Systems and methods for dispensing colored products
The portable, automated delivery system addresses the need for precise and customizable cosmetic color application by using refillable reservoirs and precise metering, ensuring accurate dosing and reducing waste.
Patent Information
- Application Number
- JP2022522848
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2019-10-18
- Filing Date
- 2020-10-16
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2040-10-16
AI Technical Summary
Existing cosmetic delivery systems fail to provide high-precision dosing and customization of colored products, leading to product loss and environmental waste, while often requiring users to mix colors manually or visit a point of sale.
A portable, miniaturized, and automated delivery system with refillable reservoirs, a color sensor, and precise metering and mixing devices that allow users to select and reproduce custom target colors directly, ensuring accurate dosing and reducing waste.
Enables precise delivery of customized colored products without waste, allowing users to apply the exact amount needed directly, reducing product loss and environmental impact.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a portable, miniaturized, and automated delivery system that allows for the collection, processing, reproduction, and dispensing of coloring products having a custom target color selected by a user. The system is refillable and freely reusable. The system also allows for high-precision dosing, thus allowing for the delivery of the amount of coloring product needed for application by the user to themselves or another substrate.
[0002] The present invention also relates to a method for delivering a colored product having a target color using a delivery system according to the present invention.
[0003] The delivery system of the present invention may be used in any application requiring the dispensing of a colored product having a target color. [Background technology]
[0004] When researching and purchasing cosmetic products, consumers today are becoming increasingly demanding and sensitive to various criteria regarding the selection of new products, for example, they must respect the environment and the user's skin.
[0005] For this reason, companies in the cosmetics sector must now offer a range of products that meet these criteria, while offering consumers a wide range of choice and allowing them to find a shade that suits their skin or their preferences.
[0006] Despite some progress in this area, overall, companies in the cosmetics sector are still struggling to move in this direction. The cosmetics sector is, for example, the second most polluting in France, mainly due to the following reasons: -Unsuitable products, including plastic boxes (main source of contamination) and suboptimal containers (30% of the material is lost). -Excessive consumption with significant environmental impacts (e.g., 1 billion lipsticks purchased and therefore discarded per year).
[0007] It is also important to note that cosmetics often target specific skin types, specifically Caucasians, leaving behind skin with high or low melanin levels.
[0008] There is therefore a need to provide products that offer a unique and personalized experience to their users without discrimination, while being ecologically responsible, i.e. respectful of their skin and the environment, by limiting overconsumption and therefore waste and loss of materials.
[0009] For example, refillable lipsticks are known whose boxes are unique and whose sticks are sold in the form of refills, as is the case in particular for Rouge G lipsticks by Guerlain® or for lipsticks by La Bouche Rouge®. However, if the user wishes to change the color, the purchase of refills of different colors remains necessary in this type of system.
[0010] Dispensers that allow the delivery of cosmetic compositions with variable color are also known. Application FR3029088, for example, relates to a delivery system, particularly for makeup products, that allows consumers to customize the products they use. The latter provides a delivery system consisting of a case and at least two compartments accommodated in the case, each compartment having a movable piston and a delivery nozzle through which a base product emerges. Mixtures are created from different base products, possibly with different colors, so that the color, shade, or even coverage of the mixture can be customized, and the mixture is collected in a cup containing a static mixer.
[0011] Patent application WO2014043018 discloses a system for customizing the coloring of cosmetics, specifically matching the color of the user's skin tone. The process involves analyzing the skin tone using a spectrophotometer and a camera, and then sending mixing and pouring instructions to a remote blending machine that creates a mixture from a series of base products and delivers it to a container.
[0012] However, several drawbacks arise from these systems. First, they provide a mixture recovery device that forces the user to use their finger or another means of external application. Additionally, the metering system does not necessarily allow for the delivery of a single dose, resulting in product loss if too much is delivered, and conversely, if not enough is delivered, the process must be repeated, again resulting in product loss. The user still must go to a point of sale to create their custom mixture or wait for the product to be delivered.
[0013] The object of the present invention is to meet this need by proposing a portable, miniaturized and automated delivery system that makes it possible to collect, process, reproduce and deliver colored products with a custom target color selected by the user, the delivery system being refillable with raw materials and freely reusable, thus reducing waste, and the system of the present invention also allows for a great precision of injection, thus allowing the delivery of the amount required for one application without any loss of product. Summary of the Invention
[0014] Accordingly, the present invention relates to a system for delivering a colored product having a target color.
[0015] According to one aspect, the present invention relates to a system for delivering a colored product having a target color, the system comprising an application device for the colored product, at least two reservoirs each containing a respective base product, a calculation module configured to receive information regarding the target color and determine the composition of the colored product from the base products contained in the reservoirs, at least one metering device in fluid communication with the reservoirs configured to place in the application device a dose of each of the base products corresponding to said determined composition, and a mixing device configured to mix the doses of base products placed in the application device.
[0016] The present invention advantageously allows for the recovery, processing, reproduction, and distribution of colored products having a target color.
[0017] In certain embodiments, the delivery system may further comprise one or more of the following characteristics, taken individually or according to all possible technical combinations:
[0018] In one embodiment, the delivery system further comprises a color sensor capable of scanning and decomposing the target color and transmitting the target color information to the calculation module. Such a configuration of the delivery system described above allows for the target color to be collected and processed. Data regarding the target color emitted by the color sensor is transmitted to the calculation module, which transmits instructions to the control means of the metering device regarding the amount of each base product required to reproduce a colored product having the target color. This is therefore a particularly advantageous configuration, as it allows a user to select and reproduce a custom target color.
