixed-position holder 630 can easily rise due to the weight of the weight portion 660, thereby reducing the external force applied to the transfer means 800 in order to raise the fixed-position holder 630.
[0264] Furthermore, the base container transfer unit 650 may be provided to move the base container 164, which contains the cosmetic and impregnation member 168, to a position where impregnation is performed by the moisture absorption tool 620. In other words, the base container transfer unit 650 can move the base container 164 to a position below the holder portion 632 of the fixed-position holder 630. The base container transfer unit 650 is provided to be movable down to below the fixed-position holder 630, so that the base container 164 containing the cosmetic and impregnation member 168 can be secured there.
[0265] Specifically, the base container transfer unit 650 may include a guide rail 651 for the base container, a moving block 652 for the base container, a hook lever 653 for the base container, and a stopper 654 for the base container.
[0266] The base container guide rail 651 may be provided to extend from the outside of the moisture absorption device 620 to below the moisture absorption device 620. The base container moving block 652 is installed on the base container guide rail 651 and can move along the base container guide rail 651, and the base container 164 can be attached to one of its upper ends.
[0267] Furthermore, the base container hook lever 653 is provided for moving the base container movable block 652, and may be formed to protrude outward from one side of the base container movable block 652. This allows the transport means 800 to move the base container movable block 652 in a desired direction using the base container hook lever 653.
[0268] Furthermore, the base container stopper 654 is spaced at a predetermined distance from the base container guide rail 651 and can extend parallel to and along the base container guide rail 651. The base container stopper 654 has multiple hook grooves 654a formed therein so that one side of the base container hook lever 653 can catch on them. When the base container hook lever 653 catches on these hook grooves 654a, the movement of the base container moving block 652 is restricted, preventing the base container 164 from moving unintentionally during the moisture absorption process of the moisture absorption section 600.
[0269] The transfer means 800 will be described in more detail below, with further reference to Figures 19 and 20, along with the aforementioned Figure 9.
[0270] Figure 19 is a perspective view showing the first gripper 840 of the transfer means 800, and Figure 20 is a perspective view showing the second gripper 860 of the transfer means 800. Here, Figure 19(a) shows the first gripper 840 when not gripping a part, and Figure 19(b) shows the first gripper 840 when gripping a part. Similarly, Figure 20(a) shows the second gripper 860 when not gripping a part, and Figure 20(b) shows the second gripper 860 when gripping a part.
[0271] Referring to Figures 9, 19, and 20, the transfer means 800 moves the components and can support and move the container body so that the cosmetic is supplied to the inside of the container body. It can also connect the container body containing the cosmetic with a body lid that protects the container body. In this case, the container body refers to including the mixing container 161 of the first container and the base container 164 of the second container, and the body lid refers to including the dispensing member 162 of the first container and the cover container 166 of the second container.
[0272] The transfer mechanism 800 is provided by a multi-joint robot arm 810 and may consist of a first transfer unit 801 extending from the robot arm control unit 820 to the other side (right side as referenced in Figures 4 and 9) and a second transfer unit 802 extending from the robot arm control unit 820 to the other side (left side as referenced in Figures 4 and 9). The first transfer unit 801 is provided with a first gripper 840, and the second transfer unit 802 is provided with a second gripper 860. In this case, the first transfer unit 801 and the second transfer unit 802 are independently movable and may perform different roles.
[0273] The first gripper 840 selectively grips components and may include a plurality of first grip bodies 841. Specifically, the first gripper 840 includes two first grip bodies 841, and the two first grip bodies 841 may be provided in the same shape. In this embodiment, the case where the first gripper 840 grips and moves a component will be described as an example. However, the idea of the present invention is not limited to this, and the first gripper 840 can support and move components in various forms such as suction in addition to the gripping method.
[0274] The first grip body 841 can be coupled to the first transfer unit 801 by the first coupling portion 842. At this time, the first grip body 841 and the first coupling portion 842 are provided integrally, and the first coupling portion 842 and the first transfer unit 801 can be coupled by another coupling means. As an example, a plurality of through holes (not shown) are formed in the first coupling portion 842, and coupling means such as bolts pass through the through holes of the first coupling portion 842 and then can be coupled to the first transfer unit 801. However, the coupling method between the first coupling portion 842 and the first transfer unit 801 is not limited to this, and the first coupling portion 842 and the first transfer unit 801 can be coupled by various coupling methods. Also, the first grip body 841 and the first coupling portion 842 can be provided and coupled in separate configurations.
[0275] The two first grip bodies 841 can be provided facing each other. At this time, the interval of the first grip body 841 can be adjusted according to the operation of the robot arm control unit 820. Specifically, before gripping a component, as shown in FIG. 19(a), the first grip bodies 841 are provided at a predetermined interval, and in order to grip a component, as shown in FIG. 19(b), the first grip bodies 841 can be provided in a form that abuts against each other.
[0276] The first grip body 841 may be formed in a flat shape except for the surfaces facing each other. Specifically, when one side surface of the first grip body 841 provided on the left side based on the drawing is formed in a flat shape, the other side surface of the first grip body 841 provided on the right side based on the drawing may be formed in a flat shape. Also, when a first coupling part 842 is provided at one end of the first grip body 841, the other end of the first grip body 841 may be formed in a flat shape.
[0277] A first - 1 gripping groove 843 may be formed on the surfaces of the first grip body 841 that face each other. Specifically, when the other side surface of the first grip body 841 provided on the left side based on the drawing and the one side surface of the first grip body 841 provided on the right side are provided in a shape facing each other, the first - 1 gripping groove 843 may be formed on the right side of the other side surface of the first grip body 841 provided on the left side and on the one side surface of the first grip body 841 provided on the right side.
[0278] The first - 1 gripping groove 843 is a groove formed on one side of the first grip body 841 and may be formed in a shape corresponding to the mixing container 161. Specifically, the first - 1 gripping groove 843 may be formed in a groove shape that is more deeply recessed from the outside to the central side of the first grip body 841. That is, the deepest groove may be formed on the central side of the first grip body 841.
[0279] As shown in FIG. 19(b), when the robot arm control unit 820 is activated and a part of the first grip body 841 is provided so as to abut against each other, a first - 1 gripping region 8431 may be formed by the first - 1 gripping grooves 843 formed in each first grip body 841. The first - 1 gripping region 8431 may correspond to the mixing container 161 having a structure with a square cross - section. That is, when the mixing container 161 is provided in the first - 1 gripping region 8431, two opposite corners of the mixing container 161 may be provided between the two first grip bodies 841, and the remaining two corners of the mixing container 161 may be provided at the deepest recessed part of the first - 1 gripping groove 843.
[0280] One of the first grip bodies 841 may be provided with a first pad 844, which is a friction pad. One or more first pads 844 may be provided on each first grip body 841, and preferably, multiple pads may be provided at regular intervals outside the first grip groove 843.
[0281] The first pad 844 is for preventing friction between the mixing container 161 and the first grip body 841, and multiple pads may be provided on the outside of the first grip groove 843. In this case, the first pad 844 is made of an elastic material, and for example, the first pad 844 may be made of sponge. However, the material of the first pad 844 is not limited to this, and it may be made of various materials that can prevent friction.
[0282] The first pad 844 may be provided so as to protrude from the outer surface of the first-first gripping groove 843. That is, the first pad 844 may be provided in a shape that protrudes into the first-first gripping region 8431.
[0283] After the position of the first grip body 841 is adjusted so that a portion of the first grip body 841 is in contact with the first gripper 840, when the first gripper 840 grips the mixing container 161, the first pad 844 may come into direct contact with the mixing container 161. By providing the first pad 844 in the first gripping area 8431, it is possible to prevent the first grip body 841 from coming into contact with the mixing container 161 and damaging the mixing container 161.
[0284] A first-second gripping groove 845 may be formed in one of the first-first gripping grooves 843. Specifically, the first-second gripping groove 845 is a groove formed in a part of the first-first gripping groove 843, and one may be formed in each first grip body 841. When the position of the first grip body 841 is adjusted so that a part of the first grip body 841 abuts against the first grip body 843, a first-second gripping region 8451 may be formed inside the first-first gripping region 843 by the two first-second gripping grooves 845. In this case, the first-second gripping region 8451 corresponds to the shape of a spherical lever, and for example, it may correspond to the shape of a hook lever 255 for a mixing container.
[0285] A fixing pin 846 may be provided on one side of the first grip body 841. The fixing pin 846 is for gripping a component of the second container and may be formed in a shape that protrudes outward from the first grip body 841. In this case, the fixing pin 846 may be provided on both sides of each first grip body 841. Preferably, fixing pins 846 of the same shape may be provided on each first grip body 841 facing each other. In this embodiment, the figures show an example in which one fixing pin 846 is provided on each side of the first grip body 841 and one fixing pin 846 is provided on each bottom surface of the first grip body 841, but the position and number of fixing pins 846 are not limited thereto. For example, the fixing pins 846 may be provided only on the sides of the first grip body 841, or only on the bottom surface of the first grip body 841. In this case, the upper surface of the first grip body 841 means the surface on which the first connecting portion 842 is located, the lower surface means the surface opposite the upper surface on which the first connecting portion 842 is not located, and the side surface of the first grip body 841 means the surface excluding the upper and lower surfaces.
[0286] One side of the fixing pin 846 may be formed with a shape having a certain curvature. Specifically, one side of two opposing fixing pins 846 may be formed with a shape having a certain curvature.
[0287] When the position of the first grip body 841 is adjusted so that one side of the first grip body 841 contacts the object in order to grip a part, a constant distance can be maintained between the opposing fixing pins 846. In other words, a third gripping region 8461 can be formed between each of the fixing pins 846. By forming a shape with a certain curvature on one surface of the fixing pins 846, the third gripping region 8461 can also be provided with a shape having a certain curvature. This makes it possible for the third gripping region 8461 to grip circular parts.
[0288] The third gripping region 8461 is formed to a size corresponding to the components of the second container, and specifically, the third gripping region 8461 may be formed to a size corresponding to the base container 164, the cover container 166, and the impregnation member 168. This allows the first gripper 840 to grip the base container 164, the cover container 166, and the impregnation member 168 by the third gripping region 8461.
[0289] The second transfer unit 802 may be provided with a second gripper 860. The second gripper 860 selectively grips a part and may include a plurality of second grip bodies 861. Specifically, the second gripper 860 may include two second grip bodies 861, and the two second grip bodies 861 may be provided in the same shape. In this case, the second gripper 860, like the first gripper 840, can support and move a part in various ways other than gripping the part.
[0290] The second grip body 861 can be connected to the second transfer unit 802 by the second coupling portion 862. In this case, the second grip body 861 and the second coupling portion 862 can be provided as a single unit. Furthermore, the method of connecting the second transfer unit 802 and the second coupling portion 862 may be the same as the method of connecting the first transfer unit 801 and the first coupling portion 842, but the concept of the present invention is not limited to these, so various methods of connecting the second transfer unit 802 and the second coupling portion 862 can be provided.
