Beauty component atomizing device and beauty equipment
By designing load-bearing and atomizing components in the beauty equipment, and heating the beauty ingredients to above the melting point or sublimation point, the problem of unstable supply of beauty ingredients in the prior art is solved, and stable atomization and appropriate supply of solid or semi-solid beauty ingredients is achieved.
Patent Information
- Application Number
- CN202380083357.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2022-12-06
- Filing Date
- 2023-11-30
- Publication Date
- 2025-07-11
AI Technical Summary
In existing beauty equipment, beauty ingredients are difficult to supply stably and properly, especially those solid or semi-solid beauty ingredients that are insoluble in liquid droplets cannot effectively atomize and diffuse.
A beauty ingredient atomization device is designed, including a bearing part and an atomization part. By heating the beauty ingredient to its melting point or sublimation point, it atomizes and diffuses into the air. Solid or semi-solid beauty ingredient is used in the device to avoid drops of liquid drops, and the atomization amount and range are adjusted by the control device.
The stable atomization and appropriate supply of solid or semi-solid beauty ingredients is achieved, and oxidation and dripping are avoided, ensuring the long-term preservation and effective diffusion of beauty ingredients.
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Figure CN120302911A_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to a beauty ingredient atomizing device and a beauty device. Background Art
[0002] Conventionally, a beauty device for supplying beauty ingredients to hair along with an air flow has been proposed. A hair dryer that diffuses an air flow containing beauty ingredients is disclosed in Patent Document 1. The hair dryer disclosed in Patent Document 1 includes a holding member for holding beauty ingredients, and the hair dryer dissolves the beauty ingredients into droplets and blows them out from a blowout port to supply the beauty ingredients to the hair and scalp of a user using the hair dryer.
[0003] Prior Art Documents
[0004] Patent Documents
[0005] Patent Document 1: Japanese Unexamined Patent Application Publication No. 2019-111152 Summary of the Invention
[0006] Problems to be Solved by the Invention
[0007] In the hair dryer disclosed in Patent Document 1, beauty ingredients are released into an air flow using, as a medium, mist generated by atomizing droplets by means of an atomizing device. Therefore, the hair dryer cannot release beauty ingredients that are insoluble in the atomized droplets. In addition, since the droplets for releasing beauty ingredients are liquid, it is difficult to store them and stably supply them to the atomizing device.
[0008] The present disclosure has been made in view of the problems of such prior art. Moreover, an object of the present disclosure is to provide a beauty ingredient atomizing device that is provided in a beauty device and can stably and appropriately supply beauty ingredients.
[0009] Means for Solving the Problems
[0010] The beauty ingredient atomizing device according to an aspect of the present disclosure is provided in a mist ejection device or a beauty device that ejects mist, and the beauty ingredient atomizing device is configured to atomize and diffuse beauty ingredients into the air, and the beauty ingredient atomizing device includes: beauty ingredients that are solid or semi-solid at normal temperature; a carrier portion that is configured to carry the beauty ingredients; and an atomizing portion that heats the beauty ingredients to a temperature equal to or higher than the melting point or sublimation point of the beauty ingredients by approaching the beauty ingredients and / or the carrier portion to atomize the beauty ingredients.
[0011] The beauty ingredient atomizing device according to other aspects of the present disclosure is provided in a mist ejecting device or a beauty device that ejects mist, and the beauty ingredient atomizing device is configured to atomize a beauty ingredient and diffuse it into the air. The beauty ingredient atomizing device includes: a carrying portion configured to carry a beauty ingredient that is solid or semi-solid at normal temperature; and an atomizing portion configured to heat the beauty ingredient to a temperature equal to or higher than the melting point or sublimation point of the beauty ingredient to atomize the beauty ingredient by approaching the beauty ingredient and / or the carrying portion.
[0012] The beauty device according to other aspects of the present disclosure includes the above-described beauty ingredient atomizing device.
[0013] Effects of the Invention
[0014] According to the present disclosure, it is possible to provide a beauty ingredient atomizing device that is provided in a beauty device and can stably and appropriately supply a beauty ingredient. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 FIG. is a view showing the appearance of a hair dryer to which the beauty ingredient atomizing device according to the first embodiment is applied.
[0016] Figure 2 FIG. is a cross-sectional view of a hair dryer to which the beauty ingredient atomizing device according to the first embodiment is applied.
[0017] Figure 3 FIG. is a view for explaining the structure of the beauty ingredient atomizing device according to the first embodiment.
[0018] Figure 4A FIG. is a view for explaining the beauty ingredient according to the first embodiment.
[0019] Figure 4B FIG. is a view for explaining the beauty ingredient according to the first embodiment.
[0020] Figure 4C FIG. is a view for explaining the beauty ingredient according to the first embodiment.
[0021] Figure 5A FIG. is a view for explaining the beauty ingredient atomizing device according to the first embodiment.
[0022] Figure 5B FIG. is a view for explaining the beauty ingredient atomizing device according to the first embodiment.
[0023] Figure 6 FIG. is a view for explaining the installation of the beauty ingredient in the beauty ingredient atomizing device according to the first embodiment.
[0024] Figure 7A FIG. is a view for explaining the beauty ingredient atomizing device according to the first embodiment.
[0025] Figure 7B It is a diagram for explaining the beauty ingredient atomizing device according to the first embodiment.
[0026] Figure 7C It is a diagram for explaining the beauty ingredient atomizing device according to the first embodiment.
[0027] Figure 8A It is a diagram for explaining the beauty ingredient atomizing device according to the first embodiment.
[0028] Figure 8B It is a diagram for explaining the beauty ingredient atomizing device according to the first embodiment.
[0029] Figure 8C It is a diagram for explaining the beauty ingredient atomizing device according to the first embodiment.
[0030] Figure 9A It is a diagram for explaining the beauty ingredient atomizing device according to the first embodiment.
[0031] Figure 9B It is a diagram for explaining the beauty ingredient atomizing device according to the first embodiment.
[0032] Figure 9C It is a diagram for explaining the beauty ingredient atomizing device according to the first embodiment.
[0033] Figure 9D It is a diagram for explaining the beauty ingredient atomizing device according to the first embodiment.
[0034] Figure 10A It is a diagram showing the relationship between the distance from the beauty ingredient to the atomizing part and the temperature of the beauty ingredient.
[0035] Figure 10B It is a diagram showing the relationship between the temperature of the beauty ingredient and the atomizing amount of the beauty ingredient.
[0036] Figure 11A It is a block diagram showing the structure of the control device according to the second embodiment.
[0037] Figure 11B It is a block diagram showing the functional structure of the control device according to the second embodiment.
[0038] Figure 12A It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0039] Figure 12B It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0040] Figure 13A It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0041] Figure 13B It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0042] Figure 14A It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0043] Figure 14B It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0044] Figure 15A It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0045] Figure 15B It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0046] Figure 15C It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0047] Figure 15D It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0048] Figure 16A It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0049] Figure 16B It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0050] Figure 17 It is a diagram for explaining the relationship between the atomizing time and the atomizing amount of the beauty ingredient.
[0051] Figure 18 It is a diagram for explaining the relationship between the atomizing time and the atomizing amount of the beauty ingredient.
[0052] Figure 19 It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0053] Figure 20 It is a diagram for explaining the relationship between the feeding speed and the atomizing amount of the beauty ingredient according to the second embodiment.
[0054] Figure 21A It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0055] Figure 21BIt is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0056] Figure 22 It is a diagram for explaining the relationship between the heating area and the atomization amount of the beauty ingredient.
[0057] Figure 23A It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0058] Figure 23B It is a diagram for explaining the beauty ingredient atomizing device according to the second embodiment.
[0059] Figure 24A It is a diagram for explaining the heat treatment of the beauty ingredient atomizing device according to the second embodiment.
[0060] Figure 24B It is a diagram for explaining the heat treatment of the beauty ingredient atomizing device according to the second embodiment.
[0061] Figure 25A It is a diagram for explaining the beauty ingredient in the beauty ingredient atomizing device according to the third embodiment.
[0062] Figure 25B It is a diagram for explaining the beauty ingredient in the beauty ingredient atomizing device according to the third embodiment.
[0063] Figure 25C It is a diagram for explaining the beauty ingredient in the beauty ingredient atomizing device according to the third embodiment.
[0064] Figure 26A It is a diagram for explaining the beauty ingredient in the beauty ingredient atomizing device according to the third embodiment.
[0065] Figure 26B It is a diagram for explaining the beauty ingredient in the beauty ingredient atomizing device according to the third embodiment.
[0066] Figure 26C It is a diagram for explaining the beauty ingredient in the beauty ingredient atomizing device according to the third embodiment.
[0067] Figure 27A It is a diagram for explaining the beauty ingredient in the beauty ingredient atomizing device according to the third embodiment.
[0068] Figure 27B It is a diagram for explaining the beauty ingredient in the beauty ingredient atomizing device according to the third embodiment.
[0069] Figure 28A It is a diagram for explaining the structure of the carrying part according to other embodiments.
[0070] Figure 28B This is a diagram for explaining the structure of the carrier part involved in other embodiments.
[0071] Figure 28C This is a diagram for explaining the structure of the carrier part involved in other embodiments.
[0072] Figure 29 This is a diagram for explaining the transfer of beauty ingredients involved in other embodiments.
[0073] Figure 30 This is a diagram for explaining the beauty device involved in other embodiments.
[0074] Figure 31 This is a diagram for explaining an example in the case where the beauty device involved in other embodiments is applied to a hair straightener.
[0075] Figure 32A This is a diagram for explaining an example in the case where the beauty device involved in other embodiments is applied to a hairbrush.
[0076] Figure 32B This is a diagram for explaining an example in the case where the beauty device involved in other embodiments is applied to a hairbrush.
[0077] Figure 33 This is a diagram for explaining an example in the case where the beauty device involved in other embodiments is applied to a beauty device.
[0078] Figure 34 This is a diagram for explaining an example in the case where the beauty device involved in other embodiments is applied to a steam generator. Detailed implementation manners
[0079] Hereinafter, the embodiments will be described in detail with reference to the accompanying drawings. However, sometimes unnecessary details are omitted. For example, sometimes the detailed description of well-known matters is omitted, or the repeated description of substantially the same structures is omitted. In addition, the accompanying drawings and the following description are provided to enable those skilled in the art to fully understand the present disclosure, and are not intended to limit the subject matter recited in the claims by these.
[0080] (First embodiment)
[0081] The beauty ingredient atomizing device 100 is provided in the beauty device 10 and is used to atomize the beauty ingredient 110 and diffuse it into the air. Figure 1 The external view in the case where the beauty ingredient atomizing device 100 according to the first embodiment is provided in a hair dryer as the beauty device 10 is shown. As Figure 1As shown, the beauty device 10 includes a switch 12, a beauty ingredient insertion port 20, a beauty ingredient ejection port 30, and a warm air ejection port 40.