[0019] In an alternative embodiment, the delivery system further comprises a computer program capable of communicating the target color to the calculation module. Such a configuration of the delivery system is advantageous because it allows the user to select the target color directly via the computer program, which may be a mobile device such as a smartphone, tablet, or personal computer. Such a configuration also allows the user to directly input their own data, such as skin tone, physical characteristics, personality, habits, or coordination with other makeup, via the computer program.
[0020] In one embodiment, the application device described above comprises an applicator capable of receiving each dose of the base product and a motor capable of moving the applicator to successively position it opposite the or each metering device and opposite the mixing device.
[0021] In one embodiment, the aforementioned application device comprises a hood forming a cap of the delivery device, the hood comprising a mounting device for a case housing the or each metering device and mixing device, the mounting device being configured to ensure a predetermined positioning of the applicator relative to the metering device and mixing device.
[0022] According to these configurations, the coloring product is delivered directly to the applicator described above. These embodiments therefore advantageously allow the user to apply the delivered coloring product to themselves or another substrate.
[0023] In one embodiment, the aforementioned metering devices and mixing devices are distributed around the applicator, and a motor can move the applicator in rotation according to a defined angular displacement in order to position it successively opposite the or each metering device and opposite the mixing device.
[0024] In one embodiment, the delivery system further comprises an additional reservoir containing a cleaning agent. Such a configuration of the delivery system is advantageous as it allows for eliminating residues of the delivered mixture remaining on the applicator, and the cleaning liquid is applied by metering it onto the applicator.
[0025] In one embodiment, the delivery system comprises, for each reservoir containing a base product, a respective metering device in fluid communication with said reservoir, configured to deposit a dose of the base product contained in said reservoir into the application device. Such a configuration of the delivery system is advantageous as it allows for variation of the volume delivered from each reservoir, thus allowing for improved dosing of the base product as needed.
[0026] In one embodiment, the or each metering device comprises a pre-metering chamber configured to be in selective fluid communication with one of the base product reservoirs, a metering member capable of extracting a predetermined amount of base product from the pre-metering chamber and movable between the pre-metering chamber and the application device, and a metering member displacement means capable of imparting a forward and backward movement of the metering member between the pre-metering chamber and the application device to place a dose of base product corresponding to said determined composition in the application device.
[0027] In one embodiment, the reservoir, the or each metering device and the mixing device are housed in the same case.
[0028] In one embodiment, with each forward and backward movement, the metering member can deposit a predetermined amount of base product into the applicator device, between 0.07 μl and 150 ml.
[0029] In one embodiment, each base product is a pigment cosmetic formulation.
[0030] In one embodiment, the reservoir is a removable cartridge. Such an arrangement is advantageous because it allows the user to remove the cartridges once they are empty. Such an arrangement also allows the base product cartridge to be changed or refilled.
[0031] In one embodiment, the mixing device comprises a motorized rotating brush that can be placed in the applicator device, such a configuration allowing the mixing device to homogenize the mixture of doses of base product placed in the applicator device.
[0032] In one embodiment, the delivery system includes an energy supply device. In such a configuration, the attachment device ensures electrical contact between the energy supply device and the displacement motor of the applicator.
[0033] In one embodiment, the delivery system comprises means for locking the motor in a configuration separated from the hood relative to the case. Such a configuration is advantageous as it prevents displacement of the applicator and therefore allows for easier application by the user.
[0034] According to another aspect, the present invention provides a method for customized delivery of a colored product having a target color using the delivery system of the present invention, comprising: - scanning and separating a target color using a color sensor; - receiving information regarding a target color using a computing device; - determining the composition of the coloring product from a base product contained in a reservoir; - placing, using the or each metering device, a respective dose of base product corresponding to said determined composition into the application device; - mixing the doses of base product placed in the application device using a mixing device; The present invention relates to a method comprising:
[0035] In one embodiment, the application device is unlocked after mixing the dose of base product, allowing the user to apply the color product to themselves or another substrate.
[0036] In one embodiment, the application device is placed in its original position after application of the coloring product by the user.
[0037] In one embodiment, a cleaning agent is applied to the applicator, such an arrangement being advantageous as it makes it possible to eliminate any residue of color product remaining on the applicator.
[0038] With these configurations, the steps described above can be repeated to reproduce colored products having the same or different colors.
[0039] In another aspect, the present invention relates to the use of the delivery system of the present invention for applications requiring the delivery of a colored product having a target color.
[0040] In one embodiment, the delivery system of the present invention is used in cosmetic applications requiring delivery of a colored product having a target color.
[0041] In one embodiment, the delivery system of the present invention is used in a variety of applications requiring delivery of a colored product having a target color.
[0042] definition For purposes of the present invention, the following terms are defined as follows:
[0043] - "Bluetooth" refers to a wireless communication protocol intended to connect mobile devices to each other. Bluetooth has a shorter range compared to WiFi.
[0044] - "primary colors" refers to colors that cannot be reproduced in a color synthesis system by mixing other colors. Colors are said to be primary colors of each other if they cannot be reproduced by mixing other colors.
[0045] - "Dose" relates to one exact amount of base product, expressed in μl.
[0046] - "Renewable materials" refers to natural resources whose reserves can be replenished in the short term on a human scale by regenerating themselves at least as fast as they are consumed.
[0047] "Pigment" relates to a mineral or organic coloring substance that is insoluble in the medium it colors.
[0048] - "Coloring products" relates to coloring substances or materials used in cosmetics, dyeing, painting, etc.
[0049] - "QR Code" is an acronym for "Quick Response Code" or 2D barcode. QR codes are readable by smartphones and tablets and can store more information than horizontal barcodes.
[0050] - "Additive synthesis" refers to the process of combining the light of several colored sources to obtain any colored light of a given color gamut. Additive synthesis generally uses three colored lights: one red, one green, and one blue.