[0291] The two second grip bodies 861 may be arranged facing each other. In this case, the spacing between the second grip bodies 861 can be adjusted by the operation of the robot arm control unit 820. Specifically, before gripping a part, the second grip bodies 861 may be arranged at a predetermined distance apart, as shown in Figure 20(a), and in order to grip a part, the second grip bodies 861 may be arranged in a manner in contact with each other, as shown in Figure 20(b).
[0292] The two second grip bodies 861 may be formed with a flattened shape on their outer surfaces, excluding the faces facing each other. Specifically, if one side of the second grip body 861 located on the left side of the drawing is formed with a flattened shape, the other side of the second grip body 861 located on the right side of the drawing may also be formed with a flattened shape. Furthermore, if a second connecting portion 862 is provided at one end of the second grip body 861, the other end of the second grip body 861 may also be formed with a flattened shape.
[0293] The second grip body 861 may have a second-first gripping groove 863 formed on its opposing surfaces. Specifically, when the other side of the second grip body 861 located on the left side of the drawing and one side of the second grip body 861 located on the right side are arranged to face each other, the second-first gripping groove 863 may be formed on the other side of the second grip body 861 located on the left side and on one side of the second grip body 861 located on the right side.
[0294] The second-first gripping groove 863 is a groove formed on one side of the second grip body 861 and may be formed in a shape corresponding to the mixing container 161. Specifically, the second-first gripping groove 863 may be provided with the same size and shape as the first-first gripping groove 843 and may be formed as a groove that becomes more deeply recessed from the outside toward the center of the second grip body 861. That is, the deepest groove may be formed on the central side of the second grip body 861.
[0295] As shown in Figure 20(b), when the robot arm control unit 820 is operated so that parts of the second grip bodies 861 come into contact with each other, the second-first gripping grooves 863 formed in each of the second grip bodies 861 can form a second-first gripping region 8631. The second-first gripping region 8631 can correspond to a mixing container 161 with a structure having corners in its longitudinal cross-section. That is, when the mixing container 161 is placed in the second-first gripping region 8631, the two opposing corners of the mixing container 161 can be placed between the two second grip bodies 861, and the remaining two corners of the mixing container 161 can be placed in the deepest recessed parts of the second-first gripping grooves 863. The second-first gripping region 8631 of the second gripper 860 can be included in the first gripping regions 8431, 8631 together with the first-first gripping region 8431 of the first gripper 840.
[0296] One side of the second grip body 861 may be provided with a second pad 864, which is a friction pad. The second pad 864 is for preventing friction between the mixing container 161 and the second grip body 861, and multiple pads may be provided on the outside of the second-first gripping groove 863. The second pad 864 may also be made of the same material as the first pad 844, but the concept of the present invention is not limited thereto.
[0297] A second-second gripping groove 865 may be formed in one of the second-first gripping grooves 863. Specifically, the second-second gripping groove 865 is a groove formed in a portion of the second-first gripping groove 863, and one may be formed in each second grip body 861. When the position of the second grip body 861 is adjusted so that a portion of the second grip body 861 abuts against the second grip body 861, a second-second gripping region 8651 may be formed inside the second-first gripping region 8631 by the two second-second gripping grooves 865. In this case, the second-second gripping region 8651 corresponds to the shape of a spherical lever, and for example, it may correspond to the shape of a hook lever 255 for a mixing container or a hook lever 653 for a base container. The second-second gripping region 8651 of the second gripper 860 may be included in the second gripping regions 8451, 8651 together with the first-second gripping region 8451 of the first gripper 840.
[0298] On one side of the second grip body 861, a second-third gripping groove 866 may be formed. The second-third gripping groove 866 is formed to have a semi-circular cross-section and may be formed to a size corresponding to the straw 1622 of the discharge member 162. Specifically, when a part of the second grip body 861 is provided to abut, the second-third gripping grooves 866 formed in the two second grip bodies 861 may have a circular cross-section while abutting each other. That is, a fourth gripping region 8661 is formed by the second-third gripping groove 866, and the fourth gripping region 8661 may correspond to the size and shape of the straw 1622.
[0299] The fourth gripping region 8661 may be formed to have a relatively smaller diameter than the second-first gripping region 8631 and the second-second gripping region 8651. Also, the fourth gripping region 8661 may be formed at a position that does not overlap with the second-first gripping region 8631 and the second-second gripping region 8651. Preferably, the second-third gripping groove 866 is formed at a position adjacent to the upper surface of the second grip body 861, whereby the second-third gripping groove 866 may be located between the upper surface of the second-first gripping groove 863 and the second grip body 861. That is, the fourth gripping region 8661 may be formed at a position adjacent to the upper surface of the second grip body 861. Note that the upper surface of the second grip body 861 refers to the surface where the second coupling part 862 is located.
[0300] The fourth gripping region 8661 may be formed to have a larger diameter than the straw 1622 so that it can grip the straw 1622. This allows the straw 1622 to be positioned inside the fourth gripping region 8661. Alternatively, the fourth gripping region 8661 may be formed to have a smaller diameter than the inlet 1611 of the mixing container 161. This allows the fourth gripping region 8661 to be positioned on one side of the inlet 1611 when the second gripper 860 is positioned above the mixing container 1611. That is, after the fourth gripping region 8661 is positioned on one side of the inlet 1611, the second gripper 860 can pull the straw 1622 into the inside of the mixing container 1611 through the inlet 1611. In other words, by forming the fourth gripping area 8661 for gripping the straw 1622 to be smaller than the inlet 1611 of the mixing container 161, the straw 1622 can be positioned inside the inlet 1611 without coming off. That is, the dispensing member 162 can be precisely positioned above the mixing container 161 with the straw 1622 retracted inside the mixing container 161.
[0301] Figure 21 is a simplified diagram showing the coupling stage between the mixing container and the dispensing member, which are part of the cosmetic manufacturing apparatus shown in Figure 1.
[0302] Referring to Figure 21(a), the mixing container 161 can be attached to the component storage unit 50. Specifically, after the multiple cosmetic materials contained in the mixing container 161 have been mixed in the mixing section 400, the mixing container 161 can be moved from the mixing section 400 to the component storage unit 50. In this case, the movement of the mixing container 161 from the mixing section 400 to the component storage unit 50 can be performed by the second transfer unit 802. Specifically, the mixing container 161 can be moved to the component storage unit 50 while being gripped by the first and second gripping regions 8451 of the second gripper 860. In this case, the mixing container 161 moved by the second gripper 860 can be attached to the attachment section 300 of the component storage unit 50, but the position in which the mixing container 161 is attached is not limited to the attachment section 300.
[0303] The discharge member 162 can be moved above the mixing container 161 by the first transfer unit 801. Specifically, the first gripper 840 of the first transfer unit 801 can grasp the discharge member 162 supplied to the parts supply unit 160 and move it above the mixing container 161 which is secured to the attachment unit 300. At this time, the discharge member 162 is positioned above the mixing container 161 at a predetermined distance, and at this position, the straw 1622 may also be positioned at a certain distance from the mixing container 161. In addition, the second gripper 860 of the second transfer unit 802 may be provided in a position that does not overlap with the mixing container 161 and the discharge member 162.
[0304] Referring to Figure 21(b), one end of the straw 1622 can be aligned by the second transfer unit 802. Specifically, the second gripper 860 of the second transfer unit 802 can be moved toward the discharge member 162 to guide the straw 1622 to a fixed position. Specifically, the straw 1622 can be supported and guided to a fixed position by inserting the straw 1622 into the fourth gripping area 8661 of the second gripper 860. In this case, the fixed position of the straw 1622 may be a position corresponding to above the inlet 1611 of the mixing container 161.
[0305] Referring to Figure 21(c), the first transfer unit 801 can insert at least a portion of the straw 1622 into the mixing container 161. Specifically, once the second gripper 860 aligns the straw 1622, the first gripper 840, which grips the dispensing member 162, can lower the dispensing member 162. In other words, as the dispensing member 162 moves downward, at least a portion of the straw 1622 can be inserted into the mixing container 161.
[0306] Referring to Figure 21(d), the position of the second transfer unit 802 can be moved so as not to interfere with the first transfer unit 801. Specifically, when a portion of the straw 1622 is inserted into the mixing container 161, the second gripper 860, which was guiding the insertion of the straw 1622, can cease guiding the straw 1622 and move to the side where the mixing container 161 is not located. In other words, the dispensing member 162 and the mixing container 161 can be provided in a state where they can be coupled together.
[0307] Referring to Figure 21(e), the discharge member 162 and the mixing container 161 can be coupled by the first transfer unit 801. Specifically, the first gripper 840 of the first transfer unit 801 can grip the discharge member 162 and then couple the discharge member 162 to the mixing container 161. In this case, the discharge member 162 can be screw-coupled to the mixing container 161 while rotating due to the rotation of the first gripper 840. In other words, the mixing container 161 can be sealed by the discharge member 162.
[0308] The following section will specifically describe the use of the first gripper 840 and the second gripper 860 in the cosmetic manufacturing process.
[0309] First, the mixing container 161 stored in the parts supply unit 160 is moved by the transfer means 800 to the cosmetic supply unit 200, where the cosmetic supply unit 200 can store the cosmetic in the mixing container 161.
[0310] Specifically, when cosmetic material is supplied from the cosmetic supply unit 200 located on one side of the main body 100 (left side as shown in Figure 4) to the mixing container 161 (hereinafter referred to as the first case), the second transfer unit 802 can grasp the mixing container 161 supplied to the parts supply unit 160 and directly move the mixing container 161 to the mixing container transfer unit 250 located on one side of the main body 100.
[0311] Subsequently, the transfer means 800 can grasp the hook lever 255 for the mixing container of the mixing container transfer unit 250 and move the mixing container 161 to the area below the discharge port 232 of the cosmetic supply unit 200. This allows the cosmetic to be stored in the mixing container 161. In the first case, where the cosmetic is supplied from the cosmetic supply unit 200 located on one side of the main body 100, the second transfer unit 802 can operate the mixing container transfer unit 250 located on one side of the main body 100 to move the mixing container 161. Specifically, in the first case, the second gripper 860 of the second transfer unit 802 can grasp and operate the hook lever 255 for the mixing container of the mixing container transfer unit 250 located on one side of the main body 100.
[0312] As another example, when cosmetic material is supplied from the cosmetic supply unit 200 located on the other side of the main body 100 (right side in Figure 4) to the mixing container 161 (hereinafter referred to as the second case), the second transfer unit 802 can grasp the mixing container 161 supplied to the parts supply unit 160 and secure the mixing container 161 to the attachment unit 300. Subsequently, the first transfer unit 801 can grasp the mixing container 161 secured to the attachment unit 300 and move the mixing container 161 to the mixing container transfer unit 250 located on the other side of the main body 100.