[0082] Figure 2 is for explaining Figure 1 a cross-sectional schematic diagram of the internal structure of the beauty device 10 shown. As Figure 2 shown, the hair dryer of the beauty device 10 includes a fan 14, a fan motor 16, a heater 18, and a beauty ingredient atomizing device 100. Additionally, the beauty ingredient atomizing device 100 may also be configured to include a control device 200 and a detection unit 300. Furthermore, the structure in the case where the beauty ingredient atomizing device 100 includes the control device 200 and / or the detection unit 300 will be described later.
[0083] The beauty device 10 is activated by pressing the switch 12, and based on the control of the control device 200, the fan motor 16 is driven. Additionally, due to the driving of the fan motor 16, the fan 14 rotates, and an air flow is ejected from the beauty ingredient ejection port 30 and the warm air ejection port 40. Moreover, the beauty device 10 as a hair dryer includes a heater 18 that operates based on the control of the control device 200. When the heater 18 is turned on, the air flow generated by the rotation of the fan 14 is heated by the heater 18 and warm air is ejected from the warm air ejection port 40.
[0084] Next, with reference to Figure 3 the structure of the beauty ingredient atomizing device 100 according to the first embodiment will be described. Figure 3 is a cross-sectional schematic diagram showing a structural example of the beauty ingredient atomizing device 100 according to the first embodiment. As Figure 3 shown, the beauty ingredient atomizing device 100 is configured to include a beauty ingredient 110, a carrier portion 120, an atomizing portion 130, a housing portion 140, a lid portion 150, and a driving portion 160.
[0085] The beauty ingredient 110 applied in the first embodiment is a substance that is solid or semi-solid at normal temperature. Additionally, in the first embodiment, a semi-solid is a substance that can be carried on the carrier portion 120 and can stay on the carrier portion 120 without dripping. Figures 4A to 4C is a diagram showing an overview of beauty ingredients. In Figure 4A , the substance names, melting points, and sublimation points are shown in the case where the classification of beauty ingredients is amino acids, organic acids, and vitamin acids. Additionally, in Figure 4B , the substance names, melting points, and sublimation points are shown in the case where the classification of beauty ingredients is metals, antioxidant ingredients, hormones, ceramides, peptides, and others. And in Figure 4C , the substance names, melting points, and sublimation points are shown in the case where the classification of beauty ingredients is lipids, carbohydrates, and oils and fats.
[0086] In addition, as the beauty ingredient applied to the beauty ingredient atomizing device 100 according to the present embodiment, it is a beauty ingredient having a vapor pressure above the melting point, and preferably a substance having a melting point or sublimation point above 40°C and a vapor pressure below 300°C. Figure 4A The organic acids shown meet the requirement of having a melting point or sublimation point above 40°C and a vapor pressure below 300°C. And, in the beauty ingredient atomizing device 100 according to the present embodiment, it is preferable to use fumaric acid, malic acid, and sebacic acid among the organic acids. In addition, in the beauty ingredient atomizing device 100 according to the present embodiment, in addition to organic acids, it is preferable to apply stearic acid and cholesterol as lipids. Furthermore, the beauty ingredient 110 applied in the present embodiment only needs to be a substance having a vapor pressure above the melting point, and is not limited to Figures 4A to 4C the substances shown.
[0087] The carrier part 120 is a member for carrying the beauty ingredient 110. For example, the carrier part 120 preferably applies materials having heat resistance to temperatures above the melting point and sublimation point of the beauty ingredient 110, and materials having chemical resistance. The carrier part 120 can be composed of, for example, wire, heat-resistant fiber, fabric, non-woven fabric, pad, film, plate, glass, heat-resistant paper, metal, and a material of a silicon wafer having minute openings. In addition, the carrier part 120 can be configured to be replaceable by the user. Thus, for example, an appropriate carrier part 120 can be set in the beauty ingredient atomizing device 100 according to the melting point and / or sublimation point of the beauty ingredient 110.
[0088] In addition, the components of the carrier part 120 can be paper, acrylic fiber, PPS (polyphenylene sulfide) fiber, PBT (polybutylene terephthalate) fiber, metal, ceramic fiber, porous body (zeolite, activated carbon, foamed polyimide, etc.). In addition, the components of the carrier part 120 can also be glass fiber, metal fiber or metal porous body (Celmet), resin beads (ion exchange resin, etc.: in the case of below 80°C), plant fiber (cotton, cellulose, etc.). And, the components of the carrier part 120 can also be chemical fibers of heat-resistant polymer materials such as PBO (poly(p-phenylene benzobisoxazole)) fiber, aromatic polyamide fiber, and polyarylate fiber. In addition, in the present embodiment, the carrier part 120 uses methods such as impregnation method, papermaking method, spraying method, and microcoating to carry the beauty ingredient 110.
[0089] The atomizing unit 130 is a component for heating the approaching beauty ingredient 110 and / or the carrier unit 120. In the present embodiment, the atomizing unit 130 can be constituted by, for example, a wire heater, an induction heater (IH), a ceramic heater, etc. Additionally, the atomizing unit 130 can also be constituted by a combination of hot air, high frequency or microwave and a heating auxiliary agent (metal), far-infrared rays, ultraviolet rays, lasers (ultraviolet, argon, YAG, etc.). Further, the atomizing unit 130 can also be constituted by a combination of a laser and a heating auxiliary agent, light condensation, discharge (corona, arc, plasma, etc.), ultrasonic waves. Hereinafter, in this specification, when there is no special description about the component of the atomizing unit 130, an example in the case where the atomizing unit 130 is constituted by a wire heater is shown.
[0090] In addition, in Figure 3 the example shown, the housing unit 140 is a component for fixing the atomizing unit 130 and the driving unit 160. Additionally, the frame unit 140 supports the carrier unit 120. Further, the housing unit 140 is connected to a part of the lid unit 150. The lid unit 150 is provided with holes for allowing air to flow through, and the atomized beauty ingredient 110 diffuses from these holes.
[0091] The driving unit 160 has a function of supporting the atomizing unit 130 and adjusting the position of the atomizing unit 130. In addition, in the first embodiment, in a structure where the position of the atomizing unit 130 does not need to be adjusted, the beauty ingredient atomizing device 100 sometimes does not have the driving unit 160.
[0092] Figure 5A and Figure 5B is a diagram showing the structure in the case where the driving unit 160 is not provided. As Figure 5A shown, the beauty ingredient 110 carried on the carrier unit 120 is inserted into the interior of the beauty ingredient atomizing device 100 in a state where the lid unit 150 is opened by the user.
[0093] Figure 6 An example of the case where the user inserts the beauty ingredient 110 into the beauty ingredient atomizing device 100 is shown. For example, in Figure 6 the example shown, the user opens the lid unit 150 connected to the housing unit 140 and inserts the beauty ingredient 110 carried on the carrier unit 120 into the beauty ingredient atomizing device 100. In addition, regarding the holes for allowing air to flow through in the lid unit 150, the illustration is omitted in Figure 6 .
[0094] As Figure 5BAs shown, with the lid portion 150 closed, the beauty ingredient 110 carried on the carrying portion 120 is assembled inside the beauty device 10 and is supported by the housing portion 140 and the atomizing portion 130. Further, by heating the atomizing portion 130, the carrying portion 120 and the beauty ingredient 110 are heated, and the beauty ingredient 110 that has reached its melting point and / or sublimation point is atomized, and the atomized beauty ingredient diffuses into the air. In addition, in Figure 5B the atomized beauty ingredient is represented by the beauty ingredient 111. Hereinafter, in this specification, the "atomized beauty ingredient" will be described as the beauty ingredient 111, and when it is not necessary to distinguish before and after atomization for explanation, it will be described as the beauty ingredient 110.
[0095] Next, with reference to Figures 7A to 7C the beauty ingredient atomizing device 100 in the case where the drive portion 160 is provided will be described. Figure 7A Similar to the example shown in Figure 5A an example is shown in the case where the user inserts the beauty ingredient 110 carried on the carrying portion 120 into the inside of the housing portion 140 with the lid portion 150 open.
[0096] Figure 7B A state is shown in which the beauty ingredient 110 carried on the carrying portion 120 is supported inside the housing portion 140. In addition, in Figure 7B the lid portion 150 is closed by the user.
[0097] Figure 7C An example is shown in the case where the position of the atomizing portion 130 is adjusted by the drive portion 160 and the carrying portion 120 and the beauty ingredient 110 are heated by heating the atomizing portion 130 so that the beauty ingredient 110 that has reached its melting point and / or sublimation point is atomized and diffuses into the air. Specifically, as shown in Figure 7C the drive portion 160 drives the atomizing portion 130 to bring the atomizing portion 130 close to the beauty ingredient 110 until a predetermined distance is reached. In the present embodiment, the predetermined distance is the distance at which the beauty ingredient 110 is atomized in an appropriate atomization amount by heating the atomizing portion 130. In addition, the predetermined distance also includes the distance in a state where the atomizing portion 130 is in contact with the beauty ingredient 110.
[0098] The drive portion 160 can be configured as follows: in the state of Figure 7B the user presses a button (not shown) provided on the outside of the housing portion 140, whereby the drive portion 160 extends by this pressing force, and the position of the atomizing portion 130 is changed to the state shown in Figure 7C . Alternatively, the drive portion 160 may be constituted by a threaded mechanism and may be configured as follows: in the state of Figure 7BIn the state of , the user rotates a knob (not shown) provided outside the housing unit 140, whereby the driving unit 160 extends, and thus the position of the atomizing unit 130 is changed to Figure 7C the state shown.
[0099] Next, with reference to Figures 8A to 8C a structural example in the case where the holding part 162 is provided in the driving part 160 will be described.
[0100] Figure 8A An example is shown in which, with the lid part 150 open, the user mounts the beauty ingredient 110 carried on the carrying part 120 on the holding part 162 provided in the driving part 160. In addition, in Figure 8A the example shown, the beauty ingredient 110 is carried on the lower side of the carrying part 120 in the figure.
[0101] Figure 8B A state is shown in which the carrying part 120 and the beauty ingredient 110 carried on the carrying part 120 are held by the holding part 162 of the driving part 160 and the lid part 150 is closed.
[0102] Figure 8C A state is shown in which the driving part 160 is driven to bring the beauty ingredient 110 into contact with the atomizing part 130. Figure 8C The driving part 160 in Figure 7C may also be configured in the same way as the structure shown in Figure 8C : The user presses a button (not shown) provided outside the housing unit 140 or rotates a knob (not shown), whereby the driving part 160 extends, and thus the beauty ingredient 110 comes into contact with the atomizing part 130. In addition, in
[0103] Next, with reference to Figures 9A to 9D a structure in which only the beauty ingredient 110 directly contacts the atomizing part 130 will be described.
[0104] In Figures 9A to 9C the example shown, in the same way as the example shown in Figures 8A to 8C the user makes the holding part 162 of the driving part 160 hold the beauty ingredient 110 carried on the carrying part 120, closes the lid part 150, and brings the beauty ingredient 110 into contact with the atomizing part 130.
