System and method for dispensing a coloured product
12156582 · 2024-12-03
Assignee
Inventors
Cpc classification
B01F2101/21
PERFORMING OPERATIONS; TRANSPORTING
B01F33/841
PERFORMING OPERATIONS; TRANSPORTING
B01F35/7174
PERFORMING OPERATIONS; TRANSPORTING
B01F33/8442
PERFORMING OPERATIONS; TRANSPORTING
B01F27/118
PERFORMING OPERATIONS; TRANSPORTING
A45D2044/007
HUMAN NECESSITIES
A45D44/005
HUMAN NECESSITIES
B01F33/50112
PERFORMING OPERATIONS; TRANSPORTING
International classification
A45D44/00
HUMAN NECESSITIES
B01F27/118
PERFORMING OPERATIONS; TRANSPORTING
B01F33/501
PERFORMING OPERATIONS; TRANSPORTING
B01F33/84
PERFORMING OPERATIONS; TRANSPORTING
B01F33/841
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A delivery system of a colored product having a target color including an application device of the colored product, at least two reservoirs each containing a respective base product, a calculation module configured to receive the information concerning the target color and to determine a 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 deposit on the application device a dose of each of the base products corresponding to the determined composition, a mixing device configured to mix the doses of base products deposited on the application device. Also, a method for delivering a colored product having a target color via the delivery system. Finally, the use of the system for applications requiring the delivery of a colored product having a target color.
Claims
1. A delivery system of a colored product having a target color, comprising: an application device of the colored product; at least two reservoirs each containing a respective base product; a calculation module configured to receive the information concerning said target color and to determine a 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 deposit on 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 the base products deposited on the application device.
2. The delivery system according to claim 1, further comprising a color sensor able to scan and decompose the target color and to communicate the information of the target color to the calculation module.
3. The delivery system according to claim 1, further comprising a computer program able to communicate the target color information to the calculation module.
4. The delivery system according to claim 1, wherein the application device comprises: an applicator able to receive a dose of each of the base products; and a motor able to move the applicator in order to position it successively opposite the or each metering device and opposite the mixing device.
5. The delivery system according to claim 4, wherein the application device comprises a hood forming a cap of the delivery system, the hood comprising a hanging device on a case housing the or each metering device and the mixing device, the hanging device being configured to ensure a predefined positioning of the applicator relative to the metering and mixing devices.
6. The delivery system according to claim 4, wherein the metering and mixing devices are distributed around the applicator, the motor being able to 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.
7. The delivery system according to claim 1, further comprising an additional reservoir containing a cleaning product.
8. The delivery system according to claim 1, comprising, for each reservoir containing a base product, a respective metering device in fluid communication with said reservoir, which is configured to deposit on the application device a dose of the base product contained in said reservoir.
9. The delivery system according to claim 1, wherein the or each metering device comprises: a pre-metering chamber configured to be in fluid communication in a selective manner with one of the reservoirs of base product; a metering member able to extract from the pre-metering chamber a predetermined quantity of base product and movable between the pre-metering chamber and the application device; a means of displacement of the metering member, able to give the metering member a predetermined movement between the pre-metering chamber and the application device in order to deposit on the application device a dose of the base product corresponding to said determined composition, the means of displacement comprising a gear and rack device and being able to give said metering member a back and forth movement between said pre-metering chamber and the application device.
10. The delivery system according to claim 1, wherein the reservoirs, the or each metering device and the mixing device are housed in the same case.
11. The delivery system according to claim 1, wherein each base product is a pigmented cosmetic formulation.
12. The delivery system according to claim 1, wherein the reservoirs are removable cartridges.
13. The delivery system according to claim 1, wherein the mixing device comprises a motorized rotating brush able to put itself on the application device to homogenize the mixture of the doses of base products deposited on the application device.
14. The delivery system according to claim 5, wherein the delivery system contains an energy supply device and in that the hanging device ensures electrical contact between the energy supply device and the motor for displacement of the applicator.
15. A method of custom-made delivery of a colored product having a target color using the delivery system according to claim 1, comprising the following steps: scanning and decomposing the target color using the color sensor; receiving the information concerning the target color using the calculation module; determining a composition of the colored product from the base products contained in the reservoirs; depositing on the application device, using the or each metering device, a dose of each of the base products corresponding to said determined composition; and mixing the doses of base products deposited on the application device using the mixing device.
16. A delivery system of a colored product having a target color, comprising: an application device of the colored product, the application device comprising an outer surface, the outer surface having an application portion configured to apply the colored product on a user; at least two reservoirs each containing a respective base product; a calculation module configured to receive the information concerning said target color and to determine a 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 deposit on the application portion of the outer surface of 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 the base products deposited on the application portion of the outer surface of the application device.