[0313] In the second case described above, where cosmetics are supplied from a cosmetics supply unit 200 located on the other side of the main body 100, the first transfer unit 801 can operate a mixing container transfer unit 250 located on the other side of the main body 100 to move the mixing container 161.
[0314] In the second case, the first gripper 840 of the first transfer unit 801 can grip and operate the hook lever 255 for the mixing container of the mixing container transfer unit 250 located on the other side of the main body 100. That is, the first transfer unit 801 can grip the hook lever 255 for the mixing container of the mixing container transfer unit 250 located on the other side of the main body 100 and move the mixing container 161 to the area below the discharge port 232 of the cosmetic supply unit 200. This allows the cosmetic to be stored in the mixing container 161.
[0315] Through the process described above, the mixing container 161, which has been supplied with cosmetics from either the cosmetic supply unit 200 located on one side of the main body 100 or the cosmetic supply unit 200 located on the other side, can be transferred to the mixing unit 400 by the transfer means 800.
[0316] In this case, in the first instance, the first transfer unit 801 can transfer the mixing container 161 from the cosmetic supply unit 200 to the mixing unit 400.
[0317] In the second case, after the first transfer unit 801 secures the mixing container 161 to the attachment section 300, the second transfer unit 802 may transfer the mixing container 161 from the attachment section 300 to the mixing section 400.
[0318] On the other hand, after the mixing of the cosmetic product contained in the mixing container 161 is completed by the mixing unit 400, the mixing container 161 can be transferred from the mixing unit 400 to the fixing unit 300 by the second transfer unit 802.
[0319] In the following, the steps for manufacturing the cosmetic product in the first container and the steps for manufacturing the cosmetic product in the second container will be described separately, after the cosmetic product has been mixed in the mixing unit 400.
[0320] When the cosmetic manufacturing apparatus 10 manufactures the cosmetic in the first container, the first gripper 840 can grip the dispensing member 162 with its first-1 gripping area 8431 and position it above the mixing container 161 which is fixed to the fixing part 300. When the dispensing member 162 is aligned above the mixing container 161, the second gripper 860 can grip the straw 1622 of the dispensing member 162 with its fourth gripping area 8661. In this case, the fourth gripping area 8661 will be positioned above the inlet 1611 of the mixing container 161, thereby allowing the straw 1622 to smoothly enter the inside of the mixing container 161. That is, the second gripper 860 can guide the straw 1622 into the inlet 1611 with its fourth gripping area 8661.
[0321] After the straw 1622 enters the mixing container 161, the second gripper 860 is positioned so as to be a certain distance away from the dispensing member 162, and the first gripper 840 can connect the dispensing member 162 to the mixing container 161. That is, the second gripper 860 can be moved to a position where it does not interfere with the operation of the first gripper 840 to connect the dispensing member 162 to the mixing container 161. In this case, the first gripper 840 can grip the dispensing member 162 in the first-1 gripping area 8431 and rotate it. That is, the dispensing member 162 and the mixing container 161 can be screw-connected by the rotation of the first gripper 840. This allows the cosmetic in the first container to be completed.
[0322] When the dispensing member 162 and the mixing container 161 are connected, the second gripper 860 can grip and move the mixing container 161 with its second-first gripping area 8631, thereby securing the mixing container 161 in the groove 167 of the tray 165. In other words, the second gripper 860 can secure the finished cosmetic product in the first container in the groove 167.
[0323] Subsequently, the second transfer unit 802 can push the tray 165 and discharge the completed cosmetic container (first container) that has settled into the groove 167 to the outside of the main body 100.
[0324] On the other hand, when the cosmetic manufacturing apparatus 10 manufactures the cosmetic in the second container, the first gripper 840 can grip the base container 164 with the third gripping area 8461 and move the base container 164 to the assembly section 500.
[0325] The second gripper 860 can grip the mixing container 161, which is attached to the attachment part 300 by the second-first gripping area 8631, move it above the base container 164 attached to the assembly part 500, and then inject and discharge the cosmetic contents contained in the mixing container 161 into the base container 164. At this time, the second transfer unit 802 can rotate the mixing container 161 at a predetermined angle so that more cosmetic contents are discharged by inertia, and after a certain period of time has elapsed, it can shake the mixing container 161.
[0326] Once the cosmetic product has been dispensed into the base container 164, the first gripper 840 can grip the mixing container 161 with its first-1 gripping area 8431 and move it to the recovery unit 112.
[0327] The first gripper 840 can move the impregnating member 168 supplied to the parts supply unit 160 by the third gripping region 8461 and insert it into the base container 164. The first gripper 840 can also grip the base container 164 containing the impregnating member 168 with the third gripping region 8461 and move it to the moisture absorption unit 600.
[0328] The first gripper 840 can move the position of the base container 164 by operating the hook lever 653 for the base container with the second-first gripping area 8631. The second gripper 860 can apply pressure to the moisture absorption tool 620 with the lower surface of the second grip body 861.
[0329] Once the moisture absorption process is complete, the first gripper 840 can grip the base container 164 with its third gripping region 8461 and move it to the assembly section 500. Subsequently, the first gripper 840 can grip the cover container 166 supplied to the parts supply section 160 with its third gripping region 8461 and connect it to the base container 164. This completes the cosmetic product in the second container.
[0330] Once the manufacturing of the cosmetic product in the second container is complete by joining the base container 164 and the cover container 166, the joined base container 164 and cover container 166 can be grasped and moved by the third gripping area 8461 of the first gripper 840 and set into the groove 167. That is, the first gripper 840 can set the finished cosmetic product in the second container into the groove 167.
[0331] Subsequently, the second transfer unit 802 can push the tray 165 and discharge the completed cosmetic container (second container) that has settled into the groove 167 to the outside of the main body 100.
[0332] The control method for providing the sample mentioned above will be explained in more detail below.
[0333] A user can request a sample via the user interface unit 130 or the terminal 20. Specifically, a user can receive a sample before receiving the finished product, and can input such a request into the user interface unit 130 or the terminal 20.
[0334] When the control unit 900 receives a sample request from a user via the manufacturing mode receiving unit 950, the skin condition analysis unit 910 can analyze the skin condition of the user who requested the sample. Specifically, the skin condition analysis unit 910 can receive data measured from the terminal 20 and analyze the user's skin condition. This allows the control unit 900 to analyze the user's skin condition at the time of the sample request and reflect it in the sample. Alternatively, the control unit 900 may receive previously measured data from the terminal 20 in advance, then have the skin condition analysis unit 910 analyze the skin condition and reflect the results in the sample. In this case, the terminal 20 may include known skin condition measurement means such as a camera, moisture sensor, oil sensor, and colorimeter.
[0335] In this embodiment, the composition ratios (first composition ratio, second composition ratio, and fourth composition ratio) described later are explained using the example that they are calculated by the control unit 900 of the cosmetic manufacturing apparatus 10. However, the concept of the present invention is not limited to this, and may include the calculation of the composition ratios by the terminal 20 and the operating server 40.
[0336] The control unit 900 may determine the cosmetic composition ratio in the composition ratio determination unit 920 based on the results analyzed by the skin condition analysis unit 910. Alternatively, the control unit 900 may determine the cosmetic composition ratio based on the user's previously entered skin condition information. In this case, the composition ratio determined by the composition ratio determination unit 920 can be called the first composition ratio.
[0337] Specifically, the control unit 900 can store composition ratio data corresponding to each skin condition. For example, the control unit 900 can store composition ratio data indicating that composition ratio a is applied for skin condition A, composition ratio b is applied for skin condition B, and composition ratio c is applied for skin condition C. In this case, if the results of the skin condition analysis unit 910 or the previously entered user skin condition are close to skin condition A, the composition ratio determination unit 920 can determine a composition ratio suitable for skin condition A based on the stored composition ratio data, and determine the amount of cosmetic supplied that corresponds to composition ratio a. In other words, the control unit 900 can determine composition ratio a stored in the database as the first composition ratio.
[0338] The control unit 900 receives user information from the operating server 40 and, based on the user information, can calculate a second composition ratio by correcting the first composition ratio using a predetermined algorithm. In this case, the user information received by the control unit 900 may be, but is not limited to, the user's cosmetic purchase history.
[0339] Specifically, if a user has a history of purchasing cosmetics with a lighter color than the first composition ratio, the system can calculate a second composition ratio that shows the user a lighter color than the first composition ratio. Conversely, if a user has a history of purchasing cosmetics with a darker color than the first composition ratio, the system can calculate a second composition ratio that shows the user a darker color than the first composition ratio. Therefore, the composition ratio determination unit 920 can determine the composition ratio to apply to the sample using either the first or second composition ratio. When the composition ratio determination unit 920 determines the composition ratio using the second composition ratio, the user's preference is reflected, which can further increase user satisfaction.
[0340] In this embodiment, the calculation process for the first and second composition ratios is described using the example that it is performed by the cosmetic manufacturing apparatus 10. However, the concept of the present invention is not limited to this, and may include the first and second composition ratios being calculated by the operating server 40 and then transmitted to the cosmetic manufacturing apparatus 10 or displayed on the terminal 20 or user interface unit 130.
[0341] The control unit 900 can determine the amount of each cosmetic product to be dispensed based on the composition ratio determined by the composition ratio determination unit 920. For example, if a sample is provided in an amount equal to 1 / N of the finished product, the control unit 900 can determine the amount of each cosmetic product to be supplied in an amount equal to 1 / N based on the composition ratio determined by the composition ratio determination unit 920.
[0342] The control unit 900 transmits the composition ratio determined by the composition ratio determination unit 920 to the user interface unit 130 or terminal 20, and the user interface unit 130 or terminal 20 may display the transmitted composition ratio to the user.
[0343] The user can modify the first or second composition ratio guided via the user interface unit 130 or terminal 20. For example, if the user wants to further increase the moisture content from the guided first or second composition ratio, they can request to further increase the ratio of cosmetic ingredients related to moisture, and if they want to further increase the viscosity from the guided first or second composition ratio, they can request to further increase the ratio of cosmetic ingredients related to viscosity. In this case, the user can directly input the modifications to the user interface unit 130 or terminal 20. As a result, the control unit 900 receives the third composition ratio information modified by the user from the first or second composition ratio, and the composition ratio modification unit 930 can modify either the existing first or second composition ratio to change the composition ratio information as the third composition ratio. This composition ratio modification process by the composition ratio modification unit 930 may be omitted.
[0344] The cosmetic manufacturing apparatus 10 can manufacture samples based on composition ratios determined by the composition ratio determination unit 920 or modified by the composition ratio modification unit 930. Specifically, the control unit 900 controls the transfer means 800 so that the cosmetic supply unit 200 is supplied with a mixing container 161, thereby supplying the mixing container 161 with a cosmetic product according to one of the first, second, and third composition ratios determined by the composition ratio determination unit 920 or the composition ratio modification unit 930.