[0105] Figure 9D An example is shown in which the driving unit 160 is contracted by the user pressing a button (not shown) provided outside the housing unit 140 or rotating a knob (not shown). In Figure 9DIn the example shown, the following structure can also be used: after starting the heating of the atomizing unit 130 and after a predetermined time has elapsed, the driving unit 160 is contracted so that only the beauty component 110 remains on the upper surface of the atomizing unit 130. In addition, in Figure 9D the example shown, an example is shown in which the beauty component 110 is heated by heating the atomizing unit 130 so that the beauty component 110 that has reached the melting point and / or sublimation point is atomized and diffused into the air.
[0106] In this way, by using a structure in which only the beauty component 110 is in contact with the atomizing unit 130 and the carrying unit 120 is separated from the atomizing unit 130, the carrying unit 120 can be made of a material with weak heat resistance, thereby improving the ease of selecting the material of the carrying unit 120.
[0107] Next, with reference to Figure 10A and Figure 10B the characteristics of the temperature and atomization amount of the beauty component 110 corresponding to the distance between the beauty component 110 and the atomizing unit 130 will be described.
[0108] Figure 10A is a graph showing the relationship between the distance from the atomizing unit 130 to the beauty component 110 and / or the carrying unit 120 and the temperature of the beauty component. As Figure 10A shown, the shorter the distance between the atomizing unit 130 and the beauty component 110 and / or the carrying unit 120, the higher the temperature of the beauty component, and the longer the distance between the atomizing unit 130 and the beauty component 110 and / or the carrying unit 120, the lower the temperature of the beauty component.
[0109] In addition, Figure 10B is a graph showing the relationship between the temperature of the beauty component 110 and the atomization amount Y of the beauty component. As Figure 10B shown, the higher the temperature of the beauty component 110, the more the atomization amount Y of the beauty component. That is, as Figure 10A and Figure 10B shown, the shorter the distance between the atomizing unit 130 and the beauty component 110, the higher the temperature of the beauty component 110, and the more the atomization amount of the beauty component 110.
[0110] As described above, the beauty component atomizing device 100 according to the first embodiment is provided in a beauty device and is a beauty component atomizing device for atomizing and diffusing a beauty component into the air. The beauty component atomizing device 100 includes a beauty component 110 that is solid or semi-solid at normal temperature, and a carrying unit 120 for carrying the beauty component 110. In addition, the beauty component atomizing device 100 includes an atomizing unit 130 that approaches the beauty component 110 and / or the carrying unit 120 to heat the beauty component 110 to a temperature above the melting point or sublimation point of the beauty component 110 to atomize the beauty component 110.
[0111] Thus, the beauty ingredient atomizing device 100 uses the carrier portion 120 to carry the beauty ingredient 110 that is solid or semi-solid at normal temperature, and atomizes the beauty ingredient 110 by heating the approaching atomizing portion 130. Thus, by using the solid or semi-solid beauty ingredient 110, the beauty ingredient atomizing device 100 can apply a beauty ingredient 110 that is not easily oxidized, can be stored for a long time, and does not drip like droplets in the device. In addition, the beauty ingredient atomizing device 100 can also be applied to a hydrophobic solid or semi-solid beauty ingredient 110. Therefore, the beauty ingredient atomizing device 100 can be disposed in the beauty device 10 to stably and appropriately supply the beauty ingredient 110.
[0112] In addition, the beauty ingredient atomizing device 100 includes a driving portion 160 that drives the atomizing portion 130 to bring the atomizing portion 130 close to the beauty ingredient 110 up to a specified distance. Thus, the beauty ingredient atomizing device 100 can appropriately atomize the beauty ingredient 110 according to the characteristics such as the melting point of the beauty ingredient 110. In addition, in the present embodiment, the specified distance is the distance at which the beauty ingredient 110 is atomized by heating the atomizing portion 130 to an appropriate atomization amount. In addition, in the present embodiment, the specified distance also includes the distance in a state where the atomizing portion 130 is in contact with the beauty ingredient 110.
[0113] (Second Embodiment)
[0114] As described above, a specific embodiment has been described, but the above embodiment is an example and is not used to limit the embodiment. For example, in the above embodiment, an example is given of a method of diffusing the atomized beauty ingredient 111 into the air by heating the atomizing portion 130 that has approached the beauty ingredient 110. Here, a structure of the beauty ingredient atomizing device 100 according to a second embodiment in which the control device 200 controls the atomizing portion 130 and / or other mechanisms, which is different from the first embodiment, will be described.
[0115] Figure 11A is a block diagram showing the structure of the control device 200. As Figure 11A shown, the control device 200 is configured to include a control portion 210, a storage portion 220, and an input / output IF 230 (Interface). In addition, the control device 200 may include a communication IF 240. That is, in the present embodiment, the control device 200 is constituted by a general microcomputer including a control portion 210, a storage portion 220, and an input / output IF 230.
[0116] In addition, in the present embodiment, an example of implementing multiple information processing functions provided in the control device 200 by software is shown. The control device 200 functions as multiple information processing circuits provided in the control device 200 by executing a computer program.
[0117] Alternatively, as another configuration, the control device 200 may also prepare dedicated hardware for executing Figure 11B each of the information processes shown, and configure the information processing function by a system LSI (Large Scale Integration), etc. Alternatively, multiple information processing functions may be configured into a system by separate hardware. In addition, details of the control unit 210 and the storage unit 220 provided in the control device 200 will be described later.
[0118] The input / output IF 230 is an interface for transmitting and receiving information (data) exchanged between the control device 200 and each device such as the beauty ingredient atomizing device 100, the fan motor 16, and the heater 18 in the beauty device 10.
[0119] The communication IF 240 is an interface for communicating with the outside of the control device 200 via a wireless network. For example, when updating various programs of the control device 200, this communication IF 240 can be used when downloading update data.
[0120] Next, with reference to Figure 11B the functional structure of the beauty ingredient atomizing device 100 according to the present embodiment will be described. As Figure 11B shown, the control unit 210 includes a heating control unit 211, a drive control unit 212, a mechanism control unit 213, a carrier control unit 214, a state detection unit 215, a user detection unit 216, a beauty ingredient transfer unit 217, and a beauty ingredient selection unit 218 as functions. Details of each function of the control unit 210 will be described later.
[0121] In addition, the control unit 210, for example, operates an operating system to control the entire beauty device 10. And the control unit 210 operates based on the program stored in the storage unit 220 to execute the above-mentioned various functions. In addition, the program is not limited to the manner of being stored in the storage unit 220. For example, it may also be configured to be stored in a ROM (Read Only Memory), etc. (not shown) in the beauty device 10.
[0122] As Figure 11BAs shown, the storage unit 220 saves the information contained in the user information DB 221 (DB: Database), the beauty ingredient information DB 222, and the setting information DB 223 as data. In addition, the storage unit 220 that saves each of these data can be one or multiple. For example, it can also be configured to store in regions in one storage unit 220. Or, the data can be dispersed and saved in multiple storage devices provided in physically separate locations.
[0123] The heating control unit 211 controls the turning on and off of the heating of the atomizing unit 130 and the heating temperature. In addition, the heating control unit 211 controls the turning on and off of the heating of the heater 18 and the heating temperature. In addition, the heating control unit 211 can also control the area where the beauty ingredient 110 is atomized in the atomizing unit 130.
[0124] The drive control unit 212 controls the position, etc. of the drive unit 160. Specifically, the drive control unit 212 controls the distance between the beauty ingredient 110 and / or the carrier unit 120 and the atomizing unit 130.
[0125] The mechanism control unit 213 controls the operations of mechanisms provided in the beauty device 10 such as the feeding mechanism 170a (refer to Figure 13A ), the winding mechanism 170b (refer to Figure 13A ). Specifically, the mechanism control unit 213 controls the feeding speed, feeding direction, or feeding time of the feeding mechanism 170a and the winding mechanism 170b. In addition, the mechanism control unit 213 can also control the operations of mechanisms such as the fan motor 16 of the beauty device 10.
[0126] The carrier control unit 214 controls the carrier unit 120. Specifically, the carrier control unit 214 is used when transferring the beauty ingredient 110 carried on the carrier unit 120 to the atomizing unit 130.
[0127] The state detection unit 215 has the function of detecting the state of the user's skin and / or hair. In addition, the state detection unit 215 can also detect the temperature of the beauty ingredient 110. And the state detection unit 215 can also detect the atomization amount of the atomized beauty ingredient 110. In addition, the state detection unit 215 can also detect the state of the user's hair and / or skin by detecting the moisture content, dryness, equivalent age, color, shape, or temperature and humidity of the user's hair and / or skin.
[0128] The user detection unit 216 has the function of detecting and identifying the user of the beauty device 10. Information related to the user detected by the user detection unit 216 is stored in the user information DB 221. In addition, regarding the information stored in the user information DB 221, the skin and / or hair condition of the user detected by the above-described state detection unit 215 can also be stored in association with the user. For example, the drive control unit 212 adjusts the drive unit 160 to achieve an appropriate atomization amount for the user identified by the user detection unit 216, so that the beauty ingredient atomization device 100 can perform appropriate atomization according to the characteristics such as the melting point of the beauty ingredient 110.
[0129] The beauty ingredient transfer unit 217 has the function of transferring the beauty ingredient 110 to the atomization unit 130.
[0130] The beauty ingredient selection unit 218 has the function of selecting the beauty ingredient to be used in the beauty ingredient atomization device 100. The beauty ingredient selection unit 218 selects an appropriate beauty ingredient 110 based on the information related to the beauty ingredient 110 stored in the beauty ingredient information DB 222. In the beauty ingredient information DB 222, for example, the information related to the beauty ingredient 110 can be Figures 4A to 4C the classification, substance name, melting point and / or sublimation point included therein. The beauty ingredient selection unit 218 selects the type of the beauty ingredient 110 according to the condition of the user's hair detected by the state detection unit 215 and corresponding to the condition of application to the hair. In addition, the beauty ingredient selection unit 218 can also select an appropriate beauty ingredient 110 based on the learned model obtained by machine learning. Thus, the beauty ingredient atomization device 100 can perform appropriate atomization according to the condition of the user's hair and skin of the beauty ingredient 110.
[0131] Setting information related to the beauty ingredient atomization device 100 is stored in the setting information DB 223. In the present embodiment, the setting information may include the temperature of the atomization unit 130, the distance between the atomization unit 130 and the beauty ingredient 110, etc. In addition, the setting information may also include the control information of the mechanism.