[0051] - "Subtractive synthesis" refers to a process that consists in combining the absorption of at least three pigments to obtain the full range of shades. The term subtractive comes from the fact that a colored object absorbs part of the incident light, thus subtracting part of the light spectrum from the incident light.
[0052] - "WiFi" refers to a set of wireless communication protocols that comply with the standards of the IEEE 802.11 group (ISO / IEC 8802-11). A WiFi network allows several computing devices (computers, routers, smartphones, internet modems, etc.) to be connected in a computer network by radio waves to enable data transmission between them. [Brief explanation of the drawings]
[0053] [Figure 1] 1 is a schematic perspective view of a delivery system of the present invention with some components removed. FIG. [Figure 2] 1 is a schematic diagram of a delivery system of the present invention with some components removed. [Figure 3] One of the reservoirs is shown partially in isolation. [Figure 4] One of the metering devices is shown in isolation. [Figure 5] One of the metering devices and one of the reservoirs are shown in isolation. [Figure 6] One of the metering devices is shown in isolation in communication with one of the reservoirs. [Figure 7] 1 shows a breakdown of the injection steps that allow delivery of the base product. [Figure 8] 1 shows a mixing device and a portion of the applicator in isolation. [Figure 9] The coating device is shown in isolation. [Figure 10] FIG. 1 is an exploded view of the delivery system of the present invention with some components removed. DETAILED DESCRIPTION OF THE INVENTION
[0054] The following description will be better understood by reading the drawings. For the purpose of illustrating the invention, devices are shown in preferred embodiments. However, it should be understood that the application is not limited to the precise arrangement, structure, characteristics, embodiments, and appearance shown. The drawings are not to scale and are not intended to limit the scope of the claims to the embodiments shown in these drawings. Thus, when features recited in a claim are followed by a reference number, it should be understood that such reference number is included solely for the purpose of improving understanding of the claims and does not in any way limit the scope of these claims.
[0055] The embodiments shown elsewhere in the description apply mutatis mutandis to the entire description, and in particular to the entire embodiments shown in the figures of this application.
[0056] system The present invention relates to a delivery system (1) for a colored product having a target color, - an application device for the coloring product (5), at least two reservoirs (31, 32, ...) each containing a respective base product; a calculation module (18) configured to receive information about said target color and to determine the composition of the colored product from the base products contained in the reservoirs (31, 32, ...); - at least one metering device (4) in fluid communication with the reservoirs (31, 32, ...) configured to place in the application device (5) respective doses of the base product corresponding to said determined compositions; a mixing device (4') adapted to mix the doses of base product placed in the application device (5); The present invention is characterized by comprising:
[0057] 1 and 2 show an embodiment according to the present invention in which a delivery system (1) comprises a case (2) with an energy supply device (19) located in the lower part of the case (2) (as shown in FIG. 2). The case (2) has an elongated shape along its longitudinal axis. As can be seen in FIG. 1, the delivery system (1) also includes at least two reservoirs (31, 32, ...) received in the case (2). The delivery system (1) further comprises an additional reservoir (3'). There are at least two metering devices (4) in fluid communication with the reservoirs (31, 32, ..., 3'), and a mixing device (4'). As shown in FIG. 1, the delivery system (1) is provided at its upper part with an application device (5) forming a cap for the delivery system (1). The application device (5) is elongated along its longitudinal axis and is provided with an applicator (12) directed toward the interior of the case (2). The reservoirs (31, 32, ..., 3'), the metering device (4), and the mixing device (4') are arranged in a circle around the applicator (12). The delivery system (1) is provided at its bottom with a color sensor (6) that can scan the target color and transmit the information of the target color to a calculation module (18) located at the bottom of the case (2) as shown in Figure 2.
[0058] According to one embodiment, the delivery system (1) consists of a single device that operates independently. In one embodiment, the delivery system (1) can be handled with one hand.
[0059] According to another embodiment, the delivery system (1) can be controlled using a device that operates by interacting with the delivery system (1). In one embodiment, this can be a computer program that communicates with and controls the delivery system (1). In one embodiment, the delivery system (1) is controlled by a computer program that is embedded in the delivery system (1). In one embodiment, the delivery system (1) is controlled by a computer program external to the delivery system (1). In one embodiment, the delivery system (1) is configured to communicate with the computer program. In one embodiment, the delivery system (1) is configured to communicate with the computer program via a wireless protocol. In one embodiment, the computer program is a mobile device such as a smartphone, tablet, or personal computer. In one embodiment, the delivery system (1) is equipped with a Bluetooth chip. In one embodiment, the delivery system (1) is equipped with a WiFi connectivity system.
[0060] According to one embodiment, the delivery system (1) is capable of processing, reproducing, and delivering mixtures from base products. In one embodiment, the dispensed mixture is a personalized cosmetic formulation. In one embodiment, the dispensed mixture is a color product having a custom-made selected target color. In one embodiment, a color product consisting of at least two base products is delivered in an adjustable ratio. In one embodiment, a color product consisting of at least three base products is delivered in an adjustable ratio. In one embodiment, a color product consisting of at least four base products is delivered in an adjustable ratio. In one embodiment, a color product consisting of at least five base products is delivered in an adjustable ratio. In a preferred embodiment, the dispensed color product is a custom-made cosmetic formulation of selected pigments.
[0061] In one embodiment, the delivery system is capable of processing, replicating, and delivering eye shadow tints. In one embodiment, the delivery system is capable of processing, replicating, and delivering cheek tints. In one embodiment, the delivery system is capable of processing, replicating, and delivering nail polish tints. In one embodiment, the delivery system is capable of processing, replicating, and delivering foundation tints. In a preferred embodiment, the delivery system is capable of processing, replicating, and delivering lipstick tints.