[0345] Once the supply of cosmetic material to the mixing container 161 is complete, the control unit 900 can again control the transfer means 800 to deliver the mixing container 161 to the groove 167 of the component supply unit 160. In other words, a sample containing 1 / N of the finished product's cosmetic material can be settled in the groove 167 of the tray 165 and offered to the user.
[0346] The user can directly use the sample transmitted from the parts supply unit 160 and return the used sample to the groove 167 of the parts supply unit 160 or the mixing container support unit 163a. In this case, the control unit 900 can detect whether or not a sample has been returned using sensors provided in the tray 165, groove 167, or mixing container support unit 163a, and then collect the sample. Alternatively, after providing the sample to the user, the control unit 900 can control the tray 165 to collect the sample after a predetermined time. In this case, the control unit 900 can notify the user of the collection time via the user interface unit 130 or terminal 20. If a used sample has not been provided to the tray 165 after the predetermined time, the control unit 900 can send a sample collection signal to the user by another notification.
[0347] After using the sample, the user may input additional requests via the user interface unit 130 or terminal 20. In this case, the user may select at least one of several modes. For example, the modes may include a finished product request mode, a sample modification request mode, and a sample disposal request mode. Here, the sample already received by the user is referred to as the first sample, and the sample transmitted to the user after the first sample is referred to as the second sample.
[0348] When a user inputs a finished product request mode via the user interface unit 130 or terminal 20, the control unit 900 can receive the finished product request mode via the manufacturing mode receiving unit 950. In other words, if a user inputs a finished product request mode after using the first sample, it can be understood that an additional cosmetic product having the same composition ratio as the first sample will be supplied.
[0349] Specifically, when a finished product request mode is received, the control unit 900 controls the transfer means 800 to move the mixed container 161 containing the recovered first sample back to the cosmetic supply unit 200, and the cosmetic supply unit 200 can supply additional cosmetic to the mixed container 161. In this case, if the user has not used up all of the first sample, the sample cosmetic may still be provided with some already stored in the mixed container 161. Therefore, the control unit 900 can adjust the amount of cosmetic supplied to the mixed container 161 to be the finished product supply amount minus the amount supplied during sample production. For example, if 1 / N of the cosmetic is stored in the mixed container 161 during the production of the first sample, then (N-1) / N of the cosmetic may be stored in the mixed container 161 during the production of the finished product. In other words, it is possible to prevent the amount of cosmetic from exceeding the amount that can be stored in the mixed container 161 during the production of the finished product.
[0350] Alternatively, after measuring the weight of the first sample provided to the cosmetic supply unit 200, the control unit 900 may adjust the amount of cosmetic supplied to the cosmetic supply unit during the production of the finished product. In this case, the control unit 900 may supply cosmetic to fill the mixing container 161 completely and provide the user with the finished product.
[0351] When a user inputs a sample modification request mode via the user interface unit 130 or terminal 20, the control unit 900 may receive a sample modification request mode via the manufacturing mode receiving unit 950 that requests a second sample with a different composition ratio from the first sample provided.
[0352] In other words, it can be understood that if a user uses the first sample and then enters the sample modification request mode, a cosmetic product with a different composition ratio from the first sample will be manufactured and provided to the user as the second sample.
[0353] In this case, the second sample can be produced by adding cosmetic to the first sample which already contains cosmetic, or by refilling an empty mixing container 161 with cosmetic. In this embodiment, the second sample will be explained using the example of producing it by refilling an empty mixing container 161 with cosmetic.
[0354] Specifically, the user can input composition ratio modification data via the user interface unit 130 or terminal 20. In this case, the existing composition ratio of the first sample (one of the first, second, or third composition ratios) is displayed on the user interface unit 130 or terminal 20, and the user can input a request to modify the composition ratio of the first sample to a desired composition ratio. In other words, the user can input a fourth composition ratio, which is a modification of one of the first, second, or third composition ratios. For example, if a second sample with higher viscosity than the first sample is desired, the user can modify the composition ratio via the user interface unit 130 or terminal 20 to increase the proportion of cosmetic that improves viscosity.
[0355] The control unit 900 receives the fourth composition ratio modified by the user, and therefore the control unit 900 can determine whether or not the composition ratio can be modified.
[0356] If the control unit 900 determines that the composition ratio can be modified, it may modify the composition ratio to a fourth composition ratio in the composition ratio modification unit 930. Once the composition ratio modification is completed in the composition ratio modification unit 930, the control unit 900 may control the transfer means 800 to position a different mixing container 161, different from the mixing container 161 used for the first sample, in the cosmetic supply unit 200. In this case, the mixing container 161 used for the first sample is designated as the first mixing container, and the new mixing container 161 not used for the first sample is designated as the second mixing container. In other words, once the composition ratio modification is completed in the composition ratio modification unit 930, the control unit 900 may control the transfer means 800 to position the second mixing container, which is an empty mixing container 161, in the cosmetic supply unit 200 and supply cosmetic to the empty mixing container 161 to have a fourth composition ratio.
[0357] The aforementioned composition ratios can be stored in a product database. For example, the product database may contain between 200 and 100,000 composition ratios, and a composition ratio can be selected from the database, and a cosmetic product can be manufactured according to the selected ratio.
[0358] However, the concept of the present invention is not limited thereto, and the control unit 900 may control the transfer means 800 to position the collected first mixing container in the cosmetic supply unit 200.
[0359] The cosmetic supply unit 200 can supply cosmetic to the second mixing container of the mixing container 161 in a supply amount according to the fourth composition ratio, under the control of the control unit 900.
[0360] The second sample, according to the fourth composition ratio, can be transferred again to the groove 167 of the tray 165 by the transfer means 800 and provided to the user. In other words, the second sample provided to the user again may be a different cosmetic from the first sample. Furthermore, the second sample provided to the user again may be provided in a second mixing container different from the first mixing container that contained the first sample, or in the first mixing container to which the cosmetic was resupplied after recovery.
[0361] The control unit 900 may determine that it is impossible to modify the composition ratio based on the composition ratio data received by the user. For example, if the first sample provided to the user has a specific cosmetic added to lower its viscosity, and the composition ratio of the second sample requested by the user requires the removal of the specific cosmetic initially supplied, the control unit 900 may determine that it is impossible to modify the composition ratio. That is, if the first and second samples are provided in the same mixing container 161, the control unit 900 may determine that it is impossible to modify the composition ratio because it is not possible to remove the specific cosmetic from the already manufactured first sample. Alternatively, in order to manufacture the second sample with the fourth composition ratio requested by the user, it may be necessary to supply a larger amount of cosmetic than the amount that the mixing container 161 can hold. In this case, the control unit 900 may determine that it is impossible to modify the composition ratio. The case in which it is impossible to modify the composition ratio described in this embodiment is only one embodiment, and the concept of the present invention is not limited thereto.
[0362] When a user inputs a first sample disposal request mode via the user interface unit 130 or terminal 20, the control unit 900 may receive the first sample disposal request mode via the manufacturing mode receiving unit 950.
[0363] Upon receiving a request for the first sample to be discarded, the control unit 900 controls the transfer means 800 to retrieve the collected first sample into the recovery unit 112.
[0364] In the following, the mixing unit 400 will be described in more detail with reference to Figures 4, 22, and 23.
[0365] The mixing unit 400 is configured to receive the mixing container 161, which has been supplied with cosmetics by the cosmetic supply unit 200, and to mix the multiple cosmetics contained in the mixing container 161. Specifically, the mixing unit 400 can mix the cosmetics in the mixing container 161 by causing the mixing container 161 to revolve and rotate. In this case, the mixing unit 400 may be located behind the component supply unit 160.
[0366] Specifically, the mixing unit 400 may include a mixing housing 410, a first rotating member 402, a second rotating member 404, and a rotary drive unit 430.
[0367] The mixing housing 410 forms the overall shape of the mixing section 400 and may have an internal storage space. In other words, the mixing housing 410 may provide a space in which the cosmetic mixture in the mixing container 161 can be mixed. At least one of the first rotating member 402, the second rotating member 404, and the rotary drive unit 430 can be housed in the internal storage space of the mixing housing 410. In this embodiment, the illustration shows the mixing housing 410 as housing all of the first rotating member 402, the second rotating member 404, and the rotary drive unit 430, but this does not limit the concept of the present invention.
[0368] The first rotating member 402 is capable of causing the mixing container 161, which is transmitted to the mixing unit 400, to rotate, and may be equipped with a mixing container insertion port 406 into which the mixing container 161 can be inserted. In this case, the first rotating member 402 can rotate with the mixing container 161 inserted. Since the first rotating member 402 can rotate with the mixing container 161 inserted, it can cause the mixing container 161 to rotate.
[0369] The second rotating member 404 can cause the mixing container 161 transmitted to the mixing unit 400 to revolve, and can rotate the first rotating member 402. In this case, since the first rotating member 402 is positioned at a predetermined distance from the center (M) of the second rotating member 404, the rotation of the second rotating member 404 allows the mixing container 161 housed in the first rotating member 402 to revolve.
[0370] Specifically, the second rotating member 404 is rotated with respect to a second central axis (X2) that passes through the center (M), and the rotation of the second rotating member 404 allows the mixing container 161 transmitted to the mixing section 400 to revolve. In this case, the second central axis (X2) is provided in the center of the second rotating member 404 and may be oriented in a direction that passes through the center (M) and intersects with the ground. Specifically, the second central axis (X2) may be perpendicular to the ground.
[0371] Furthermore, as described above, the first rotating member 402 is equipped with a mixing container insertion port 406 and can accommodate the mixing container 161. Also, a part of the first rotating member 402 can be inserted into one side of the second rotating member 404. In this case, the first rotating member 402 can be inserted into the second rotating member 404 at an angle such that the longitudinal direction of the first rotating member 402 forms a predetermined angle with the ground and fixed therein. Note that the longitudinal direction of the first rotating member 402 may be the direction in which the mixing container 161 is inserted.
[0372] In this configuration, the first rotating member 402 may be positioned on the second rotating member 404 at a predetermined distance circumferentially from the second central axis (X2). As a result, the mixing container 161 housed in the first rotating member 402 can revolve when the second rotating member 404 is rotated with respect to the second central axis (X2).
[0373] Specifically, the first rotating member 402 can rotate with respect to a first central axis (X1) that is different from the second central axis (X2). In this case, the first central axis (X1) can be provided in the center of the first rotating member 402 along the length direction of the first rotating member 402. In this case, since the first rotating member 402 is positioned on the second rotating member 404 at a predetermined distance from the second central axis (X2) in the circumferential direction, the first central axis (X1) can be provided on the first rotating member 402 at a distance from the second central axis (X2). Furthermore, since the first rotating member 402 is inserted into the second rotating member 404 at an angle such that its length direction makes a predetermined angle with the ground, the first central axis (X1) can be provided in a direction that intersects with the direction made by the second central axis (X2).