17. The delivery system according to claim 16, further comprising a color sensor able to scan and decompose the target color and to communicate the information of the target color to the calculation module.
18. The delivery system according to claim 16, further comprising a computer program able to communicate the target color information to the calculation module.
19. The delivery system according to claim 16, wherein the application device comprises: an applicator able to receive a dose of each of the base products, the applicator comprising the application portion; and a motor able to move the applicator in order to position it successively opposite the or each metering device and opposite the mixing device.
20. The delivery system according to claim 19, wherein the metering and mixing devices are distributed around the applicator, the motor being able to 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.
21. The delivery system according to claim 19, wherein the application device comprises a hood forming a cap of the delivery system, the hood comprising a hanging device on a case housing the or each metering device and the mixing device, the hanging device being configured to ensure a predefined positioning of the applicator relative to the metering and mixing devices.
22. The delivery system according to claim 21, wherein the delivery system contains an energy supply device and in that the hanging device ensures electrical contact between the energy supply device and the motor for displacement of the applicator.
23. The delivery system according to claim 16, further comprising an additional reservoir containing a cleaning product.
24. The delivery system according to claim 16, comprising, for each reservoir containing a base product, a respective metering device in fluid communication with said reservoir, which is configured to deposit on the application portion of the outer surface of the application device a dose of the base product contained in said reservoir.
25. The delivery system according to claim 16, wherein the or each metering device comprises: a pre-metering chamber configured to be in fluid communication in a selective manner with one of the reservoirs of base product; a metering member able to extract from the pre-metering chamber a predetermined quantity of base product and movable between the pre-metering chamber and the application device; a means of displacement of the metering member, able to give the metering member a predetermined movement between the pre-metering chamber and the application device in order to deposit on the application portion of the outer surface of the application device a dose of the base product corresponding to said determined composition.
26. The delivery system according to claim 16, wherein the reservoirs, the or each metering device and the mixing device are housed in the same case.
27. The delivery system according to claim 16, wherein each base product is a pigmented cosmetic formulation.
28. The delivery system according to claim 16, wherein the reservoirs are removable cartridges.
29. The delivery system according to claim 16, wherein the mixing device comprises a motorized rotating brush able to put itself on the application portion of the outer surface of the application device to homogenize the mixture of the doses of base products deposited on the application portion of the outer surface of the application device.
30. A method of custom-made delivery of a colored product having a target color using the delivery system according to claim 16, comprising the following steps: scanning and decomposing the target color using the color sensor; receiving the information concerning the target color using the calculation module; determining a composition of the colored product from the base products contained in the reservoirs; depositing on the application portion of the outer surface of the application device, using the or each metering device, a dose of each of the base products corresponding to said determined composition; and mixing the doses of base products deposited on the application portion using the mixing device.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1)
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DETAILED DESCRIPTION
(11) The following description will be better understood from reading the drawings. For the purpose of illustrating the invention, the device is shown in preferred embodiments. It should be understood, however, that the present application is not limited to the precise arrangements, structures, characteristics, embodiments and appearances indicated. The drawings are not drawn to scale and are not intended to limit the scope of the claims to the embodiments shown in these drawings. Therefore, it should be understood that when features mentioned in the claims are followed by references, said references are included only for the purpose of improving the understanding of the claims and in no way limit the scope of these claims.
(12) The embodiments presented in the rest of the description apply mutatis mutandis to the entire description and in particular to the whole of the embodiments described in the figures of the application.
(13) The System
(14) The present invention relates to a delivery system (1) of a colored product having a target color, characterized in that it comprises: an application device (5) of the colored product; at least two reservoirs (3.sub.1, 3.sub.2, . . . ) each containing a respective base product; a calculation module (18) configured to receive the information concerning said target color and to determine a composition of the colored product from the base products contained in the reservoirs (3.sub.1, 3.sub.2, . . . ); at least one metering device (4) in fluid communication with the reservoirs (3.sub.1, 3.sub.2, . . . ), configured to deposit on the application device (5) a dose of each of the base products corresponding to said determined composition; a mixing device (4) configured to mix the doses of the base products deposited on the application device (5).
(15)
(16) According to one embodiment, the delivery system (1) consists of a single device operating independently. In one embodiment, the delivery system (1) can be handled with one hand.
(17) According to another embodiment, the delivery system (1) is controllable using a device that operates by interacting with the delivery system (1). In one embodiment, it may be a computer program which exchanges information with the delivery system (1) to control it. In one embodiment, the delivery system (1) is controlled by a computer program which is integrated into the delivery system (1). In one embodiment, the delivery system (1) is controlled by a computer program which is external to the delivery system (1). In one embodiment, the delivery system (1) is configured to exchange information with the computer program. In one embodiment, the delivery system (1) is configured to exchange information with the computer program by a wireless protocol. In one embodiment, the computer program is a portable terminal such as a smart phone, 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 connection system.