[0062] reservoir Figure 3 shows one of the reservoirs (3) in isolation, with a body (3a) and a smooth head (3b). To provide sufficient liquid flow, the top of the reservoir is actuated by a spring (7) that exerts pressure on the liquid along its longitudinal axis.
[0063] According to another embodiment, the reservoirs (31, 32, ...) are fixed. According to a preferred embodiment, the reservoirs (31, 32, ...) are removable cartridges. In one embodiment, once the cartridges are empty, they can be removed.
[0064] In one embodiment, the cartridges are refillable with the base product (11). In one embodiment, the cartridges are containers with caps that can be pierced during their insertion into the case (2). In one embodiment, the cartridges have a volume between 0.5 ml and 1000 ml.
[0065] According to another embodiment, the cartridges are provided with a removable closure device, such as a cap that can be unscrewed, that allows them to be opened and closed. In this embodiment, the cartridges have a screw thread on their head (3b) and can be screwed inside the case (2).
[0066] In another embodiment, the cartridges have lugs on their heads (3b), in which embodiment the cartridges can be fastened inside the case (2).
[0067] According to one embodiment, the cartridge is introduced through the top of said case (2) by simply pushing on the top of said case (2) to unlock the cartridge access airlock. In one embodiment, the cartridge is introduced through the top of said case (2) by unscrewing it.
[0068] In another embodiment, the cartridge is introduced through the bottom of said case (2) by simply pushing on the bottom of said case (2) to unlock the cartridge access airlock. In one embodiment, the cartridge is introduced through the bottom of said case (2) by unscrewing it.
[0069] According to one embodiment, the cartridge is completely opaque, in this embodiment a sensor located inside the cartridge allows for determination of the level of base product remaining.
[0070] In another embodiment, the cartridge has at least a transparent wall region. In one embodiment, the cartridge has its walls entirely transparent. This embodiment allows the user to see the level of base product remaining.
[0071] According to one embodiment, the delivery system (1) has an intuitive cartridge refilling system that allows replacing only the depleted base product. In one embodiment, each cartridge has a unique QR code printed on its surface and readable by a computer program located inside or outside said case (2). In one embodiment, each cartridge has a unique RFID chip attached to its surface and readable by a computer program located inside or outside said case (2). In one embodiment, each cartridge has a unique NFC chip attached to its surface and readable by a computer program located inside or outside said case (2). These embodiments allow the user to know various information about said cartridges, such as the base product level, traceability, or even expiration date after opening.
[0072] In another embodiment, the cartridges are linked to one another. In this embodiment, there is a single QR code for all cartridges. In this embodiment, there is a single RFID chip for all cartridges. In this embodiment, there is a single NFC chip for all cartridges.
[0073] According to one embodiment, each of the reservoirs (31, 32, ...) contains a respective base product (111, 112, ...). In one embodiment, the base product is a cosmetic formulation. In one embodiment, the base product is a pigment cosmetic formulation. In one embodiment, the base product is a pigment formulation.
[0074] According to one embodiment, the delivery system (1) further comprises an additional reservoir (3') containing a cleaning agent. In this embodiment, the cleaning liquid is applied by metering with the applicator (12) in order to eliminate any residue of the dispensed mixture remaining on the applicator. In this embodiment, a waste chamber is placed below said applicator (12).
[0075] In another embodiment, the additional reservoir (3') containing the cleaning agent is under pressure. In this embodiment, the additional reservoir (3') containing the cleaning agent is provided with a valve in fluid communication with the cleaning agent. When the valve is actuated, the cleaning agent is then injected into the application device. An applicator is positioned before the mixing device, and the latter is actuated to eliminate any residues of the delivered mixture remaining on the applicator and expel them into a waste container.
[0076] In another embodiment, the cleaning agent is flowed into the applicator (12). In this embodiment, an additional reservoir (3') containing the cleaning agent is located inside the applicator and in fluid communication with the applicator. The liquid flow is controlled by a valve. Once injected into the applicator, the applicator is positioned before the mixing device, and the latter is activated to eliminate any residue of the delivered mixture remaining on the applicator and to expel them into a waste container.
[0077] In another embodiment, the applicator (12) can move inside an additional reservoir (3') containing the cleaning agent. The applicator is positioned before the mixing device, the latter being activated to expel any residues of the delivered mixture remaining on the applicator and to expel them into a waste container.
[0078] In another embodiment, the additional reservoir (3') contains a liquid with specific characteristics that allows it to remove residual pigments from the delivered mixture that is later discharged into a waste container.
[0079] Weighing device Figure 4 shows one of the metering devices (4) in isolation. The metering device comprises a pre-metering chamber (8) into which the reservoir head is inserted. The metering device also comprises a metering rod (9) movable between the pre-metering chamber and the application device (5). Said metering rod is in communication with a displacement means (10) comprising a gear and rack arrangement and capable of imparting a forward and backward movement of said rod between said pre-metering chamber (8) and the application device (5). The displacement means (10) is actuated using a first motor (14), not shown here, which is controlled by a control means, not shown here.
[0080] Figures 5 and 6 show in isolation one of the metering devices in communication with the reservoir (3).
[0081] According to a preferred embodiment, the or each metering device (4) comprises: a pre-metering chamber (8) configured to be in selective fluid communication with one of the reservoirs (31, 32, ..., 3') of base product; a metering member (9) capable of extracting a predetermined amount of base product from the pre-metering chamber and movable between the pre-metering chamber and the application device; - displacement means (10) of the metering element capable of imparting a predetermined movement to the metering element between the pre-metering chamber and the application device in order to place a dose of base product corresponding to said determined composition in the application device; Equipped with.