[0374] On the other hand, the mixing container insertion port 406 may be provided in a shape corresponding to the mixing container 161. Specifically, the mixing container 161 is formed with a structure having corners in its vertical cross-section, and the mixing container insertion port 406 may have a shape corresponding to the aforementioned mixing container 161. In the process of the mixing container 161 being inserted into the mixing container insertion port 406 by the transfer means 800, the transfer means 800 may perform a process of switching the orientation of the mixing container 161 to a predetermined direction and then settling it in place so that the mixing container 161 fits precisely into the mixing container insertion port 406.
[0375] The rotary drive unit 430 can rotate one or more of the first rotating member 402 and the second rotating member 404. Exemplarily, the rotary drive unit 430 may be a motor. In this embodiment, the diagram shows a first drive unit 432 for rotating the first rotating member 402 and a second drive unit 434 for rotating the second rotating member 404, provided separately, but this does not limit the concept of the present invention. As another example, the first rotating member 402 and the second rotating member 404 may be rotated simultaneously by a single rotary drive unit 430.
[0376] On the other hand, the control unit 900 can control the drive of the mixing unit 400. First, the control unit 900 can rotate the first rotating member 402 and the second rotating member 404 simultaneously for a predetermined period of time. This allows the mixing container 161 inserted into the mixing container insertion port 406 to rotate on its axis while simultaneously revolving. In this case, the time for rotating the first rotating member 402 and the second rotating member 404 can be varied according to the total amount and type of cosmetic product.
[0377] After the rotation of the first rotating member 402 and the second rotating member 404 is complete, the control unit 900 can control the mixing unit 400 so that the mixing container insertion port 406 stops at a predetermined position. Since the mixing container insertion port 406 stops at a predetermined position after rotation by the control unit 900, after the mixing process by rotation is complete, the operation of the transfer means 800 to pull out the mixing container 161 from the mixing container insertion port 406 can always be performed at a predetermined position. Furthermore, after the mixing container 161 has been pulled out, the transfer means 800 can insert the next mixing container 161 to be mixed at a predetermined fixed position. In other words, the operation of the transfer means 800 to insert the mixing container 161 into the first rotating member 402 or to pull out the mixing container 161 from the first rotating member 402 can always be performed at a predetermined position. This has the advantage of making it easier to control the transfer means 800. Specifically, the transfer means 800 can grasp the mixing container 161 into which the cosmetic has been supplied by the cosmetic supply means 220 and insert it into the mixing container insertion port 406. This process may involve sensing the position of the mixing container insertion port 406 and moving the mixing container 161 to match the sensed position of the mixing container insertion port 406, and control processes such as this can be omitted.
[0378] On the other hand, the predetermined position where the mixing container insertion port 406 stops after the rotation of the first rotating member 402 and the second rotating member 404 may be the position closest to the anchoring section 300. Specifically, the predetermined position where the mixing container insertion port 406 stops may be a direction away from the center (M) of the mixing section 400 in the y-axis direction with respect to Figure 3. As a result, when the mixing process in the mixing section 400 is completed and the articulated robot arm 810 of the transfer means 800 moves the mixing container 161 to the anchoring section 300, which is the position for the subsequent process, the travel distance is shortened, which can reduce the driving radius of the articulated robot arm 810. Therefore, it is possible to drive the articulated robot arm 810 efficiently, which has the advantage of shortening the time required for the process.
[0379] Figure 24 is a perspective view showing a cosmetic manufacturing apparatus according to another embodiment of the present invention, and Figure 25 is a perspective view showing the parts supply section of the cosmetic manufacturing apparatus in Figure 24.
[0380] In the following, a cosmetic manufacturing apparatus 10' according to another embodiment of the present invention will be described with reference to Figures 24 and 25. However, the cosmetic manufacturing apparatus 10' shown in Figures 24 and 25 differs from the cosmetic manufacturing apparatus shown in Figure 2 mainly in that the position of the parts supply unit 160' is changed and a serving unit 700 is further provided. Therefore, the explanation will focus on the differences, and for identical parts, the description and reference numerals of the embodiments described in Figures 1 to 13 will be used.
[0381] Another embodiment of the present invention, the cosmetic manufacturing apparatus 10', may include a cosmetic storage section 140', a cosmetic supply section 200', a fixing section 300', a mixing section 400', an assembly section 500', a moisture absorption section 600', a transfer means 800', and a control section, similar to the cosmetic manufacturing apparatus described in Figures 1 to 13. In this embodiment, the fixing section 300', the mixing section 400', and the serving section 700 may be understood as being included in the component storage unit.
[0382] To describe the arrangement of the detailed components of the cosmetic manufacturing apparatus 10' according to another embodiment of the present invention, the cosmetic supply unit 200' is located on one side of the main body 100', the parts supply unit 160' is located on the other side of the main body 100' facing the cosmetic supply unit 200', and the parts mounting unit (attachment unit 300', assembly unit 500', and serving unit 700) may be located between the cosmetic supply unit 200' and the parts supply unit 160'.
[0383] The parts supply unit 160' may include a tray 169' on which a mixing container 161', a dispensing member 162', a base container 164', a cover container 166', and an impregnation member 168' are arranged. The tray 169' of the parts supply unit 160', which comes into contact with the mixing container 161' and the components, is positioned to be tilted at a predetermined angle relative to the base 110' that forms the floor of the cosmetic manufacturing space, and the predetermined angle may be 30 to 80 degrees, preferably 45 to 60 degrees.
[0384] Thus, by designing the tray 169' of the parts supply unit 160' to have a predetermined angle, the transfer means 800' can move the parts stored in the parts supply unit 160' along an optimized path when gripping them.
[0385] Furthermore, the inclined surface of the parts supply section 160' is formed in a shape that moves further away from the transfer means 800' as it approaches the upper end, so that the parts can be stably supported on the inclined surface.
[0386] Each component may be arranged parallel to the base 110' or in a direction away from the base 110', and one or more such arrangements may be provided depending on the embodiment. In this embodiment, each component is shown as being arranged in a single row parallel to the base 110', but the concept of the present invention is not limited thereto. Here, the mixing container 161', which can be used to manufacture both the first and second containers, may be located closest to the transfer means 800'. As an example, the mixing container 161' may be located in the lowest row of the component supply unit 160'.
[0387] Furthermore, the components constituting one container may be arranged adjacent to each other. For example, the mixing container 161' and the discharge member 162' constituting the first container may be arranged sequentially from below the component supply unit 160', and then the base container 164', the impregnation member 168', and the cover container 166' constituting the second container may be arranged sequentially.
[0388] Furthermore, the component storage unit of this embodiment may include a serving section 700 that can discharge a mixing container 161' in which the cosmetic is stored, or a completed cosmetic container with assembled components, to the outside of the main body 100'.
[0389] In this case, the front of the serving section 700 may be provided with a door (not shown) through which the cosmetic container can be discharged to the outside of the main body 100'.
[0390] The serving unit 700 can either discharge the mixing container 161' containing the cosmetic product to the outside of the main body 100' (sample discharge), or discharge the completed cosmetic container, which has had its parts joined together on the assembly unit 500', to the outside of the main body 100' to provide it to the user. The serving unit 700 may be positioned between the anchoring unit 300' and the assembly unit 500' to minimize the distance the parts travel and the operating distance of the robot arm provided as the moving means 800'.
[0391] Furthermore, at least a portion of the serving section 700 may be provided to reciprocate between the inside and outside of the main body 100'. Specifically, when the transfer means 800' grasps a completed cosmetic container (first or second container) and secures it to the serving section 700, the serving section 700 is discharged to the outside of the main body 100', thereby providing the cosmetic container to the user. Here, the transfer means 800' can push or pull the serving section 700, and in some embodiments, a separate drive device for driving the serving section 700 may be provided.
[0392] Furthermore, as mentioned above, since the cosmetic supply unit 200' is located on one side of the main body, the parts supply unit 160' is located on the other side of the main body, and the parts holder unit is located between the cosmetic supply unit 200' and the parts supply unit 160', the movement path of the transport means 800' may differ accordingly. It can be understood that the movement of the transport means 800' is controlled by the control unit.
[0393] Specifically, the first transfer unit 801' moves the mixing container 161' provided to the parts supply unit 160' to one side (for example, the anchoring section 300' formed on the table 114'), and the second transfer unit 802' can move the mixing container 161' that has been moved to one side (for example, the anchoring section 300') to the cosmetic supply unit 200' side.
[0394] Subsequently, the second transfer unit 802' may move the mixing container 161' in the cosmetic supply section 200' to the mixing section 400'. Then, the mixing section 400' rotates to mix the cosmetic contained in the mixing container 161', and the second transfer unit 802' may move the mixing container 161' in the mixing section 400' to the fixing section 300'. Then, the second transfer unit 802' may take out the components constituting the first or second container from the parts supply section 160', and the first or second container may be assembled by the operation of the first transfer unit 801' and the second transfer unit 802'. The assembly of the first and second containers is the same as in the embodiment described above, so a detailed explanation therein is omitted.
[0395] After the first or second container is assembled, the first transfer unit 801' or the second transfer unit 802' can secure the assembled first or second container to the serving unit 700 and then provide it to the user. The following is a description of the aforementioned embodiment.
[0396] Item 1 provides a cosmetic manufacturing apparatus comprising: a main body 100 that provides a cosmetic manufacturing space 102; a parts supply unit 160 that can provide at least one of a mixing container 161 capable of containing cosmetics and components constituting a cosmetic container; a cosmetic supply unit 200 that can discharge one or more cosmetics stored in a cosmetic storage unit 140 into the mixing container 161; a transfer means 800 that can move at least one of the mixing container 161 and components constituting a cosmetic container that have been provided to the parts supply unit 160; and a control unit 900 that can control at least one of the cosmetic supply unit 200 and the transfer means 800 so that one or more cosmetics stored in the cosmetic storage unit 140 are mixed and contained in at least one of the mixing container 161 and components constituting a cosmetic container.
[0397] Item 2 provides the cosmetic manufacturing apparatus of Item 1, further comprising a mixing unit 400 that is rotatably provided to mix the cosmetic product contained in the mixing container 161.
[0398] Item 3 provides a cosmetic manufacturing apparatus of Item 1 and Item 2, comprising a plurality of transfer units 801, 802, the transfer means 800 which move the components provided to the component supply unit 160 to a component stationary unit 50, and assemble the components moved to the component stationary unit 50 into a first container provided in a pump-type container or into a second container provided in a compact-type container.
[0399] Item 4 provides a cosmetic manufacturing apparatus according to items 1 to 3, wherein the transfer means 800 includes a first transfer unit 801 and a second transfer unit 802 that are movable independently of each other, and when assembling a first container to form a pump-type container, one of the first transfer unit 801 and the second transfer unit 802 is able to grip the cap 1623 of the discharge member 162, and the other is able to move up and down in contact with the straw 1622 of the discharge member 162 so that the straw 1622 of the discharge member 162 is aligned with the inlet 1611 of the mixing container 161 located in the component holding unit 50, and when assembling a second container to form a compact-type container, one of the first transfer unit 801 and the second transfer unit 802 is able to secure the base container 164 constituting the second container to the component holding unit 50, and the other is able to tilt the mixing container 161 so that the cosmetic contained in the mixing container 161 is moved to the base container 164.