[0132] Figure 12A and Figure 12B An example of the beauty ingredient atomization device 100 is shown, which adjusts the heating position of the beauty ingredient 110 and / or the carrier unit 120 to be heated by locally heating the atomization unit 130. Figure 12A As shown in the above Figure 5A An example is shown in which the beauty ingredient 110 carried on the carrier unit 120 as shown is inserted into the interior of the beauty ingredient atomization device 100 when the user opens the lid unit 150. In addition, in Figure 12A and Figure 12BThe structural example without the drive unit 160 is shown, but the beauty ingredient atomizing device 100 according to the second embodiment is not limited to this structure. For example, the beauty ingredient atomizing device 100 according to the second embodiment may also be configured to have a drive unit 160 in the structure of Figure 12A and Figure 12B .
[0133] Figure 12B An example of changing the position of the heat treatment of the atomizing unit 130 by the control device 200 is shown. In the example shown in Figure 12A and Figure 12B , an example is shown in which the control device 200 heats the atomizing unit 130a on the left side in the figure and does not heat the remaining atomizing units 130b. That is, in the example shown in Figure 12A and Figure 12B , the control device 200 adjusts the atomizing amount of the beauty ingredient 110 according to the heating range of the beauty ingredient 110 heated by the atomizing unit 130. Thereby, Figure 12A and Figure 12B The beauty ingredient atomizing device 100 shown can adjust the atomizing amount of the beauty ingredient 110 to be atomized.
[0134] Next, with reference to Figure 13A , the beauty ingredient atomizing device 100 having a feeding mechanism 170a and a winding mechanism 170b will be described. In the beauty ingredient atomizing device 100 shown in Figure 13A , by the control of the control device 200, the feeding mechanism 170a and the winding mechanism 170b wind the beauty ingredient 110 carried on the belt-shaped carrying portion 120, so that a new beauty ingredient 110 can be atomized. That is, the feeding mechanism 170a and the winding mechanism 170b can move the carrying portion 120 based on a specified rule, thereby adjusting the atomizing amount of the beauty ingredient 110. Here, the specified rule is, for example, the winding speed of the feeding mechanism 170a and the winding mechanism 170b controlled by the control device 200.
[0135] Figure 13B is a structure in which, based on the structure of Figure 13A , both ends of the carrying portion 120 are fixed by the support portion 180, and the drive unit 160 is moved in the left-right direction in the figure by the control of the control device 200, thereby adjusting the atomizing amount of the beauty ingredient 110. That is, in the structure shown in Figure 13B , the control device 200 adjusts the atomizing amount based on the distance between the atomizing unit 130 and the beauty ingredient 110, and the heating range of the atomizing unit 130 for the beauty ingredient 110.
[0136] In addition, as shown in Figure 14A , the beauty ingredient atomizing device 100 may also be configured to be inFigure 13A On the basis of the structure, it also has the structure of the winding support portion 170c. That is, in Figure 14A , the feeding mechanism 170a and the winding mechanism 170b can move the bearing portion 120 based on a specified rule, so as to adjust the atomization amount of the beauty component 110. And in Figure 14A , the heating range of the beauty component 110 close to the atomizing portion 130 can be made narrower than that of Figure 13A 's structure, so that the atomization amount of the beauty component 110 can be adjusted more precisely.
[0137] Figure 14B is a diagram showing the manner of the bearing portion 120 and the beauty component 110 used in the beauty component atomizing device 100 of Figure 14A . As Figure 14B shown, by bearing the beauty component 110 at a specified interval by the bearing portion 120, the atomization amount of the beauty component 110 obtained by heating can be adjusted more appropriately.
[0138] Figures 15A to 15D is used to illustrate the change of the heating position 132 of the beauty component 110 when the bearing portion 120 is moved by the control of the control device 200 based on a specified rule in Figure 13A or Figure 14A .
[0139] In Figure 15A 's shown example, an example is shown where the specified rule related to the control of the control device 200 is to move the bearing portion 120 after stopping for a certain time. That is, in Figure 15A 's shown example, the control device 200 stops the movement of the bearing portion 120 for a certain time based on a specified rule. During this certain time, the beauty component 110 at the heating position 132 is atomized. In addition, the control device 200 moves the bearing portion 120 after a certain time and stops the movement of the bearing portion 120 again for a certain time. Thus, Figure 15A 's shown beauty component atomizing device 100 can reliably atomize the beauty component 110 at the heating position 132.
[0140] In addition, in Figure 15B 's shown example, an example is shown where the specified rule related to the control of the control device 200 is to move the bearing portion 120 at a fixed speed. That is, in Figure 15B 's shown example, the control device 200 moves the bearing portion 120 at a fixed speed based on a specified rule. Thus, Figure 15B 's shown beauty component atomizing device 100 can atomize the beauty component 110 at the heating position 132 evenly, so as to supply a stable atomization amount.
[0141] In Figure 15C the example shown, there is an example where the carrier part 120 carries the component 110 at a prescribed interval as Figure 14B shown. By having the carrier part 120 carry the beauty component 110 in this way, it is possible to more appropriately adjust the atomization amount of the beauty component 110 obtained by heating. Additionally, as Figure 15D shown, by expanding (or shrinking) the interval between the beauty components 110 carried on the carrier part 120, the beauty component atomization device 100 can appropriately adjust the atomization amount of the beauty component 110.
[0142] Furthermore, the control device 200 of the beauty component atomization device 100 may also use a mechanism that controls the actions of the carrier part 120 and / or the atomization part 130 to move the heating position 132 of the beauty component 110 as Figure 16A or Figure 16B shown. As Figure 16A shown, by moving the heating position 132, the beauty component atomization device 100 can atomize the beauty component 110 without waste. Additionally, as Figure 16B shown, by setting (intermittently) the interval of the beauty component 110, the beauty component atomization device 100 can atomize the beauty component 110 without waste and can provide an appropriate atomization amount. The movement of the heating position 132 that changes by the control device 200, for example, in addition to Figure 16A and Figure 16B the meandering movement shown, can also be reciprocating movement, staggered movement, rotational movement, small-amplitude movement, intermittent movement, etc.
[0143] Figure 17 and Figure 18 are graphs showing the relationship between the heating time of the beauty component 110 and the atomization amount of the beauty component 110 in the structure where the heating position 132 moves. Figure 17 is an example where the movement of the heating position 132 is stopped for a certain time and then the carrier part 120 is moved as Figure 15A shown. As Figure 17 shown, when the heating position 132 is stopped for a certain time, after a prescribed time has passed, the atomization amount of the beauty component 110 decreases. After Figure 17 the certain time t shown, by moving the heating position 132 to start atomizing a new beauty component 110, the atomization amount is restored.
[0144] Figure 18 The example shown in Figure 15B is an example where the control device 200 moves the carrier part 120 at a fixed speed based on a prescribed rule as Figure 18As shown, by changing the heating position 132 at a fixed speed, uniform atomization of the cosmetic ingredient 110 can be achieved.
[0145] Next, with reference to Figure 19 and Figure 20 the relationship between the feeding speed of the feeding mechanism 170a and the winding mechanism 170b and the atomization amount of the cosmetic ingredient 110 will be described. For example, as Figure 19 shown, by driving the driving unit 160 by the control device 200, the atomizing unit 130 is moved closer to the cosmetic ingredient 110 by a distance d, and the cosmetic ingredient 110 is wound at a feeding speed x. The relationship between the feeding speed x in this case and the atomization amount in the heating range 112 is as Figure 20 shown, the atomization amount of the cosmetic ingredient 110 decreases as the feeding speed increases. That is, the control device 200 of the cosmetic ingredient atomizing device 100 adjusts the feeding speed x of the feeding mechanism 170a and the winding mechanism 170b so that the atomization amount of the cosmetic ingredient 110 becomes an appropriate amount. Thus, the cosmetic ingredient atomizing device 100 can flexibly adjust the atomization amount of the cosmetic ingredient 110 according to the composition and use of the cosmetic ingredient 110.
[0146] In addition, the cosmetic ingredient atomizing device 100 may further include a cosmetic ingredient information storage unit (not shown). For example, the cosmetic ingredient information storage unit may be configured to store characteristics such as the melting point and sublimation point related to the cosmetic ingredient 110 and be readable by the control device 200. In addition, the control device 200 may also use the information stored in the cosmetic ingredient information storage unit to control the distance between the atomizing unit 130 and the cosmetic ingredient 110, the temperature of the atomizing unit 130, or the feeding speed of the feeding mechanism 170a and the winding mechanism 170b. Thus, the cosmetic ingredient atomizing device 100 can appropriately adjust the atomization amount of the cosmetic ingredient 110 according to the characteristics of the cosmetic ingredient 110.
[0147] Figure 21A and Figure 21B are diagrams for explaining the relationship between the heating area of the cosmetic ingredient 110 and the atomization amount of the cosmetic ingredient 110. Figure 21A is an example in the case where the supporting portion 180 of the carrying portion 122 carries the cosmetic ingredient 110 and contacts the atomizing unit 130. In addition, Figure 21B shows an example in the case where the portion of the carrying portion 122 that carries the cosmetic ingredient 110 is narrow compared to the structure of Figure 21A , and in this case, the contact area between the cosmetic ingredient 110 and the atomizing unit 130 also becomes smaller compared to the structure of Figure 21A .
[0148] As Figure 22As shown, the larger the area of the beauty component 110 that is heated (in contact with the atomizing unit 130), the larger the value of the atomization amount Y of the beauty component. Thus, the beauty component atomizing device 100 can flexibly adjust the atomization amount of the beauty component 110 according to the composition and use of the beauty component 110 by changing the heating area of the beauty component 110.
[0149] Figure 23A and Figure 23B is a diagram for explaining the relationship between the heating area of the beauty component 110 and the atomization amount of the beauty component 110, showing examples related to Figure 21A and Figure 21B different examples. Figure 23A is an example in the case where the supporting part 180 of the carrying part 122 carries the beauty component 110 and the beauty component 110 is in contact with the atomizing unit 130 having a large contact part. In addition, Figure 23B shows an example in the case where the part in contact with the beauty component 110 is narrow with respect to the structure of Figure 23A . In this case, the contact area between the beauty component 110 and the atomizing unit 130 also becomes smaller compared to the structure of Figure 23A .
[0150] In the case of the structures shown in Figure 23A and Figure 23B as well, as shown in Figure 22 , the larger the area of the beauty component 110 that is heated (in contact with the atomizing unit 130), the larger the value of the atomization amount Y of the beauty component. Thus, the beauty component atomizing device 100 can flexibly adjust the atomization amount of the beauty component 110 according to the composition and use of the beauty component 110 by changing the heating area of the beauty component 110.
[0151] For example, regarding the contact area between the atomizing unit 130 and the beauty component 110, as shown in Figure 24A and Figure 24B , the control device 200 can also use a structure that changes the heating part. For example, Figure 24A shows an example of the heating range 112 in the case where all six circular atomizing units 130 are heated. In addition, Figure 24B shows the heating range 112 in the case where only three atomizing units 130a are heated. In this way, by adjusting the atomizing unit 130 to be heated by the control device 200, the beauty component atomizing device 100 can flexibly adjust the atomization amount of the beauty component 110 according to the composition and use of the beauty component 110.