[0082] Figures 7A, 7B, and 7C show a breakdown of the injection step that allows the delivery of the base product (11) to the application device (5), not shown here. Thus, as shown in Figure 7A, in a first waiting phase, the metering rod (9) blocks the arrival of the base product (11) in the pre-measuring chamber (8). As can be seen in Figure 7B, this is followed by an initiation phase in which the rod retracts to allow a predetermined amount of base product (11) to enter the pre-measuring chamber (8). Figure 7C shows a placement phase in which the rod advances across the pre-measuring chamber (8), picks up a predetermined amount of base product (11), and places it in the application device (5), not shown here.
[0083] According to one embodiment, the metering member (9) is a metering rod. In one embodiment, the predetermined movement is a forward and backward movement. In one embodiment, the metering rod (9) deposits a predetermined amount of the base product (11) with each reciprocating movement. In one embodiment, the metering rod (9) can deposit a quantity of the base product (11) in the application device ranging from 0.07 μl to 150 ml. In one embodiment, the metering rod (9) can deposit a quantity of the base product (11) in the application device ranging from 0.07 μl to 100 ml. In one embodiment, the metering rod (9) can deposit a quantity of the base product (11) in the application device ranging from 0.07 μl to 50 ml. In one embodiment, the metering rod (9) can deposit a quantity of the base product (11) in the application device ranging from 10 μl to 50 ml. In one embodiment, the metering rod (9) can deposit a quantity of the base product (11) in the application device ranging from 0.07 μl to 10 ml.
[0084] According to one embodiment, the metering devices (4) are controlled separately by control means that allow for modification of the volume delivered from each reservoir (31, 32, ..., 3') and improvement of the injection of the base product if necessary.
[0085] In one embodiment, the metering device is the same for each reservoir (31, 32, ..., 3'). In this embodiment, the metering device consists of a metering rod that advances and retracts between the reservoirs (31, 32, ..., 3') and the applicator (5). During injection, the cartridge is placed in front of the metering device, which takes out a predetermined number of doses and places them in the applicator.
[0086] In another embodiment, the metering device is a pump in selective fluid communication with one of the reservoirs (31, 32, ..., 3') of the base product. During injection, the pump withdraws a predetermined dose of the base product from one of the reservoirs (31, 32, ..., 3') and deposits it into the applicator device.
[0087] In one embodiment, the metering device is a peristaltic pump.In one embodiment, the metering device is a piezoelectric pump.
[0088] In another embodiment, the metering device is provided with a valve in selective fluid communication with one of the reservoirs (31, 32, ..., 3') of base product, in which the reservoirs (31, 32, ..., 3') are under pressure and actuation of the valve ejects the base product into the application device (5).
[0089] In one embodiment, the metering device is a syringe. In this embodiment, the body of the syringe is one of the reservoirs (31, 32, ..., 3'). During injection, an actuator pushes the plunger of the syringe. The base product is then placed in the applicator device.
[0090] In one embodiment, the metering device is a gear wheel located in the pre-metering chamber. As it rotates, the wheel picks up a dose of the formulation and places it into the applicator.
[0091] In one embodiment, the metering device is a nozzle equipped with a heating resistor.
[0092] In another embodiment, the metering device is a valve that can control the opening and closing of the metering conduit. Alternatively, the valve is replaced by a reciprocating plate.
[0093] mixing device Figure 8 shows in isolation the mixing device (4') and part of the applicator (12) and the end piece of said applicator (12). Mixing is carried out using a motorized rotating brush (13) that can be brought into contact with the applicator (12). The movement of said brush results in homogenization of the various predetermined amounts of base product (11) previously deposited by the metering device (4) during the various metering steps.
[0094] According to one embodiment, the mixing device (4') comprises an electrically driven rotating brush (13) which can be brought into contact with the application device (5) in order to homogenize the mixture.
[0095] According to one embodiment, the movement and speed of the brush (13) are calculated to collect the mixture and avoid splashing. In one embodiment, the aforementioned rotating brush has a rotation speed of between 35 rpm and 370 rpm.
[0096] In another embodiment, the mixing device consists of a rod that can move in a circle or along a predetermined path on the application device (5).
[0097] In another embodiment, the mixing device is a ring with one or more threads arranged radially. In this embodiment, the ring is positioned on the applicator (5). The ring then rotates around its axis. By rotating, the spokes of the ring homogenize the mixture placed on the applicator (5).
[0098] In another embodiment, the mixing device (4') is a propeller mixer. In this embodiment, the mixing device (4') consists of one or more blades that rotate in one or two directions. In this embodiment, mixing takes place in an application chamber into which the various components of the mixture are injected.
[0099] In another embodiment, the mixing device (4') is a centrifugal mixer, in which the various components of the mixture are poured into a coating chamber, which then rotates at high speed itself in order to homogenize the various components of the mixture.
[0100] In another embodiment, the applicator (12) can itself rotate within an application chamber into which the various components of the mixture are injected.
[0101] In another embodiment, the mixing device (4') is a static mixer. In this embodiment, the metering devices are in fluid communication with each other via the static mixer. By passing through the static mixer, the blend is homogenized.
[0102] Coating Equipment FIG. 9 shows the application device (5) in isolation. The application device includes an applicator (12) and a hood (15) that forms a cap for the delivery device (1). The hood includes a motor (16) that communicates with the applicator (12). The hood of the application device (5) also includes a mounting device (17) for the case (2), which is configured to ensure a predetermined positioning of the applicator (12) relative to the metering device (4) and mixing device (4') housed in the case. More specifically, the mounting device (17) includes two pairs of magnets positioned to serve as mechanical coding. In the first pair, the south pole on the hood faces the north pole on the case, while in the second pair, the north pole on the hood faces the south pole on the case, ensuring only the predetermined position of the applicator. A magnetic element located at the bottom of the hood forms a protrusion at the base of the hood. Two other magnetic elements located on the top of the case are housed in cavities to allow the magnetic elements located on the hood to be inserted therein and thus fix the hood adjacently. The two pairs of magnetized elements also function as contacts for passing current from said case (2) to the applicator (5).