[0400] Item 5 provides a cosmetic manufacturing apparatus according to items 1 to 4, further comprising a mixing container 161 in the parts supply unit 160 and a parts mounting unit 50 on which the components can be moved and secured, wherein the parts mounting unit 50 includes a securing section 300 that provides space for a first container provided in a pump-type container to be assembled and an assembly section 500 that provides space for a second container provided in a compact-type container to be assembled.
[0401] Item 6 provides a cosmetic manufacturing apparatus according to items 1 to 5, wherein the components in the parts supply unit 160 include a dispensing member 162 provided as part of a first container, the transfer means 800 can move the mixing container 161 in the parts supply unit 160 to the cosmetic supply unit 200 so that a mixing container 161 provided from the parts supply unit 160 in an empty container can contain the cosmetic, move the mixing container 161 in the cosmetic supply unit 200 to the mixing unit 400 so that the cosmetic contained in the mixing container 161 is mixed, move the mixing container 161 in the mixing unit 400 to the parts storage unit 50 so that the mixing container 161 can be provided as part of a first container, and move the dispensing member 162 in the parts supply unit 160 to the top of the mixing container 161 in the parts storage unit 50 to connect the dispensing member 162 and the mixing container 161.
[0402] Item 7 provides a cosmetic manufacturing apparatus according to items 1 to 6, wherein the components in the parts supply unit 160 include an impregnation member 168 provided as part of a second container, a base container 164 capable of housing the impregnation member 168, and a cover container 166 covering the impregnation member 168, and the transfer means 800 moves the mixing container 161 in the parts supply unit 160 to the cosmetic supply unit 200 so that the mixing container 161 provided in an empty container from the parts supply unit 160 can house the cosmetic, moves the mixing container 161 in the cosmetic supply unit 200 to the mixing unit 400 so that the cosmetic housed in the mixing container 161 can be mixed, moves the base container 164 in the parts supply unit 160 to the parts storage unit 50, and can tilt the mixing container 161 storing the cosmetic over the base container 164 so that the base container 164 in the parts storage unit 50 can house the cosmetic.
[0403] Item 8 provides a cosmetic manufacturing apparatus according to items 1 to 7, wherein the cosmetic supply unit 200 includes a cosmetic supply means 220 capable of dispensing a fixed amount of cosmetic stored in a cartridge 142, a plurality of discharge ports 232 from which the cosmetic transferred from the cosmetic supply means 220 is discharged, and a mixing container transfer unit 250 that is movable below the discharge ports 232 and fixes the mixing container 161 so that the cosmetic discharged from the plurality of discharge ports 232 can be contained inside the mixing container 161.
[0404] Item 9 provides a cosmetic manufacturing apparatus according to items 1 to 8, wherein the mixing section 400 includes a rotatable first rotating member 402 into which the mixing container 161 is inserted, and a second rotating member 404 capable of rotating the first rotating member 402, and the first rotating member 402 is positioned to be separated by a predetermined distance from the center (M) of the second rotating member 404.
[0405] Item 10 provides a cosmetic manufacturing apparatus according to items 1 to 9, wherein the control unit 900 can control the first rotating member 402 into which the mixing container 161 is inserted so that it can stop in a predetermined position.
[0406] Item 11 provides a cosmetic manufacturing apparatus according to items 1 to 10, wherein the component comprises a base container 164 and an impregnation member 168 provided as part of a second container, and the cosmetic manufacturing apparatus further comprises a moisture-absorbing section 600 capable of impregnating the impregnation member 168 with a cosmetic contained in the base container 164.
[0407] Item 12 provides a cosmetic manufacturing apparatus according to items 1 to 11, wherein one side of the transfer means 800 is provided with a table 114, the moisture absorption section 600 is provided below the table 114, and a component mounting unit 50 on which the mixing container 161 and at least one of the components can be attached is positioned above the table 114.
[0408] Item 13 provides a cosmetic manufacturing apparatus according to items 1 to 12, wherein the component supply unit 160 includes a tray 165 on which the components can be placed, a first container component support unit 163 capable of supporting a mixing container 161 and a dispensing member 162 provided as part of a first container, and a second container component support unit 169 capable of supporting a base container 164, an impregnation member 168 and a cover container 166 provided as part of a second container.
[0409] Item 14 may provide a control method for a cosmetic manufacturing apparatus according to items 1 to 13, which includes the steps of: calculating data for the manufactured cosmetic, including the composition ratio, using a control unit 900; controlling the cosmetic supply unit 200 and the transfer means 800 using the control unit 900 to discharge the cosmetic stored in the cosmetic storage unit 140 into the mixing container 161 according to the composition ratio; controlling the mixing unit 400 and the transfer means 800 using the control unit 900 to mix the cosmetic discharged into the mixing container 161; and controlling the transfer means 800 using the control unit 900 to store the cosmetic contained in the mixing container 161 in at least one of a first container provided in a pump-type container and a second container provided in a compact-type container, and providing it to the user.
[0410] Item 15 may provide a control method for a cosmetic manufacturing apparatus according to items 1 to 14, further comprising the step of, after the step of mixing the cosmetic material dispensed into the mixing container 161, if the control unit 900 determines that the cosmetic material contained in the mixing container 161 is a sample, providing the mixing container 161 to the user and receiving input from the user regarding whether or not the composition ratio has been changed.
[0411] Item 16 provides a control method for a cosmetic manufacturing apparatus according to items 1 to 15, which includes the steps of: controlling the cosmetic supply unit 200 and the transfer means 800 by the control unit 900 to discharge the cosmetic stored in the cosmetic storage unit 140 into the mixing container 161 according to the composition ratio (S20); controlling the transfer means 800 by the control unit 900 to move the mixing container 161 in the component supply unit 160 to the cosmetic supply unit 200 (S210); and controlling the cosmetic supply unit 200 and the transfer means 800 by the control unit 900 to supply the cosmetic to the mixing container 161 according to the composition ratio (S220).
[0412] Item 17 provides a control method for a cosmetic manufacturing apparatus according to items 1 to 16, wherein the steps of controlling the mixing unit 400 and the transfer means 800 by the control unit 900 to mix the cosmetic discharged into the mixing container 161 include the steps of controlling the transfer means 800 by the control unit 900 to move the mixing container 161 from the cosmetic supply unit 200 to the mixing unit 400, and controlling the mixing unit 400 by the control unit 900 to rotate and revolve the mixing container 161 to mix the cosmetic stored in the mixing container 161.
[0413] Item 18 is the step of controlling the transfer means 800 by the control unit 900 to store the cosmetic contained in the mixing container 161 in at least one of a first container provided in a pump-type container and a second container provided in a compact-type container and provide it to the user, the step of controlling the transfer means 800 by the control unit 900 to move the mixing container 161 containing the mixed cosmetic to the parts storage unit 50, and if the type of cosmetic input to the control unit 900 is the first container, the control unit 900 controls the transfer means 800 to move the dispensing member 162 in the parts supply unit 160 to the upper part of the parts storage unit 50, and the dispensing member 162 and front A control method for a cosmetic manufacturing apparatus according to items 1 to 17 may be provided, which includes the steps of: assembling the mixing container 161 with the component container to form a first container; if the type of cosmetic input to the control unit 900 is the second container, the control unit 900 controls the transfer means 800 to move the base container 164, the impregnation member 168, and the cover container 166 located in the component supply unit 160 to the component station 50, and assembling the base container 164, the impregnation member 168, and the cover container 166 to form a second container; and the control unit 900 controls the transfer means 800 to move the assembled first container or the second container to the component supply unit 160.
[0414] Item 19 provides a cosmetic manufacturing system that includes a terminal 20 into which information about the user context is input and which can measure the user's skin condition; an operating server 40 that can collect and process data from the terminal 20 and transmit it to a cosmetic manufacturing apparatus 10; and a cosmetic manufacturing apparatus 10 which can either receive a composition ratio from at least one of the terminal 20 and the operating server 40, or process the information transmitted from at least one of the terminal 20 and the operating server 40 to calculate a composition ratio, and manufacture cosmetics according to the calculated composition ratio.
[0415] Item 20 provides a cosmetic manufacturing apparatus that includes a moisture-absorbing section for impregnating an impregnating member with a cosmetic, wherein the moisture-absorbing section includes a base container transfer section that receives a base container containing the impregnating member and is movably provided, and a moisture-absorbing tool that can pressurize the impregnating member fixed to the base container transfer section.
[0416] Item 21 provides a cosmetic manufacturing apparatus according to item 20, wherein the moisture-absorbing device can pressurize the impregnation member at a predetermined pressure, and the base container transfer unit can move the base container to a position where impregnation by the moisture-absorbing device takes place.
[0417] Item 22 may provide a cosmetic manufacturing apparatus according to items 20 and 21, wherein the moisture-absorbing device includes a position holder provided to be vertically movable and to maintain the base container in a fixed position, and a pressurizing section provided to be vertically movable within the position holder and to pressurize the impregnating member.
[0418] Item 23 may provide a cosmetic manufacturing apparatus according to items 20 to 22, wherein the moisture-absorbing device further includes a weight portion provided to maintain the position holder in a raised position so that the base container enters when no external force is applied to the position holder.
[0419] Item 24 may provide a cosmetic manufacturing apparatus according to items 20 to 23, wherein the fixed-position holder includes a support base, a holder portion installed on the support base and maintaining the base container in a fixed position so that it does not move when the base container transfer unit, on which the base container is fixed, is located below it, a holder lever connected to the support base and protruding to one side for moving the support base, and a guide portion formed extending in the height direction through the support base and guiding the support base to move up and down in the height direction.
[0420] Item 25 may provide a cosmetic manufacturing apparatus according to items 20 to 24, the pressurizing section comprising: a pressurizing cylinder that slides vertically within the holder section and pressurizes the impregnating member inside the base container which is fixed in a fixed position by the holder section; a pressurizing handle which part is inserted into the pressurizing cylinder through the central part of the pressurizing cylinder and the other part is exposed to the outside of the pressurizing cylinder and protrudes so as to be pressed; and a pressurizing spring elastically installed between the pressurizing cylinder and the pressurizing handle, which transmits the external force to the pressurizing cylinder when the pressurizing handle is pressed.
[0421] Item 27 may provide a cosmetic manufacturing apparatus according to items 20 to 26, wherein the weight portion is connected to the fixed-position holder via a connecting line such that a force opposite to gravity acts on the fixed-position holder.
[0422] Item 28 provides a cosmetic manufacturing apparatus according to items 20 to 27, wherein the weight portion is provided with a weight greater than the weight of the fixed-position holder such that when an external force is removed from the fixed-position holder, the fixed-position holder rises due to the weight of the weight portion.