[0152] As described above, the beauty ingredient atomizing device 100 according to the second embodiment further includes a control device 200 for controlling the operations of the atomizing unit 130 and / or the driving unit 160. In addition, the control device 200 adjusts the atomization amount of the beauty ingredient 110 according to the distance between the atomizing unit 130 and the beauty ingredient 110 and / or the heating range of the beauty ingredient 110. Thereby, the beauty ingredient atomizing device 100 can adjust the atomization amount of the beauty ingredient 110 to be atomized.
[0153] In addition, the control device 200 of the beauty ingredient atomizing device 100 may also control the atomizing unit 130 to heat a part or all of the approaching beauty ingredient 110. Thereby, the beauty ingredient atomizing device 100 can hold the beauty ingredient 110 that is solid or semi-solid at normal temperature, and atomize the beauty ingredient 110 by heating of the atomizing unit 130 when atomization is required, so that the beauty ingredient 110 can be stably and appropriately supplied. That is, the beauty ingredient atomizing device 100 can stably and appropriately supply the beauty ingredient 110 by atomizing a necessary amount of the beauty ingredient 110 when necessary.
[0154] In addition, the beauty ingredient atomizing device 100 according to the second embodiment further includes a feeding mechanism 170a and a winding mechanism 170b for moving the carrying part 120. The feeding mechanism 170a and the winding mechanism 170b move the carrying part 120 based on a specified rule to adjust the atomization amount of the beauty ingredient 110. Thereby, the beauty ingredient atomizing device 100 atomizes the beauty ingredient 110 on the carrying part 120 that moves through the feeding mechanism 170a and the winding mechanism 170b, so that new beauty ingredient 110 can be atomized. In addition, the control device 200 controls the feeding mechanism 170a and the winding mechanism 170b, whereby the beauty ingredient atomizing device 100 can adjust the atomization amount of the beauty ingredient 110 to be atomized.
[0155] In addition, the feeding mechanism 170a and the winding mechanism 170b may also move the carrying part 120 at a specified speed to adjust the atomization amount of the beauty ingredient 110. Thereby, the beauty ingredient atomizing device 100 can uniformly atomize the beauty ingredient 110 at the heating position 132, so that a stable atomization amount can be supplied.
[0156] In addition, the feeding mechanism 170a and the winding mechanism 170b may also move the carrying part 120 at a specified speed after stopping the movement of the carrying part 120 for a certain period of time. Thereby, the beauty ingredient atomizing device 100 can heat the beauty ingredient 110 for a certain period of time by stopping the movement of the carrying part 120 for a certain period of time, so that the beauty ingredient 110 at the heating position 132 can be reliably atomized.
[0157] In addition, the beauty ingredient atomizing device 100 according to the second embodiment may further include a beauty ingredient information storage unit. Further, the control device 200 may also control the distance between the atomizing unit 130 and the beauty ingredient 110, the temperature of the atomizing unit 130, or the feeding speeds of the feeding mechanism 170a and the winding mechanism 170b based on the information stored in the beauty ingredient information storage unit. Thereby, the beauty ingredient atomizing device 100 can appropriately adjust the atomization amount of the beauty ingredient 110 according to the characteristics of the beauty ingredient 110.
[0158] (Third Embodiment)
[0159] Next, the third embodiment will be described. In addition, in the following description, when the same reference numerals as those in the first embodiment and / or the second embodiment are used, it indicates the same structure as that in the first embodiment and / or the second embodiment, and in the case of no special description, the previous description is referred to. Hereinafter, regarding the beauty ingredient atomizing device 100 including a plurality of beauty ingredients 110 according to the third embodiment of the present disclosure, the structures different from those in the first embodiment and / or the second embodiment will be described.
[0160] Figures 25A to 25C An example in which the two different beauty ingredients 110a and 110b are placed on the carrying part 120 is shown. That is, in Figures 25A to 25C the example shown, the carrying part 120 includes a plurality of beauty ingredient areas for carrying different types of beauty ingredients 110.
[0161] Figure 25A An example in which both of the two different beauty ingredients 110a and 110b are placed in parallel along the length direction of the carrying part 120 is shown. Thereby, in Figure 25A the example shown, the beauty ingredient atomizing device 100 can atomize the two different beauty ingredients 110a and 110b simultaneously. In addition, when the melting points of the beauty ingredient 110a and the beauty ingredient 110b are different, the control device 200 can atomize the beauty ingredient 110 with a higher melting point or both of the beauty ingredients 110a and 110b by adjusting the heating temperature of the atomizing unit 130.
[0162] Figure 25B An example in which both of the two different beauty ingredients 110a and 110b are placed alternately along the length direction of the carrying part 120 is shown. Thereby, in Figure 25BIn the example shown, the beauty ingredient atomizing device 100 can atomize two different beauty ingredients 110a and 110b alternately, so that the effects of each beauty ingredient 110 can be fully obtained. In addition, when the melting points of the beauty ingredient 110a and the beauty ingredient 110b are different, the control device 200 can atomize the beauty ingredient 110 with a high melting point or atomize both the beauty ingredient 110a and the beauty ingredient 110b by adjusting the heating temperature of the atomizing unit 130.
[0163] Figure 25C An example is shown in which, for two different beauty ingredients 110a and 110b, the carrying part 120 carries the beauty ingredient 110b and the beauty ingredient 110a is stacked on the beauty ingredient 110b Figure 25C in the upper part of. Thus, in Figure 25C the example shown, the beauty ingredient atomizing device 100 heats the beauty ingredient 110a from a short distance and heats the beauty ingredient 110b from a distance farther than the beauty ingredient 110a. Therefore, the beauty ingredient atomizing device 100 can, for example, adjust an appropriate atomization amount corresponding to the characteristics of each beauty ingredient 110 for two beauty ingredients 110a and 110b with different melting points. In addition, when the melting points of the beauty ingredient 110a and the beauty ingredient 110b are different, the control device 200 can atomize the beauty ingredient 110 with a high melting point or atomize both the beauty ingredient 110a and the beauty ingredient 110b by adjusting the heating temperature of the atomizing unit 130.
[0164] Figure 26A An example is shown in which Figure 25A the structure of the beauty ingredient 110 shown is changed in the length of the beauty ingredient 110a and the beauty ingredient 110b in the short side direction of the carrying part 120. In this way, in Figure 26A the beauty ingredient atomizing device 100 shown, the atomization amounts of the beauty ingredient 110a and the beauty ingredient 110b can be made different. In addition, when the melting points of the beauty ingredient 110a and the beauty ingredient 110b are different, the control device 200 can atomize the beauty ingredient 110 with a high melting point or atomize both the beauty ingredient 110a and the beauty ingredient 110b by adjusting the heating temperature of the atomizing unit 130.
[0165] Figure 26B An example is shown in which Figure 25B the structure of the beauty ingredient 110 shown is changed in the arrangement rule of the beauty ingredient 110a and the beauty ingredient 110b in the length direction of the carrying part 120. In Figure 26B the example shown, the structure in which the beauty ingredient 110b is arranged twice beside the beauty ingredient 110a is repeated. Thus, inFigure 26B In the example shown, the beauty ingredient atomizing device 100 can atomize two different beauty ingredients 110a and 110b according to a specified rule, and the effects of each beauty ingredient 110 can be fully obtained. In addition, when the melting points of the beauty ingredient 110a and the beauty ingredient 110b are different, the control device 200 can atomize the beauty ingredient 110 with a higher melting point or atomize both the beauty ingredient 110a and the beauty ingredient 110b by adjusting the heating temperature of the atomizing unit 130.
[0166] Figure 26C Shown with respect to Figure 25C the structure of the beauty ingredient 110 shown, an example in which the thickness of the beauty ingredient 110a in the up-down direction in Figure 26C is thinned. Thus, the beauty ingredient atomizing device 100 can, for example, adjust an appropriate atomization amount corresponding to the characteristics of each beauty ingredient 110 for two beauty ingredients 110a and 110b with different melting points. In addition, when the melting points of the beauty ingredient 110a and the beauty ingredient 110b are different, the control device 200 can atomize the beauty ingredient 110 with a higher melting point or atomize both the beauty ingredient 110a and the beauty ingredient 110b by adjusting the heating temperature of the atomizing unit 130.
[0167] Figure 27A Shown with respect to Figure 25A the structure of the beauty ingredient 110 shown, an example in which the shapes of the beauty ingredient 110a and the beauty ingredient 110b are changed. In this way, in Figure 27A the example shown, after starting heating, the atomization amount of the beauty ingredient 110b increases, and as it enters the latter half of heating, the atomization amount of the beauty ingredient 110a increases and the atomization amount of the beauty ingredient 110b decreases. Thus, in Figure 27A the beauty ingredient atomizing device 100 shown, the atomization amount of the beauty ingredient 110 can be adjusted over time.
[0168] Figure 27B Shown with respect to Figure 25C the structure of the beauty ingredient 110 shown, an example in which the thicknesses of the beauty ingredient 110a and the beauty ingredient 110b in the up-down direction in Figure 26C are changed. In this way, in Figure 27B the example shown, after starting heating, the atomization amount of the beauty ingredient 110b increases, and as it enters the latter half of heating, the atomization amount of the beauty ingredient 110a increases and the atomization amount of the beauty ingredient 110b decreases. Thus, in Figure 27B the beauty ingredient atomizing device 100 shown, the atomization amount of the beauty ingredient 110 can be adjusted over time.
[0169] In addition, in the above-described third embodiment, an example is shown in which the carrier portion 120 carries two different beauty components 110a and 110b. In this third embodiment, the types of the beauty components 110 carried by the carrier portion 120 are not limited to two, and the beauty component atomizing device 100 may also be configured to carry three or more beauty components 110.
[0170] As described above, in the beauty component atomizing device 100 according to the third embodiment, the carrier portion 120 carries at least two beauty components 110. Thus, the beauty component atomizing device 100 can atomize two different beauty components 110 simultaneously. In addition, when the melting points of at least two beauty components 110 are different, the control device 200 can atomize the beauty component 110 with a higher melting point or atomize both of the two beauty components 110 by adjusting the heating temperature of the atomizing portion 130. That is, the beauty component atomizing device 100 according to the third embodiment can adjust the atomization amount corresponding to the characteristics of at least two beauty components 110. In addition, the control device 200 may selectively perform atomization on a plurality of beauty component regions, for example, perform atomization alternately, etc. Thus, the beauty component atomizing device 100 can appropriately perform atomization according to a plurality of beauty components 110 having different components and melting points.
[0171] In addition, a plurality of beauty component regions may be provided continuously or intermittently on the carrier portion 120. Thus, the beauty component atomizing device 100 can perform appropriate atomization according to characteristics such as the melting point of the beauty component 110.
[0172] In addition, in the third embodiment, when the control device 200 performs atomization on a plurality of beauty component regions, it may perform atomization on the beauty component regions to be atomized separately with a time difference. In addition, the control device 200 may also change the amount to be atomized according to the passage of time for different beauty component regions. Thus, the beauty component atomizing device 100 can perform appropriate atomization according to characteristics such as the melting point of the beauty component 110.