[0103] According to one embodiment, the application device (5) comprises an applicator (12) capable of receiving each dose of the base product, a motor (16) capable of moving said applicator (12) in order to position it successively opposite the or each metering device (4) and opposite the mixing device (4').
[0104] According to one embodiment, the application device (5) is located in the upper part of said case (2). In one embodiment, the application device (5) is located in the lower part of said case (2). In one embodiment, the application device (5) comprises a hood (15) forming a cap for the delivery device (1), the hood (15) comprising an attachment device (17) to the case (2) containing the metering device (4) and the mixing device (4'), configured to ensure a predetermined positioning of the applicator (12) relative to the metering device (4) and the mixing device (4').
[0105] According to one embodiment, the metering device (4) and the mixing device (4') are arranged one above the other parallel to the applicator (12), and the motor (16) is able to move the applicator (12) from top to bottom along a defined longitudinal displacement in order to position it successively opposite the or each metering device (4) and opposite the mixing device (4').
[0106] According to a preferred embodiment, the metering device (4) and the mixing device (4') are arranged around the aforementioned applicator (12), and the motor (16) is capable of moving the applicator (12) in rotation according to a defined angular displacement in order to position it successively opposite the or each metering device (4) and opposite the mixing device (4').
[0107] In one embodiment, the application device (5) comprises means for locking the motor (16) in a configuration separated from the hood (15) relative to the case (2) to prevent displacement of the applicator (12).
[0108] In another embodiment, the delivery device is integrated into the case 2. In this embodiment, the motor 16 can move the applicator 12 from top to bottom along a defined longitudinal displacement. In this embodiment, the delivery system includes an orifice through which the applicator 12 can pass vertically.
[0109] According to one embodiment, the application device further comprises an application chamber capable of receiving a variety of base products.
[0110] According to one embodiment, the applicator (12) can have any geometric shape as desired. In one embodiment, the applicator (12) is cylindrical. In one embodiment, the applicator (12) is rectangular. According to a preferred embodiment, the applicator (12) is elongated along its longitudinal axis and is directed toward the interior of the aforementioned case (2). In one embodiment, the applicator (12) is elongated and cylindrical. In one embodiment, the applicator (12) has a tapered end. In one embodiment, the applicator (12) has a conical end. In one embodiment, the applicator (12) has a brush-shaped end.
[0111] In a preferred embodiment, the applicator (12) is in the shape of a lipstick stick.
[0112] In one embodiment, the applicator (12) has a length of 2 to 10 cm. In one embodiment, the applicator (12) has a length of 2 to 7 cm. In one embodiment, the applicator (12) has a length of 2 to 6 cm. In one embodiment, the applicator (12) has a length of 5 to 7 cm. In one embodiment, the applicator (12) has a length of 5 to 8 cm. In one embodiment, the applicator (12) has a length of 3 to 6 cm. In one embodiment, the applicator (12) has a length of 4 to 5 cm. In one embodiment, the applicator (12) has a length of 4 to 6 cm.
[0113] In one embodiment, the applicator (12) has a diameter of 0.2 to 7 cm. In one embodiment, the applicator (12) has a diameter of 0.2 to 2 cm. In one embodiment, the applicator (12) has a diameter of 0.4 to 0.6 cm. In one embodiment, the applicator (12) has a diameter of 0.5 to 1 cm. In one embodiment, the applicator (12) has a diameter of 1 to 6 cm. In one embodiment, the applicator (12) has a diameter of 1 to 7 cm. In one embodiment, the applicator (12) has a diameter of 2 to 7 cm. In one embodiment, the applicator (12) has a diameter of 2 to 4 cm. In one embodiment, the applicator (12) has a diameter of 3 to 5 cm. In one embodiment, the applicator (12) has a diameter of 4 to 6 cm.
[0114] According to one embodiment, the applicator (12) may be completely removable, allowing the applicator to be replaced with an applicator of a different shape and / or size as needed.
[0115] According to another embodiment, the applicator (12) may have a removable end piece, in which case the end piece may be replaced with an end piece of a different shape and / or size as desired.
[0116] In one embodiment, the end piece can be unscrewed, in which the applicator has threads on its end that allow end pieces of different shapes and / or sizes to be screwed on as needed.
[0117] In one embodiment, the end piece is tapered in shape, in one embodiment, the end piece is conical in shape, in one embodiment, the end piece is brush-shaped.
[0118] Color Sensor and Calculation Module According to one embodiment, the color sensor (6) can scan and process information on a target color selected by a user. In this embodiment, the scanned color information is broken down into the ratios of red, green, and blue primary colors and white and black, which correspond to the primary colors of additive light. These must then be corrected to match the base colors required to reproduce the hue.
[0119] According to one embodiment, these operations are performed by an on-board calculation module (18). In this embodiment, the calculation module (18) is configured to receive data regarding the target color transmitted by the color sensor (6). In this embodiment, the calculation module adapts the target color data received by the sensor to the base color. In this embodiment, the calculation module (18) transmits instructions to the control means of the metering device regarding the amount of each base product required to reproduce a colored product having the target color selected by the user.
[0120] According to one embodiment, the delivery system (1) further comprises a computer program. In this embodiment, the computer program is a mobile device such as a smartphone, tablet, or personal computer. In this embodiment, the calculation module (18) is configured to receive data relating to the color selected by the user directly via the computer program. In this embodiment, the calculation module (18) is configured to receive user data that may be input via the computer program, such as skin tone, physical characteristics, personality, habits, or coordination with other makeup.