[0423] Item 29 provides a cosmetic manufacturing apparatus according to items 20 to 28, wherein the base container transfer unit includes a base container guide rail extending from the outside of the moisture absorption tool to a position below the moisture absorption tool; a base container transfer block provided on the base container guide rail and moving along the base container guide rail, with the base container secured at one end; a base container hook lever provided for moving the base container transfer block; and a base container stopper extending parallel to and along the base container guide rail, with a hook groove formed therein, on which one end of the base container hook lever catches to restrict the movement of the base container transfer block.
[0424] Item 30 provides a method for controlling a cosmetic manufacturing apparatus that impregnates an impregnation member with a cosmetic using a moisture-absorbing section, the method comprising: a step of using a transfer means to secure a base container containing an impregnation member to a base container transfer section; a step of using the transfer means to move the base container secured to the base container transfer section to the lower part of the moisture-absorbing tool; a step of using the transfer means to fix the base container secured to the base container transfer section with a fixed-position holder of the moisture-absorbing tool; and a step of using the transfer means to pressurize the impregnation member contained inside the base container at least once by the pressurizing section of the moisture-absorbing tool.
[0425] Item 31 may provide a control method for the cosmetic manufacturing apparatus of item 30, which includes the steps of: placing a cosmetic into an empty mixing container by a transfer means before the step of securing the base container containing the impregnating member to the base container transfer unit; transferring the cosmetic from the mixing container containing the cosmetic into the base container by the transfer means; and placing the impregnating member into the base container where the cosmetic is stored by the transfer means.
[0426] Item 32 may provide a control method for the cosmetic manufacturing apparatus of items 30 to 31, which includes the steps of: pressurizing the impregnated member housed inside the base container by the transfer means at least once by the pressurizing part of the moisture absorption device; moving the base container containing the impregnated member impregnated with the cosmetic by the transfer means to an assembly section and attaching a cover container to the base container; and moving the assembled finished product container from the assembly section to a serving section by the transfer means.
[0427] Item 33 provides a cosmetic manufacturing apparatus comprising: a main body providing a cosmetic manufacturing space; a component supply unit capable of providing at least one of a mixing container and components constituting a cosmetic container capable of containing a cosmetic; a cosmetic supply unit provided for dispensing at least one cosmetic into the mixing container; a moisture absorption unit provided for receiving a base container containing an impregnating member and a cosmetic, and for impregnating the impregnating member with the cosmetic; a transfer means movably provided in the component supply unit and the cosmetic supply unit, capable of gripping and moving at least one of the components constituting the mixing container and the cosmetic container; and a control unit that controls the cosmetic supply unit and at least one of the transfer means in order to receive information on different types of cosmetics desired by a user via communication from a user interface unit or terminal, and to manufacture cosmetics corresponding to the cosmetic information on the spot.
[0428] Item 34 includes the steps of: calculating data relating to the type of cosmetic selected by the user by the control unit; controlling the cosmetic supply unit and the transfer means by the control unit to dispense at least one cosmetic into a mixing container; controlling the mixing unit and the transfer means by the control unit to mix the cosmetic contained in the mixing container; controlling the transfer means by the control unit to move the mixing container containing the mixed cosmetic to the parts storage unit; and, if the type of cosmetic input to the control unit is the first container, controlling the transfer means to move the dispensing member in the parts supply unit forward A method for manufacturing cosmetics may be provided, which includes the steps of: moving the discharge member and the mixing container to the upper part of the component stationary unit and assembling them to form a first container; if the type of cosmetic input to the control unit is a second container, the control unit controls the transfer means to move the base container, impregnation member and cover container in the component supply unit to the component stationary unit and assembling the base container, impregnation member and cover container to form a second container; and the control unit controls the transfer means to move the assembled first container or second container to the component supply unit and provide it to the user.
[0429] Item 35 provides a cosmetic manufacturing apparatus comprising a container body capable of storing cosmetics, and a transport means capable of supporting and moving a lid for the container body, wherein the transport means is movable so as to secure the container body capable of storing cosmetics to a component mounting unit, and the container body secured to the component mounting unit can be sealed with the lid for cosmetics.
[0430] Item 36 provides a cosmetic manufacturing apparatus of Item 35, wherein the transfer means includes a first transfer unit extending from the robot arm control unit to the other and a second transfer unit extending from the robot arm control unit to one side, and the first and second transfer units perform different roles from each other.
[0431] Item 37 may provide a cosmetic manufacturing apparatus of items 35 and 36, wherein the first transfer unit includes a first gripper, the second transfer unit includes a second gripper, and the first and second grippers selectively grip one of the parts.
[0432] Item 38 may provide a cosmetic manufacturing apparatus according to items 35 to 37, wherein the first gripper and the second gripper correspond to the shape of the container body of the first container and include a first gripping area for selectively gripping the container body of the first container and a second gripping area formed inside the first gripping area.
[0433] Item 39 may provide a cosmetic manufacturing apparatus according to items 35 to 38, wherein the first gripper includes a third gripping area for selectively gripping a part of a second container having a different shape from the first container.
[0434] Item 40 may provide a cosmetic manufacturing apparatus of items 35 to 39, wherein the second gripper includes a fourth gripping area that guides the straw of the dispensing member of the first container.
[0435] Item 41 may provide a cosmetic manufacturing apparatus according to items 35 to 40, wherein the fourth gripping area is formed to have a smaller diameter than the opening of the first container and a larger diameter than the straw, and after the position of the straw is aligned by the second gripper, the straw is inserted into the container body of the first container by the first gripper.
[0436] Item 42 may provide a cosmetic manufacturing apparatus according to items 35 to 41, wherein a friction pad is provided protruding from one side of the first gripping area, and the friction pad is made of an elastic material.
[0437] Item 43 may provide a cosmetic manufacturing apparatus of items 35 to 42, wherein the second gripping area selectively grips a spherical lever.
[0438] Item 44 may provide a cosmetic manufacturing apparatus according to items 35 to 43, wherein the first transfer unit and the second transfer unit consist of articulated robot arms.
[0439] Item 45 provides a method for controlling a cosmetic manufacturing apparatus that selectively supports and transports components, wherein the method includes the steps of: the transport means securing a container body containing a cosmetic product to a component support unit; the transport means moving a body lid that can be coupled to the container body to the component support unit; and the transport means coupling the container body and the body lid, which are secured to the component support unit, to complete the cosmetic product.
[0440] Item 46 provides a control method for the cosmetic manufacturing apparatus of Item 45, wherein the transfer means includes a first transfer unit and a second transfer unit that are movable independently of each other, the body lid includes a dispensing member on which a straw is provided, and the steps of the transfer means completing the cosmetic by combining the container body and the body lid, which are fixed to a component holding unit, include the steps of: the first transfer unit grasping the dispensing member and positioning it above the container body; the second transfer unit aligning one end of the straw above the opening of the container body; the first transfer unit lowering the dispensing member and inserting at least a portion of the straw into the inside of the container body; the second transfer unit moving to the side where the container body is not located so that the second transfer unit and the first transfer unit do not interfere with each other; and the first transfer unit lowering the dispensing member and sealing the container body.
[0441] Item 47 may provide a control method for the cosmetic manufacturing apparatus of items 45 and 46, further comprising the step of the transfer means moving the container body supplied to the parts supply unit toward the cosmetic supply unit and storing the cosmetic in the container body, before the transfer means secures the container body in which the cosmetic is stored toward the parts storage unit.
[0442] Item 48 may provide a control method for the cosmetic manufacturing apparatus of items 45 to 47, further comprising the step of the transfer means moving the completed cosmetic into a groove after the transfer means has completed the cosmetic by joining the container body and the body lid which are fixed to the component mounting unit.
[0443] Item 49 provides a method for controlling a cosmetic manufacturing apparatus that selectively supports and transports parts, the method comprising: a step of the transport means securing a container body in which a cosmetic is stored to a parts storage unit; a step of the transport means moving a base container having a different shape from the container body to the parts storage unit side; a step of the transport means discharging the cosmetic stored in the container body into the base container; a step of the transport means housing an impregnating member in the base container in which the cosmetic is stored; and a step of the transport means connecting the base container containing the impregnating member with a cover container.
[0444] Item 50 is a cosmetic manufacturing apparatus capable of providing samples, comprising a transfer means capable of transferring samples and finished products, and a control unit that controls the transfer means and receives a sample receiving mode via a manufacturing mode receiving unit, wherein the control unit controls the amount of cosmetic discharged from a cosmetic supply unit so that the sample is provided with the same cosmetic composition ratio as the finished product, but in a smaller quantity than the finished product.
[0445] Item 51 is the cosmetic manufacturing apparatus of item 50, wherein the control unit further includes a composition ratio correction unit that receives modified composition ratio data.
[0446] Item 52 is a cosmetic manufacturing apparatus according to items 50 and 51, wherein the manufacturing mode receiving unit receives multiple modes, and the multiple modes include a finished product request mode that requests a finished product with the same composition ratio as a previously transmitted first sample, a sample modification request mode that requests a second sample with a different composition ratio than the first sample, and a discard request mode for the first sample.
[0447] Item 53 is a cosmetic manufacturing apparatus of items 50 to 52, in which, upon receiving a finished product request mode, the control unit controls the cosmetic supply unit and transfer means to provide a finished product with the same composition ratio as the first sample.
[0448] Item 54 is a cosmetic manufacturing apparatus of items 50 to 53, in which, when a sample modification request mode is received, the control unit controls the cosmetic supply unit and the transfer means to provide a second sample with a different composition ratio from the first sample.
[0449] Item 55 is a cosmetic manufacturing apparatus according to items 50 to 54, which includes a parts supply unit that is movable in one direction and can discharge samples and finished products to the outside.
[0450] Item 56 is a control method for a cosmetic manufacturing apparatus capable of providing samples, comprising the steps of: receiving a sample receiving mode by a manufacturing mode receiving unit; manufacturing a sample in a smaller quantity than the finished product using a composition ratio determined by a composition ratio determination unit; and providing the sample by a transfer means.
[0451] Item 57 is a control method for the cosmetic manufacturing apparatus of item 56, wherein the step of providing a sample by a transfer means includes the step of controlling the transfer means by a control unit to secure the sample to a parts supply unit, and the step of controlling the transfer means by a control unit to move the parts supply unit and discharge it to the outside of the main body.
[0452] Item 58 is a control method for the cosmetic manufacturing apparatus of items 56 and 57, which includes a step of receiving an additional request by a manufacturing mode receiving unit after a step of providing a sample by a transfer means, and a step of recovering the first sample already provided from the sample.
[0453] Item 59 is a control method for a cosmetic manufacturing apparatus according to items 56 to 58, wherein the step of recovering the first sample includes the step of the control unit sensing the first sample that has settled in the parts supply unit, and the step of the control unit controlling the transfer means to recover the first sample that has settled in the parts supply unit into the recovery unit.