[0173] (Other Embodiments)
[0174] The above describes the present embodiment, but the embodiment is not limited thereto, and various modifications can be made within the scope of the gist of the embodiment. In addition, a part or all of various embodiments can be combined to form a new embodiment.
[0175] As Figure 2As shown, the beauty ingredient atomizing device 100 may also include a detection unit 300. The detection unit 300 can detect the atomization amount of the beauty ingredient 110 through a sensor. The detection unit 300 may also be composed of, for example, a gas sensor, a UV absorption rate (absorbance) change detection sensor, an absorbance change sensor, a mass detection sensor, a mass change detection sensor, a temperature detection sensor, a usage time measurement sensor, etc. The control device 200 may also control the atomization unit 130 and / or the drive unit 160 according to the atomization amount of the beauty ingredient 110 detected by the detection unit 300 to adjust the atomization amount. For example, when the detected atomization amount of the beauty ingredient 110 is more than the specified atomization amount, the atomization amount is adjusted by implementing control to lower the temperature of the atomization unit 130 or control to increase the distance between the atomization unit 130 and the beauty ingredient 110. Thus, the beauty ingredient atomizing device 100 can adjust the atomization amount of the appropriate beauty ingredient 110 according to the detected atomization amount.
[0176] In addition, the detection unit 300 may also be composed of a sensor for detecting the state of the user's skin and / or hair. The detection of the state of the user's skin and / or hair by this sensor may be a general moisture or oil content detection function, or a state detection using an optical sensor. In addition, the state of the skin and / or hair may also be detected by analyzing the image obtained by the camera. The beauty ingredient atomizing device 100 may also adjust the atomization amount of the beauty ingredient 110 according to the state of the skin and / or hair detected by the detection unit 300. Thus, the beauty ingredient atomizing device 100 can supply an appropriate atomization of the beauty ingredient 110 corresponding to the state of the user.
[0177] In addition, the control device 200 of the beauty ingredient atomizing device 100 may also detect the temperature of the beauty ingredient 110. In addition, when the detected temperature of the beauty ingredient 110 temporarily becomes above the melting point and then becomes below the melting point, the control device 200 may implement control to ensure the distance between the beauty ingredient 110 and the atomization unit 130, or control to stop the heating of the atomization unit 130. Thus, the beauty ingredient atomizing device 100 can prevent the beauty ingredient 110 that has temporarily become above the melting point and then become below the melting point from adhering to the atomization unit 130, thereby maintaining the quality of the beauty ingredient 110.
[0178] In addition, the beauty ingredient atomizing device 100 may also include a plurality of carrying parts 120 for carrying different beauty ingredients 110. Figure 28A It is a diagram showing an example in which a plurality of carrying parts 124a and 124b are set above the atomization unit 130. Figure 28BFIG. is an example showing that a plurality of holding parts 124a to 124f are provided above the atomizing part 130. In addition, when the holding parts 124a to 124f do not need to be distinguished, they are described as the holding part 120. In Figure 28A and Figure 28B In the example shown, beauty components 110a to 110f are arranged on each of the holding parts 120. Figure 28C FIG. shows an example in the case where the beauty component atomizing device 100 includes a plurality of holding parts 120 and the atomizing part 130 is rotated by the driving part 160 to rotate the beauty component 110 to be atomized. Thereby, the beauty component atomizing device 100 can perform appropriate atomization according to characteristics such as the melting point of the beauty component 110. In addition, the control device 200 may also rotate the beauty component 110 to be atomized by the atomizing part 130 based on a learned model obtained by machine learning. In addition, the learned model may be, for example, a learned model obtained by learning effects corresponding to the melting point of the beauty component 110, the amount to be atomized, or the atomization time. Thereby, the beauty component atomizing device 100 can perform more appropriate atomization according to characteristics such as the melting point of the beauty component 110, the amount to be atomized, or the atomization time.
[0179] In addition, the beauty device 10 may also include a charged particle generating device 400. In the present embodiment, the charged particle generating device 400 is a device that generates charged particle water. In addition, the charged particle generating device 400 may also be a device that generates negative ions such as minerals. In addition, the charged particle generating device 400 may also be a device that generates nano water ions (registered trademark) ions, which are negative ions surrounded by particle water. In addition, the charged particle generating device 400 may also include both a device that generates charged particle water and a device that generates negative ions. Figure 30 FIG. shows an example in the case where the beauty device 10 applied to a hair dryer includes the charged particle generating device 400. For example, in Figure 30In the hair dryer shown, charged particles generated by the charged particle generating device 400 are attached to the user's hair or the like for a specified time, and then, the beauty component 110 atomized by the beauty component atomizing device 100 is attached to the user's hair or the like. The specified time for attaching the charged particles generated by the charged particle generating device 400 can be, for example, 1 minute. In addition, the specified time for attaching the charged particles generated by the charged particle generating device 400 is not limited to the structure of the present embodiment, and any time can be used as long as it can achieve the effect brought about by the attachment of the charged particles, and it can also be a time shorter or longer than 1 minute. In this way, by attaching the charged particles before attaching the beauty component 110, the effect of attaching the beauty component 110 can be improved. In addition, in the beauty component atomizing device 100, the timing of ejecting the beauty component 110 is not limited to the timing after ejecting the charged particles generated by the charged particle generating device 400. For example, in the beauty component atomizing device 100, the timing of ejecting the beauty component 110 can be the same as the timing of ejecting the charged particles generated by the charged particle generating device 400, or can be before and after the timing of ejecting the charged particles.
[0180] In addition, as the beauty device 10, a structure in which a beauty component atomizing device 100 is provided in a hair curler can also be applied. Figure 31 An example of the structure of the beauty device 10b when the beauty component atomizing device 100 is applied to a hair curler is shown. By providing the beauty component atomizing device 100 in the hair curler, the beauty component 110 can be provided to the user's hair, thereby providing a stable beauty effect to the user's hair.
[0181] In addition, as the beauty device 10, a structure in which a beauty component atomizing device 100 is provided in a hairbrush can also be applied. Figure 32A An example of the structure of the beauty device 10c when the beauty component atomizing device 100 is applied to a hairbrush is shown. In addition, Figure 32B FIG. shows the structure of a plurality of comb parts 500 provided in the beauty device 10c. As Figure 32B shown, the beauty component 110 is provided at one end of the comb part 500. By providing the beauty component atomizing device 100 in the Figure 32A hairbrush shown, the beauty component 110 provided in the plurality of comb parts 500 can be provided to the user's hair, thereby providing a stable beauty effect to the user's hair.
[0182] In addition, as the beauty device 10, a structure in which a beauty component atomizing device 100 is provided in a beauty device can also be applied. Figure 33 An example of the structure of the beauty device 10d when the beauty component atomizing device 100 is applied to a beauty device is shown. By providing the beauty component atomizing device 100 in the Figure 33The beauty device shown is equipped with a beauty ingredient atomizing device 100, which can provide beauty ingredient 110 in a state where the contact part 600 abuts against the user's skin, thereby providing a stable beauty effect on the user's skin.
[0183] In addition, as the beauty device 10, a structure in which a steam generator is equipped with a beauty ingredient atomizing device 100 can also be applied. Figure 34 An example of the structure of the beauty device 10e when the beauty ingredient atomizing device 100 is applied to a steam generator is shown. By Figure 34 The steam generator shown is equipped with a beauty ingredient atomizing device 100, which can provide the beauty ingredient 110 ejected from the beauty ingredient ejection port 30 in cooperation with the steam ejected from the steam outlet 700, thereby providing a stable beauty effect on the user's skin.
[0184] In addition, the beauty ingredient atomizing device 100 can also be provided in a fog ejection device that ejects fog. The fog ejection device can be, for example, an automatic ejection device, an air purifier, a diffuser, an air atomizer, an air conditioner, a refrigerator, a humidifier, etc.
[0185] In addition, as Figure 29 shown, the beauty ingredient atomizing device 100 can also be equipped with a beauty ingredient transfer mechanism 190 that transfers the beauty ingredient 110 to the atomizing part 130 as a mechanism. In Figure 29 the example shown, through the beauty ingredient transfer mechanism 190, the beauty ingredient 110 can be directly transferred to the atomizing part 130, so that the bearing part 120 can be omitted. Thus, the beauty ingredient atomizing device 100 can achieve a structure that is not affected by the heat resistance of the bearing part 120. In addition, when the transferred beauty ingredient 110 is atomized, the atomizing part 130 that has moved in the Figure 29 arrow direction shown rotates horizontally and transfers the beauty ingredient 110 through the beauty ingredient transfer mechanism 190 again. Thus, the beauty ingredient atomizing device 100 can continue to atomize the beauty ingredient 110.
[0186] (Supplementary Note)
[0187] Through the description of the above embodiments, the following technology is disclosed.
[0188] (Technology 1) A beauty ingredient atomizing device is provided in a beauty device. The beauty ingredient atomizing device is used to atomize and diffuse beauty ingredients into the air. The beauty ingredient atomizing device includes:
[0189] The beauty ingredient, which is solid or semi-solid at room temperature;
[0190] A bearing part for bearing the beauty ingredient; and
[0191] An atomizing unit that is close to the beauty ingredient and / or the carrier unit to heat the beauty ingredient to a temperature above the melting point or sublimation point of the beauty ingredient to atomize the beauty ingredient.
[0192] With this structure, the beauty ingredient atomizing device 100 uses the carrier unit 120 to carry the beauty ingredient 110 that is solid or semi-solid at normal temperature, and atomizes the beauty ingredient 110 by heating the adjacent atomizing unit 130. Therefore, by using the solid or semi-solid beauty ingredient 110, the beauty ingredient atomizing device 100 can apply a beauty ingredient 110 that is not easily oxidized, can be stored for a long time, and does not drip like droplets inside the device. In addition, the beauty ingredient atomizing device 100 can also be applied to a solid or semi-solid beauty ingredient 110 with hydrophobicity. Thus, the beauty ingredient atomizing device 100 is provided in the beauty device 10, and can stably and appropriately supply the beauty ingredient 110.
[0193] (Technology 2) The beauty ingredient atomizing device according to Technology 1 is provided with a driving unit that drives the atomizing unit to bring the atomizing unit close to the beauty ingredient to a specified distance.
[0194] With this structure, the beauty ingredient atomizing device 100 is provided with a driving unit 160 that can bring the atomizing unit 130 close to the beauty ingredient 110 to a specified distance. Therefore, the beauty ingredient atomizing device 100 can appropriately atomize the beauty ingredient 110 according to the characteristics such as the melting point of the beauty ingredient 110.
[0195] (Technology 3) The beauty ingredient atomizing device according to Technology 2 further includes a control unit that is used to control the actions of the atomizing unit and / or the driving unit,
[0196] The control unit adjusts the atomizing amount of the beauty ingredient according to the distance between the atomizing unit and the beauty ingredient and / or the heating range of the beauty ingredient.