[0121] In one embodiment, the color sensor (6) is a color scanner. In one embodiment, the color sensor (6) is a spectrophotometer. In one embodiment, the color sensor (6) is a CCD sensor.
[0122] case Figure 10 shows the positioning of some elements of the delivery system of the present invention in an exploded view. Specifically, Figure 10 shows the positioning of various components of the metering devices at the top of the case (2). Four metering devices are shown in Figure 10. Figure 10 also shows the positioning of the rotating brush (13) at the top of the case (2). The four metering devices and the rotating brush are positioned to form a circle around the applicator (12). As shown in Figure 10, the computing module (18) and the energy supply device (19) are positioned at the bottom of the case (2).
[0123] According to one embodiment, the case (2) can have any geometric shape as desired. In one embodiment, the case (2) is cylindrical. In one embodiment, the case (2) is rectangular. According to a preferred embodiment, the case (2) is elongated along its longitudinal axis, which facilitates its handling.
[0124] In one embodiment, the case (2) has a length of 5 to 20 cm. In one embodiment, the case (2) has a length of 7 to 13 cm. In one embodiment, the case (2) has a length of 10 to 20 cm.
[0125] In one embodiment, the case (2) has a width of 5 to 15 cm. In one embodiment, the case (2) has a width of 12 to 15 cm. In one embodiment, the case (2) has a width of 2 to 4 cm. In one embodiment, the case (2) has a width of 4 to 8 cm.
[0126] In one embodiment, the case (2) has a height of 3 to 20 cm. In one embodiment, the case (2) has a height of 5 to 10 cm. In one embodiment, the case (2) has a height of 10 to 20 cm.
[0127] According to one embodiment, the case (2) can receive at least two reservoirs (31, 32, ...). In one embodiment, the case (2) comprises two reservoirs (31 and 32). In one embodiment, the case (2) comprises three reservoirs (31-33). In one embodiment, the case (2) comprises four reservoirs (31-34). In one embodiment, the case (2) comprises five reservoirs (31-35). In one embodiment, the case (2) further comprises an additional reservoir (3').
[0128] According to one embodiment, a single metering device is received in the case (2). In one embodiment, the metering device is connected to the reservoirs by a distribution channel. In another embodiment, each of the reservoirs (31, 32, ..., 3') is movable in front of the metering device.
[0129] According to a preferred embodiment, the case (2) can accommodate as many metering devices (4) as there are reservoirs (31, 32, ..., 3'). In one embodiment, the case (2) comprises two metering devices (4). In one embodiment, the case (2) comprises three metering devices (4). In one embodiment, the case (2) comprises four metering devices (4). In one embodiment, the case (2) comprises five metering devices (4). In one embodiment, the case (2) comprises six metering devices (4).
[0130] According to one embodiment, the case (2) is capable of receiving a mixing device (4').
[0131] According to one embodiment, the reservoirs (31, 32, ..., 3'), the metering device (4) and the mixing device (4') are arranged to form a circle around said longitudinal axis.
[0132] According to one embodiment, the case (2) is provided with an energy supply device (19). In this embodiment, a mounting device (17) ensures electrical contact between the energy supply device (19) and the motor (16) for the displacement of the applicator.
[0133] According to one embodiment, the case (2) is provided with a color sensor (6). In one embodiment, the color sensor (6) is located at the bottom of said case (2). In one embodiment, the color sensor (6) is located at the top of said case (2). In another embodiment, the color sensor (6) is located at the side of said case (2).
[0134] According to one embodiment, the case (2) is provided with a screen display, in which the user has the means to preview the prepared mixture before application, to modify it if necessary, and also to obtain information about the usage level of the battery and cartridge.
[0135] According to one embodiment, the case (2) is made of a plastic material. In one embodiment, the case (2) is made of aluminum. In one embodiment, the case (2) is made of glass. According to a preferred embodiment, the case (2) is made of renewable materials. In one embodiment, the case (2) is made of plant-based materials. In one embodiment, the case (2) is made of bamboo.
[0136] Method for delivering a colored product having a target color - Patent application The present invention also relates to a method for the customized delivery of a colored product having a target color using a delivery system (1) as described above, comprising the steps of: - scanning and separating the target color using a color sensor (6); - receiving information about the target color using a calculation module (18); - determining the composition of the coloring product from the base product contained in the reservoirs (31, 32, ...); - placing, using the or each metering device (4), a respective dose of base product corresponding to said determined composition in an application device (5); - mixing the doses of base product placed in the application device (5) using the mixing device (4'); The present invention relates to a method comprising:
[0137] In one embodiment, the application device (5) is unlocked after mixing the dose of base product to allow the user to apply the color product.
[0138] In one embodiment, the application device (5) is positioned in its original position after application of the coloring product by the user.
[0139] In one embodiment, a cleaning agent is applied to the applicator (12) to remove any residual color product remaining on the applicator (12).
[0140] In one embodiment, the above steps can be repeated to recreate a colored product having the same or different colors.
[0141] Cosmetic applications According to one embodiment, the delivery system (1) of the present invention is used in cosmetic applications requiring the delivery of a colored product having a target color. In one embodiment, the delivery system (1) of the present invention is used to deliver lipstick, eye shadow, foundation, concealer, blush, powder, lip liner, eye pencil, eyeliner, mascara, nail polish, or hair color tint. In one embodiment, the delivery system (1) of the present invention is used to deliver lipstick tint.
[0142] Other uses In one embodiment, the delivery system (1) of the present invention can be used in different applications requiring the delivery of colored products having a target color. In one embodiment, the delivery system (1) of the present invention is used in the art field, for example, as a brush, marker, pencil, pen, or pastel. In the architectural restoration field, for example, waxes, resins, lacquers, coatings, and varnishes. In the clothing field, for example, dyes and waxes. In one embodiment, the delivery system (1) of the present invention is used in the food sector, for example, for the distribution of food colorants. In one embodiment, the delivery system (1) of the present invention is used in the automotive field, for the delivery of car paints. In one embodiment, the delivery system (1) of the present invention is used in the medical field, for example, for the delivery of custom-made reactive solutions.