[0454] Item 60 is a control method for a cosmetic manufacturing apparatus according to items 56 to 59, which, when an additional request is in the finished product receiving mode, includes the steps of: collecting the first sample, adding a cosmetic in the same composition ratio as the first sample to the collected first sample to manufacture a finished product, and providing the finished product by a transfer means.
[0455] Item 61 is a control method for a cosmetic manufacturing apparatus according to items 56 to 60, which, when an additional request is in sample modification request mode, includes the steps of receiving composition ratio data different from that of the first sample after the step of collecting the first sample, and changing the composition ratio in the composition ratio modification unit using the composition ratio data.
[0456] Item 62 is a control method for a cosmetic manufacturing apparatus according to items 56 to 61, which includes the steps of: changing the composition ratio in a composition ratio correction unit using composition ratio data; manufacturing a second sample with the changed composition ratio; and providing the second sample by a transfer means.
[0457] Item 63 is a control method for a cosmetic manufacturing apparatus according to items 56 to 62, in which the step of producing a second sample with a modified composition ratio is to produce a second sample by adding cosmetic ingredients to the recovered first sample in a different composition ratio than that of the first sample.
[0458] Item 64 is a control method for a cosmetic manufacturing apparatus according to items 56 to 63, which includes the step of changing the composition ratio in the composition ratio correction unit using composition ratio data, and if it is impossible to manufacture a second sample with the changed composition ratio, the step of outputting a notification that the second sample cannot be manufactured, and the step of discarding the recovered first sample.
[0459] Item 65 is a control method for cosmetic manufacturing equipment according to items 56 to 64, which includes a step of discarding the collected first sample after the step of collecting the first sample, when the additional request is in the first sample disposal request mode.
[0460] Item 66 is a cosmetic manufacturing apparatus that includes a second rotating member that can rotate with respect to a second central axis, a first rotating member provided on one side of the second rotating member and including a mixing container insertion port into which a mixing container can be inserted, and a control unit that controls the rotation of the second rotating member so that when the second rotating member has rotated and stopped, the mixing container insertion port is positioned in a predetermined position.
[0461] Item 67 is a cosmetic manufacturing apparatus of item 66, wherein the first rotating member can rotate about a first central axis different from the second central axis.
[0462] Item 68 is a cosmetic manufacturing apparatus according to items 66 and 67, in which the mixing container inserted into the mixing container inlet rotates on its own axis due to the rotation of the first rotating member, and the mixing container inserted into the mixing container inlet revolves around an orbit due to the rotation of the second rotating member.
[0463] Item 69 is a cosmetic manufacturing apparatus according to items 66 to 68, in which the second central axis is perpendicular to the ground and the first central axis is positioned in a direction intersecting the second central axis.
[0464] Item 70 is a cosmetic manufacturing apparatus according to items 66 to 69, wherein the first rotating member is circumferentially separated from the second central axis on the second rotating member.
[0465] Item 71 is a cosmetic manufacturing apparatus according to items 66 to 70, in which the mixing container insertion port is provided in a shape corresponding to the mixing container.
[0466] Item 72 is a cosmetic manufacturing apparatus of items 66 to 71, in which the mixing container is provided with a structure that has corners in its longitudinal cross-section.
[0467] Item 73 is a control method for a cosmetic manufacturing apparatus, which includes the steps of: receiving a mixing container containing multiple cosmetic materials via a transfer means and inserting it into the mixing container insertion port of the mixing unit; rotating a second rotating member with respect to a second central axis; after the rotation of the second rotating member is completed, controlling the mixing container insertion port to stop at a predetermined position using a control unit; and transmitting the mixing container in which the cosmetic material mixing is completed to the position of a subsequent process via a transfer means.
[0468] Item 74 is a control method for the cosmetic manufacturing apparatus of item 73, further comprising the step of rotating a first rotating member with respect to a first central axis different from the second central axis, before the step of controlling the mixing container insertion port to stop at a predetermined position by the control unit.
[0469] Item 75 is a control method for the cosmetic manufacturing apparatus described in items 73 and 74, in which the steps of rotating the second rotating member with respect to the second central axis and rotating the first rotating member with respect to the first central axis are performed simultaneously.
[0470] Item 76 is a control method for the cosmetic manufacturing apparatus of items 73 to 75, further comprising the step of the transfer means changing the direction of the mixing container to a predetermined direction before the step of inserting the mixing container into the mixing container inlet.
[0471] Item 77 is a control method for a cosmetic manufacturing apparatus according to items 73 to 76, further comprising the steps of: having a cosmetic supply unit fill an empty mixing container with multiple cosmetic materials before inserting the mixing container into the mixing container inlet; a transfer means gripping the mixing container after the cosmetic materials have been filled; and the transfer means transferring the mixing container to the mixing unit.
[0472] The cosmetic manufacturing apparatus, control method for the cosmetic manufacturing apparatus, and cosmetic manufacturing system according to the embodiments of the present invention have been described above as specific embodiments. However, these are merely illustrative examples, and the present invention is not limited thereto, but should be interpreted as having the broadest scope based on the fundamental ideas disclosed herein. Those skilled in the art may combine or substitute the disclosed embodiments to implement embodiments not specified, and this also does not depart from the scope of the present invention. Furthermore, those skilled in the art can easily modify or transform the embodiments disclosed herein, and it is clear that such modifications or transformations also fall within the scope of the rights of the present invention. [Explanation of Symbols]
[0473] 1: Cosmetics manufacturing system 10: Cosmetic manufacturing equipment 20: Terminal 40: Operating Server 100: Main unit 140: Cosmetics storage section 160: Parts Supply Department 200: Cosmetics Supply Department 300: Safe Landing Department 500: Assembly department 600: Moisture-absorbing part 800:Transportation means 900: Control Unit
Claims
1. The main unit provides a space for manufacturing cosmetics, A parts supply unit capable of providing at least one of a mixing container capable of containing cosmetics and components constituting a cosmetic container, A cosmetic supply unit capable of dispensing one or more cosmetic products stored in the cosmetic storage unit into the mixing container, A transfer means capable of moving at least one of the components constituting the mixing container and the cosmetic container provided to the parts supply unit, A cosmetic manufacturing apparatus including a control unit capable of controlling at least one of the cosmetic supply unit and the transfer means so that one or more cosmetic products stored in the cosmetic storage unit are mixed and can be contained in at least one of the mixing container and the components constituting the cosmetic container, The aforementioned components include a base container and an impregnation member, which are provided as part of the second container. The aforementioned cosmetic manufacturing apparatus, A cosmetic manufacturing apparatus further comprising a moisture-absorbing part capable of impregnating an impregnation member with a cosmetic product contained in the base container.
2. The aforementioned cosmetic manufacturing apparatus, The cosmetic manufacturing apparatus according to claim 1, further comprising a mixing unit that is rotatably provided to mix the cosmetic product contained in the mixing container.
3. The transfer means is The cosmetic manufacturing apparatus according to claim 1, comprising a plurality of transfer units that move the components provided to the component supply unit to a component storage unit, and assemble the components moved to the component storage unit into a first container provided in a pump-type container or into a second container provided in a compact-type container.
4. The transfer means is It includes a first transport unit and a second transport unit that are movable independently of each other, During the assembly of the first container forming a pump-type container, one of the first and second transfer units grips the cap of the discharge member, while the other is able to move up and down while in contact with the straw of the discharge member so that the straw aligns with the inlet of the mixing container located in the component storage unit. The cosmetic manufacturing apparatus according to claim 1, wherein, when assembling a second container that forms a compact container, one of the first transfer unit and the second transfer unit can secure the base container constituting the second container to a component holding unit, and the other can tilt the mixing container so that the cosmetic contained in the mixing container is moved to the base container.
5. The aforementioned cosmetic manufacturing apparatus, The system further includes a component mounting unit on which a mixing container and the components located in the component supply unit can be moved and secured, The aforementioned component mounting unit is A mounting section that provides a space in which the first container, provided in a pump-type container, can be assembled, The cosmetic manufacturing apparatus according to claim 1, further comprising an assembly section that provides a space in which a second container, provided in a compact container, can be assembled.
6. The component located in the component supply unit includes a dispensing member provided as part of the first container. The transfer means is The mixing container, which is provided in an empty container from the parts supply unit, is moved from the parts supply unit to the cosmetic supply unit so that it can contain the cosmetic. To allow the cosmetic contents contained in the mixing container to be mixed, the mixing container in the cosmetic supply unit is moved to the mixing unit, To provide the aforementioned mixing container as part of the first container, the mixing container in the mixing section is moved to the component storage unit. The cosmetic manufacturing apparatus according to claim 1, wherein the discharge member located in the parts supply unit can be moved to the upper part of the mixing container located in the parts storage unit, and the discharge member and the mixing container can be connected.
7. The components in the parts supply unit include an impregnation member provided as part of the second container, a base container capable of housing the impregnation member, and a cover container capable of covering the impregnation member. The transfer means is The mixing container, which is provided in an empty container from the parts supply unit, is moved from the parts supply unit to the cosmetic supply unit so that it can contain the cosmetic. To allow the cosmetic contents contained in the mixing container to be mixed, the mixing container in the cosmetic supply unit is moved to the mixing unit, The base container located in the parts supply unit is moved to the parts storage unit. The cosmetic manufacturing apparatus according to claim 1, wherein the mixing container storing the cosmetic can be tilted on top of the base container so that the base container in the component mounting unit contains the cosmetic.
8. The aforementioned cosmetic supply unit is A cosmetic supply means capable of dispensing a fixed amount of cosmetic stored in a cartridge, Multiple outlets from which the cosmetic product transferred from the cosmetic product supply means is discharged, The cosmetic manufacturing apparatus according to claim 1, further comprising a mixing container transfer unit that is movable below the dispensing ports and fixes the mixing container so that the cosmetic material dispensed from a plurality of dispensing ports can be contained inside the mixing container.
9. The mixing section is The mixing container is inserted into a rotatable first rotating member, The first rotating member includes a second rotating member capable of rotating the first rotating member, The cosmetic manufacturing apparatus according to claim 2, wherein the first rotating member is arranged to be spaced at a predetermined distance from the center of the second rotating member.
10. The control unit, The cosmetic manufacturing apparatus according to claim 9, wherein the first rotating member into which the mixing container is inserted can be controlled to stop at a predetermined position.
11. One of the transport means is provided with a table. The moisture-absorbing part is provided at the bottom of the table. The cosmetic manufacturing apparatus according to claim 1, wherein a component mounting unit to which at least one of the mixing container and the component can be attached is arranged on top of the table.
12. The aforementioned parts supply unit is A tray on which the aforementioned components can be placed, A first container component support section capable of supporting a mixing container and a dispensing member provided as part of the first container, The cosmetic manufacturing apparatus according to claim 1, comprising a base container provided as part of a second container, an impregnation member and a second container component support part capable of supporting a cover container.