[0197] With this structure, the control device 200 of the beauty ingredient atomizing device 100 adjusts the atomizing amount of the beauty ingredient 110 according to the distance between the atomizing unit 130 and the beauty ingredient 110 and / or the heating range of the beauty ingredient 110. Therefore, the beauty ingredient atomizing device 100 can adjust the atomizing amount of the beauty ingredient 110 to be atomized.
[0198] (Technology 4) In the beauty ingredient atomizing device according to Technology 3, the control unit controls the atomizing unit to heat a part or all of the adjacent beauty ingredient.
[0199] With this structure, the beauty ingredient atomizing device 100 can hold the beauty ingredient 110 that is solid or semi-solid at normal temperature, and when atomization is required, the beauty ingredient 110 is atomized by heating of the atomizing unit 130, so that the beauty ingredient 110 can be stably and appropriately supplied. That is, the beauty ingredient atomizing device 100 can stably and appropriately supply the beauty ingredient 110 by atomizing a necessary amount of the beauty ingredient 110 when necessary.
[0200] (Technology 5) The beauty ingredient atomizing device according to Technology 3 or 4 further includes a feeding mechanism and a winding mechanism for moving the carrying part,
[0201] The feeding mechanism and the winding mechanism move the carrying part based on a specified rule to adjust the atomization amount of the beauty ingredient.
[0202] With this structure, the feeding mechanism 170a and the winding mechanism 170b of the beauty ingredient atomizing device 100 move the carrying part 120 based on a specified rule to adjust the atomization amount of the beauty ingredient 110. Therefore, the beauty ingredient atomizing device 100 atomizes the beauty ingredient 110 on the carrying part 120 that moves through the feeding mechanism 170a and the winding mechanism 170b, whereby new beauty ingredient 110 can be atomized. In addition, the control device 200 controls the feeding mechanism 170a and the winding mechanism 170b, whereby the beauty ingredient atomizing device 100 can adjust the atomization amount of the beauty ingredient 110 to be atomized.
[0203] (Technology 6) The beauty ingredient atomizing device according to Technology 5, the feeding mechanism and the winding mechanism move the carrying part at a specified speed to adjust the atomization amount of the beauty ingredient.
[0204] With this structure, the beauty ingredient atomizing device 100 can atomize the beauty ingredient 110 at the heating position 132 evenly, so that a stable atomization amount can be supplied.
[0205] (Technology 7) The beauty ingredient atomizing device according to Technology 5, the feeding mechanism and the winding mechanism move the carrying part at a specified speed after stopping the movement of the carrying part for a certain period of time.
[0206] With this structure, the beauty ingredient atomizing device 100 can heat the beauty ingredient 110 for a certain period of time by stopping the movement of the carrying part 120 for a certain period of time, so that the beauty ingredient 110 at the heating position 132 can be reliably atomized.
[0207] (Technology 8) The beauty ingredient atomizing device according to Technology 5 further includes a beauty ingredient information storage part,
[0208] The control unit controls the distance between the atomizing unit and the beauty ingredient, the temperature of the atomizing unit, or the feeding speeds of the feeding mechanism and the winding mechanism based on the information stored in the beauty ingredient information storage unit.
[0209] With this configuration, the beauty ingredient atomizing device 100 can appropriately adjust the atomizing amount of the beauty ingredient 110 according to the characteristics of the beauty ingredient 110 by using the information stored in the beauty ingredient information storage unit.
[0210] (Technology 9) The beauty ingredient atomizing device according to any one of Technologies 3 to 8 further includes a detection unit that detects the atomizing amount of the atomized beauty ingredient.
[0211] The control unit controls the atomizing amount of the beauty ingredient based on the information detected by the detection unit.
[0212] With this configuration, the beauty ingredient atomizing device 100 adjusts the atomizing amount of the beauty ingredient 110 according to the atomizing amount of the beauty ingredient 110 detected by the detection unit 300. Therefore, the beauty ingredient atomizing device 100 can atomize the beauty ingredient 110 with an appropriate atomizing amount according to the atomizing amount of the beauty ingredient 110.
[0213] (Technology 10) The beauty ingredient atomizing device according to any one of Technologies 3 to 8 further includes a detection unit that detects the state of the user's skin and / or hair.
[0214] The control unit controls the atomizing amount of the beauty ingredient based on the information detected by the detection unit.
[0215] With this configuration, the beauty ingredient atomizing device 100 adjusts the atomizing amount of the beauty ingredient 110 according to the state of the skin and / or hair detected by the detection unit 300. Therefore, the beauty ingredient atomizing device 100 can provide an appropriate atomization of the beauty ingredient 110 corresponding to the state of the user.
[0216] (Technology 11) In the beauty ingredient atomizing device according to any one of Technologies 3 to 10, the control unit detects the temperature of the beauty ingredient. When the detected temperature of the beauty ingredient temporarily becomes above the melting point and then becomes below the melting point, the control unit implements control to ensure the distance between the beauty ingredient and the atomizing unit, or control to stop heating the atomizing unit.
[0217] With this configuration, when the temperature of the detected beauty ingredient 110 temporarily rises above its melting point and then drops below it, the control device 200 performs control to ensure the distance between the beauty ingredient 110 and the atomizing unit 130, or control to stop the heating of the atomizing unit 130. Therefore, the beauty ingredient atomizing device 100 can prevent the beauty ingredient 110, which has temporarily risen above its melting point and then dropped below it, from adhering to the atomizing unit 130, thereby maintaining the quality of the beauty ingredient 110.
[0218] (Technology 12) The beauty ingredient atomizing device according to any one of Technologies 1 to 11, wherein the carrying part carries at least two of the beauty ingredients.
[0219] With this structure, the beauty ingredient atomizing device 100 can atomize two different beauty ingredients 110 simultaneously. Further, when the melting points of at least two beauty ingredients 110 are different, the control device 200 can atomize the beauty ingredient 110 with a higher melting point, or atomize both of the two beauty ingredients 110, by adjusting the heating temperature of the atomizing unit 130.
[0220] (Technology 13) A beauty ingredient atomizing device is provided in a mist ejection device or a beauty device that ejects mist, and the beauty ingredient atomizing device is configured to atomize a beauty ingredient and diffuse it into the air. The beauty ingredient atomizing device includes:
[0221] A carrying part configured to carry the beauty ingredient that is solid or semi-solid at normal temperature; and
[0222] An atomizing unit that approaches the beauty ingredient and / or the carrying part to heat the beauty ingredient to a temperature above the melting point or sublimation point of the beauty ingredient to atomize the beauty ingredient.
[0223] With this structure, the beauty ingredient atomizing device 100 uses the carrying part 120 to carry the beauty ingredient 110 that is solid or semi-solid at normal temperature, and atomizes the beauty ingredient 110 by heating the approaching atomizing unit 130. Therefore, by using the solid or semi-solid beauty ingredient 110, the beauty ingredient atomizing device 100 can apply beauty ingredients 110 that are not easily oxidized, can be stored for a long time, and do not drip like droplets in the device. In addition, the beauty ingredient atomizing device 100 can also apply to solid or semi-solid beauty ingredients 110 having hydrophobicity. Thus, the beauty ingredient atomizing device 100 can be provided in the beauty device 10 and can stably and appropriately supply the beauty ingredient 110.
[0224] (Technology 14) The beauty ingredient atomizing device according to any one of Technologies 1 to 12, comprising a plurality of the carrying parts configured to carry different beauty ingredients.
[0225] A plurality of the holding parts rotate the beauty ingredient to be atomized by the atomizing part.
[0226] With this structure, the beauty ingredient atomizing device 100 can perform appropriate atomization according to characteristics such as the melting point of the beauty ingredient 110.
[0227] (Technology 15) The beauty ingredient atomizing device according to any one of Technologies 3 to 12 and 14, wherein the control part further includes a drive control part.
[0228] The drive control part is a learned model obtained by learning the appropriate rotation of a plurality of the holding parts through machine learning, and the drive control part rotates the beauty ingredient to be atomized by the atomizing part.
[0229] With this structure, the beauty ingredient atomizing device 100 can perform more appropriate atomization according to characteristics such as the melting point of the beauty ingredient 110, the amount to be atomized, and the atomization time.
[0230] (Technology 16) A beauty device includes the beauty ingredient atomizing device according to any one of Technologies 1 to 15.
[0231] With this structure, the beauty device 10 uses the holding part 120 to hold the beauty ingredient 110 that is solid or semi-solid at normal temperature, and heats the approaching atomizing part 130 to atomize the beauty ingredient 110. Therefore, by using the solid or semi-solid beauty ingredient 110, the beauty device 10 can apply a beauty ingredient 110 that is not easily oxidized, can be stored for a long time, and does not drip like droplets in the device. Thus, the beauty device 10 can stably and appropriately supply the beauty ingredient 110.
[0232] (Technology 17) The beauty device according to Technology 14 further includes a charged particle generating device that generates charged particles.
[0233] The beauty device sprays the beauty ingredient atomized by the beauty ingredient atomizing device after spraying the charged particles generated by the charged particle generating device.
[0234] With this structure, the beauty device 10 sprays the beauty ingredient 110 atomized by the beauty ingredient atomizing device after spraying the charged particles generated by the charged particle generating device 400. Therefore, the beauty device 10 can improve the adhesion effect of the beauty ingredient 110 by making the charged particles adhere before making the beauty ingredient 110 adhere.
[0235] (Technology 18) The beauty ingredient atomizing device according to any one of Technologies 3 to 12 and 14 to 15, wherein the control part further includes a user detection part that detects and determines a user.
[0236] The beauty ingredient atomizing device further includes a drive control unit that adjusts the drive unit to be suitable for the atomization amount of the user determined by the user detection unit.
[0237] With this structure, the beauty ingredient atomizing device 100 can perform appropriate atomization according to the state of the user's hair and skin of the beauty ingredient 110.
[0238] (Technology 19) The beauty ingredient atomizing device according to any one of Technologies 3 to 12, 14 to 15, and 18 includes a beauty ingredient transfer unit above the atomizing unit for transferring the beauty ingredient.
[0239] With this structure, the beauty ingredient atomizing device 100 can transfer the beauty ingredient 110 to the atomizing unit 130 without having to include a carrier unit 120, and can achieve a structure that is not affected by the heat resistance of the carrier unit 120. In addition, by using a structure that only brings the beauty ingredient 110 into contact with the atomizing unit 130 and separates the carrier unit 120 from the atomizing unit 130, the carrier unit 120 can be made of a material with weak heat resistance, thereby improving the ease of selecting the material of the carrier unit 120.
[0240] (Technology 20) The beauty ingredient atomizing device according to any one of Technologies 5 to 12 includes:
[0241] A drive control unit that controls the distance between the beauty ingredient and / or the carrier unit and the atomizing unit;
[0242] A heating control unit that controls the area or temperature atomized in the atomizing unit; and
[0243] A mechanism control unit that controls the feed speed, feed direction, or feed timing of the feed mechanism and the winding mechanism.