[0143] While various embodiments have been described and illustrated, the detailed description should not be construed as being limited thereto. Various modifications may be made to the embodiments by those skilled in the art without departing from the true spirit and scope of the present disclosure, as defined by the appended claims. [Explanation of symbols]
[0144] 1-Delivery System 2-Case 31, 32, … - reservoirs of base products Additional reservoir of 3'-detergent 4-Measuring device 4'-Mixing device 5-Coating equipment 6-Color Sensor 7-Spring 8-Auxiliary Weighing Chamber 9-Measuring Rod 10-Displacement means 11-Based Products 12-Applicator 13-Rotating Brush 14-Motor 15-Food 16-Motor 17-Mounting device 18-Calculation Module 19-Energy Supply Device
Claims
1. A delivery system (1) for a colored product having a target color, said delivery system (1) comprising: - an application device (5) for said coloring product; - at least two reservoirs (3 each containing a respective base product) 1 , 3 2 ,…)and, - receiving information about the target color and storing the reservoir (3 1 , 3 2 a calculation module (18) configured to determine the composition of said colored product from a base product contained in the colored product (...); the reservoir (3) configured to place in the application device (5) a dose of each of the base products corresponding to the determined composition; 1 , 3 2 , ...), and - a mixing device (4') on said application device (5) adapted to mix the doses of base product placed on said application device (5); A delivery system comprising:
2. 2. The delivery system according to claim 1, characterized in that the application device (5) comprises an outer surface, the outer surface having an application portion configured to apply the coloring product to a user, the at least one metering device (4) is configured to place each dose of the base product on the application portion of the outer surface of the application device (5), and the mixing device (4') is configured to mix the doses of base product placed on the outer surface of the application device (5).
3. 3. A delivery system according to claim 1 or claim 2, characterized in that the delivery system (1) further comprises a color sensor (6) capable of scanning and decomposing the target color and communicating information of the target color to the calculation module (18).
4. 4. A delivery system according to any one of claims 1 to 3, characterized in that the delivery system (1) further comprises a computer program capable of communicating the target color information to the calculation module (18).
5. The coating device (5) - an applicator (12) capable of receiving each dose of said base product; a motor (16) capable of moving said applicator (12) to successively position it opposite said metering device (4) and opposite said mixing device (4'); 5. A delivery system according to any one of claims 1 to 4, comprising:
6. 6. A delivery system according to claim 5, characterized in that the application device (5) comprises a hood (15) forming a cap for the delivery system (1), the hood (15) comprising a mounting device (17) for a case (2) containing the metering device (4) and the mixing device (4'), the mounting device (17) being configured to ensure a predetermined positioning of the applicator (12) relative to the metering device (4) and the mixing device (4').
7. 7. A delivery system according to any one of claims 5 to 6, characterized in that the metering devices (4) and the mixing devices (4') are distributed around the applicator (12), and the motor (16) is capable of moving the applicator (12) in rotation according to a defined angular displacement in order to position it successively opposite the metering devices (4) and opposite the mixing devices (4').
8. A delivery system according to any one of the preceding claims, characterized in that the delivery system (1) further comprises an additional reservoir (3') containing a cleaning agent.
9. The delivery system (1) comprises a reservoir (3) containing a base product. 1 , 3 2 9. A delivery system according to any one of claims 1 to 8, characterized in that for each reservoir (3', ..., 3') a respective metering device (4) in fluid communication with the reservoir, configured to deposit a dose of base product contained in the reservoir into the application device (5).
10. The metering device (4) - the reservoir of base product (3 1 , 3 2 a pre-metering chamber (8) configured to be in selective fluid communication with one of the a metering member (9) capable of extracting a predetermined amount of base product from said pre-metering chamber and movable between said pre-metering chamber (8) and said application device (5); - displacement means (10) of said metering element (9) capable of imparting a predetermined movement to said metering element (9) between said pre-metering chamber (8) and said application device (5) in order to place in said application device (5) a dose of said base product corresponding to said determined composition; 10. A delivery system according to any one of claims 1 to 9, comprising:
11. The reservoir (3 1 , 3 2 11. A delivery system according to any one of claims 1 to 10, characterized in that the metering device (4) and the mixing device (4') are housed in the same case (2).
12. 12. A delivery system according to any one of claims 1 to 11, characterized in that each base product is a pigment cosmetic formulation.
13. The reservoir (3 1 , 3 2 13. A delivery system according to any one of claims 1 to 12, characterized in that the cartridges (3', 3', 3') are removable cartridges.
14. 14. A delivery system according to any one of claims 1 to 13, characterized in that the mixing device (4') comprises an electrically driven rotating brush (13) which can be brought into contact with the application device (5) in order to homogenize the mixture of the doses of base product placed on the application device.
15. 7. A delivery system according to claim 6, characterized in that the delivery system (1) contains an energy supply device (19) and the attachment device (17) ensures an electrical contact between the energy supply device (19) and a motor (16) for the displacement of the applicator (12).
16. 16. A method for custom delivery of a colored product having a target color using a delivery system according to any one of claims 1 to 15, comprising: - scanning and resolving said target color using a color sensor (6); - receiving information about said target color using said calculation module (18); - the reservoir (3 1 , 3 2 , ..., 3') determining the composition of said colored product from the base product contained in said - placing, using said metering device (4), a dose of each of said base products corresponding to said determined composition into said application device (5); - mixing, using said mixing device (4'), the doses of base product placed in said application device (5); A method comprising:
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