[0244] With this structure, the beauty ingredient atomizing device 100 can perform appropriate atomization according to characteristics such as the melting point of the beauty ingredient 110.
[0245] (Technology 21) In the beauty ingredient atomizing device according to Technologies 10 to 12, the detection unit is a state detection unit that detects the state of the user's hair and / or skin,
[0246] The beauty ingredient atomizing device further includes a beauty ingredient selection unit that selects the type of the beauty ingredient according to the state of the user's hair detected by the state detection unit and the condition of application to the hair.
[0247] With this structure, the beauty ingredient atomizing device 100 can perform appropriate atomization according to the state of the user's hair and skin.
[0248] (Technology 22) The beauty ingredient atomizing device according to Technology 21, wherein the beauty ingredient selection unit selects an appropriate beauty ingredient based on a learned model obtained by machine learning.
[0249] With this structure, the beauty ingredient atomizing device 100 can perform appropriate atomization according to the state of the user's hair and skin.
[0250] (Technology 23) The beauty ingredient atomizing device according to Technology 21 or 22, wherein the state detection unit detects the moisture content, dryness, equivalent age, color, shape, or temperature and humidity of the hair and / or skin to detect the state of the user's hair and / or skin.
[0251] With this structure, the beauty ingredient atomizing device 100 can perform appropriate atomization according to the state of the user's hair and skin.
[0252] (Technology 24) The beauty ingredient atomizing device according to any one of Technologies 1 to 23, wherein the carrier is made of a heat-resistant material, heat-resistant fiber, metal, silicon wafer, glass, or heat-resistant paper.
[0253] With this structure, the beauty ingredient atomizing device 100 can set an appropriate carrier 120 according to the melting point and / or sublimation point of the beauty ingredient 110.
[0254] (Technology 25) The beauty ingredient atomizing device according to any one of Technologies 1 to 24, wherein the carrier can be replaced by the user.
[0255] With this structure, the beauty ingredient atomizing device 100 can easily set an appropriate carrier 120 by the user according to the melting point and / or sublimation point of the beauty ingredient 110.
[0256] (Technology 26) The beauty ingredient atomizing device according to any one of Technologies 1 to 25, wherein the carrier carries the beauty ingredient with a high melting point and the beauty ingredient with a low melting point.
[0257] With this structure, the beauty ingredient atomizing device 100 can appropriately perform atomization according to a plurality of beauty ingredients 110 with different ingredients and melting points.
[0258] (Technology 27) The beauty ingredient atomizing device according to any one of Technologies 1 to 26, wherein the carrier has a plurality of beauty ingredient regions for carrying different types of beauty ingredients.
[0259] The control unit selectively or simultaneously atomizes the plurality of beauty ingredient regions.
[0260] With this structure, the beauty ingredient atomizing device 100 can appropriately atomize according to multiple beauty ingredients 110 with different ingredients and melting points.
[0261] (Technology 28) For the beauty ingredient atomizing device according to Technology 27, the multiple beauty ingredient regions are provided on the carrying part continuously or intermittently.
[0262] With this structure, the beauty ingredient atomizing device 100 can perform appropriate atomization according to characteristics such as the melting point of the beauty ingredient 110.
[0263] (Technology 29) For the beauty ingredient atomizing device according to any one of Technologies 3 to 12, when the control part controls the actions of the carrying part and / or the atomizing part, it changes the heating position of the beauty ingredient by meandering movement, reciprocating movement, staggered movement, rotational movement, small - amplitude movement or intermittent movement.
[0264] With this structure, the beauty ingredient atomizing device 100 can appropriately adjust the atomization amount of the beauty ingredient 110 according to the characteristics of the beauty ingredient 110.
[0265] (Technology 30) For the beauty ingredient atomizing device according to Technology 27 or 29, the control part atomizes the different beauty ingredient regions with a time difference.
[0266] With this structure, appropriate atomization can be performed according to characteristics such as the melting point of the beauty ingredient 110.
[0267] (Technology 31) For the beauty ingredient atomizing device according to any one of Technologies 27, 29, 30, the control part changes the amount to be atomized according to the passage of time for different beauty ingredient regions.
[0268] With this structure, appropriate atomization can be performed according to characteristics such as the melting point of the beauty ingredient 110.
[0269] (Technology 32) For the beauty instrument according to Technology 17, the charged particles are nano - water ions or minerals that are negative ions wrapped by particulate water.
[0270] With this structure, the beauty device 10 can improve the adhesion effect of the beauty ingredient 110 by making nano - water ions or minerals adhere.
[0271] (Technology 33) For the beauty ingredient atomizing device according to any one of Technologies 1 to 32, the beauty device is a hair dryer, a steam generator or a hair straightener.
[0272] With this structure, by using a hair dryer, a steam generator, or a hair curler equipped with the beauty ingredient atomizing device 100, the beauty ingredient 110 can be stably and appropriately supplied to the user.
[0273] In addition, the above-described embodiments are used to illustrate the technology of the present disclosure, and thus various changes, replacements, additions, omissions, etc. can be made within the scope of the claims or their equivalents.
[0274] Industrial Applicability
[0275] The present disclosure can be applied to a beauty ingredient atomizing device that is provided in a beauty device and can stably and appropriately supply a beauty ingredient. Specifically, the present disclosure can be applied to a hair dryer, a beauty device, etc.
[0276] Description of Reference Numerals
[0277] 10, 10a, 10b, 10c, 10d, 10e: beauty device; 12: switch; 14: fan; 16: fan motor; 18: heater; 20: beauty ingredient insertion port; 30: beauty ingredient ejection port; 40: warm air ejection port; 100: beauty ingredient atomizing device; 110, 110a to 110f, 111: beauty ingredient; 112: heating range; 120, 122, 124a to 124f: carrying part; 130, 130a, 130b: atomizing part; 132: heating position; 140: housing part; 150: cover part; 160: driving part; 162: gripping part; 170a: feeding mechanism; 170b: winding mechanism; 170c: winding support part; 180: support part; 200: control device; 210: control part; 211: heating control part; 212: driving control part; 213: mechanism control part; 214: carrying control part; 215: state detection part; 216: user detection part; 217: beauty ingredient transfer part; 218: beauty ingredient selection part; 220: storage part; 221: user information DB; 222: beauty ingredient information DB; 223: setting information DB; 230: input / output IF; 240: communication IF; 300: detection part; 400: charged particle generation device; 500: comb part; 600: contact part.
Claims
1. A beauty ingredient atomizing device is provided in a mist ejection device or a beauty device that ejects mist. The beauty ingredient atomizing device is used to atomize beauty ingredients and disperse them into the air. The beauty ingredient atomizing device includes: The beauty ingredient, which is solid or semi-solid at normal temperature; A carrying part for carrying the beauty ingredient; and An atomizing part that approaches the beauty ingredient and / or the carrying part to heat the beauty ingredient above its melting point or sublimation point to atomize the beauty ingredient.
2. The beauty ingredient atomizing device according to claim 1, wherein A driving part is provided, and the driving part drives the atomizing part to bring the atomizing part close to the beauty ingredient until a specified distance is reached.
3. The beauty ingredient atomizing device according to claim 2, wherein A control part is further provided, and the control part is used to control the operation of the atomizing part and / or the driving part. The control part adjusts the atomization amount of the beauty ingredient according to the distance between the atomizing part and the beauty ingredient and / or the heating range of the beauty ingredient.
4. The beauty ingredient atomizing device according to claim 3, wherein The control part controls the atomizing part to heat a part or all of the approached beauty ingredient.
5. The beauty ingredient atomizing device according to claim 3, wherein A feeding mechanism and a winding mechanism for moving the carrying part are further provided. The feeding mechanism and the winding mechanism move the carrying part based on a specified rule to adjust the atomization amount of the beauty ingredient.
6. The beauty ingredient atomizing device according to claim 5, wherein The feeding mechanism and the winding mechanism move the carrying part at a specified speed to adjust the atomization amount of the beauty ingredient.
7. The beauty ingredient atomizing device according to claim 5, wherein After the movement of the carrying part has stopped for a certain period of time, the feeding mechanism and the winding mechanism move the carrying part at a specified speed.
8. The beauty ingredient atomizing device according to claim 5, wherein A beauty ingredient information storage part is further provided. The control part controls the distance between the atomizing part and the beauty ingredient, the temperature of the atomizing part, or the feeding speed of the feeding mechanism and the winding mechanism based on the information stored in the beauty ingredient information storage part.
9. The beauty ingredient atomizing device according to claim 3, wherein A detection part is further provided, and the detection part detects the atomization amount of the atomized beauty ingredient. The control part controls the atomization amount of the beauty ingredient based on the information detected by the detection part.
10. The beauty ingredient atomizing device according to claim 3, wherein A detection part is further provided, and the detection part detects the state of the user's skin and / or hair. The control part controls the atomization amount of the beauty ingredient based on the information detected by the detection part.
11. The beauty ingredient atomizing device according to claim 3, wherein The control unit detects the temperature of the beauty ingredient. When the detected temperature of the beauty ingredient temporarily rises above the melting point and then drops below the melting point, the control unit implements control to ensure the distance between the beauty ingredient and the atomizing unit, or control to stop heating the atomizing unit.
12. The beauty ingredient atomizing device according to claim 1, wherein the carrying unit carries at least two types of the beauty ingredients.
13. A beauty ingredient atomizing device is provided in a mist ejection device or a beauty device that ejects mist. The beauty ingredient atomizing device is configured to atomize a beauty ingredient and diffuse it into the air. The beauty ingredient atomizing device includes: a carrying unit configured to carry the beauty ingredient that is solid or semi-solid at normal temperature; and an atomizing unit that approaches the beauty ingredient and / or the carrying unit to heat the beauty ingredient above the melting point or sublimation point of the beauty ingredient to atomize the beauty ingredient.
14. The beauty ingredient atomizing device according to claim 13, wherein a plurality of the carrying units for carrying different beauty ingredients are provided, and the plurality of carrying units rotate the beauty ingredient to be atomized by the atomizing unit.
15. The beauty ingredient atomizing device according to claim 3, wherein the control unit further includes a drive control unit, the drive control unit is a learned model obtained by learning the appropriate rotation of the plurality of carrying units through machine learning, and the drive control unit rotates the beauty ingredient to be atomized by the atomizing unit.
16. A beauty device includes the beauty ingredient atomizing device according to any one of claims 1 to 15.
17. The beauty device according to claim 16, wherein it further includes a charged particle generation device that generates charged particles, and the beauty device ejects the beauty ingredient atomized by the beauty ingredient atomizing device after ejecting the charged particles generated by the charged particle generation device.
Citation Information
Patent Citations
Hair dryer and cartridge attached to hair dryer
JP2019111152A