(18) According to one embodiment, the delivery system (1) is able to process, reproduce and deliver a mixture from base products. In one embodiment, the dispensed mixture is a personalized cosmetic formulation. In one embodiment, the dispensed mixture is a colored product having a custom-made selected target color. In one embodiment, a colored product consisting of at least two base products is delivered in adjustable proportions. In one embodiment, a colored product consisting of at least three base products is delivered in adjustable proportions. In one embodiment, a colored product consisting of at least four base products is delivered in adjustable proportions. In one embodiment, a colored product consisting of at least five base products is delivered in adjustable proportions. In a preferred embodiment, the colored product dispensed is a custom-made selected pigmented cosmetic formulation.
(19) In one embodiment, the delivery system is able to process, reproduce and deliver an eyeshadow tint. In one embodiment, the delivery system is able to process, reproduce and deliver a blush tint. In one embodiment, the delivery system is able to process, reproduce and deliver a nail polish tint. In one embodiment, the delivery system is able to process, reproduce and deliver a foundation tint. In a preferred embodiment, the delivery system is able to process, reproduce and deliver a lipstick tint.
(20) Reservoirs
(21)
(22) According to another embodiment, the reservoirs (3.sub.1, 3.sub.2, . . . ) are fixed. According to a preferred embodiment, the reservoirs (3.sub.1, 3.sub.2, . . . ) are removable cartridges. In one embodiment, the cartridges can be removed when they are empty.
(23) In one embodiment, the cartridges are refillable with a base product (11). In one embodiment, the cartridges are capped containers able to be pierced during their insertion into the case (2). In one embodiment, the volume of the cartridges is between 0.5 ml and 1000 ml.
(24) According to another embodiment, the cartridges are provided with a removable closure device, such as a cap which can be unscrewed allowing them to be opened and closed. In this embodiment, the cartridges have a thread on their head (3b) and are able to be screwed inside the case (2).
(25) In another embodiment, the cartridges have a lug on their head (3b). In this embodiment, the cartridges are able to be clipped inside the case (2).
(26) According to one embodiment, the cartridges are introduced through the upper part of said case (2) by a simple pressure on the upper part of said case (2), unlocking the cartridge access airlock. In one embodiment, the cartridges are introduced through the upper part of said case (2) by unscrewing it.
(27) In another embodiment, the cartridges are introduced through the lower part of said case (2) by simply pressing on the lower part of said case (2), unlocking the cartridge access airlock. In one embodiment, the cartridges are introduced through the lower part of said case (2) by unscrewing it.
(28) According to one embodiment, the cartridges are entirely opaque. In this embodiment, a sensor located inside the cartridges allows the determination of the level of base product remaining.
(29) In another embodiment, the cartridges have at least a wall region which is transparent. In one embodiment, the cartridges have their entire wall which is transparent. This embodiment allows a user to view the remaining base product level.
(30) According to one embodiment, the delivery system (1) has an intuitive cartridge reloading system making it possible to replace only the missing base product. In one embodiment, each cartridge has a unique QR code printed on its surface and able to be read by a computer program placed inside or outside said case (2). In one embodiment, each cartridge has a unique RFID chip affixed to its surface and able to be read by a computer program placed inside or outside said case (2). In one embodiment, each cartridge has a unique NFC chip affixed to its surface and able to be read by a computer program placed inside or outside said case (2). These embodiments allow a user to know various information concerning said cartridges, such as the level of base product, the traceability or even the expiration date after opening.
(31) In another embodiment, the cartridges are linked to one another. In this embodiment, a single QR code is present for all the cartridges. In this embodiment, a single RFID chip is present for all the cartridges. In this embodiment, a single NFC chip is present for all the cartridges.
(32) According to one embodiment, each of the reservoirs (3.sub.1, 3.sub.2, . . . ) contains a respective base product (11.sub.1, 11.sub.2, . . . ). In one embodiment, the base product is a cosmetic formulation. In one embodiment, the base product is a pigmented cosmetic formulation. In one embodiment, the base product is a pigmented formulation.
(33) According to one embodiment, the delivery system (1) further comprises an additional reservoir (3) containing a cleaning product. In this embodiment, the cleaning fluid is applied by metering on the applicator (12) in order to eliminate the residues of the dispensed mixture remaining on the applicator. In this embodiment, a waste chamber is disposed below said applicator (12).
(34) In another embodiment, the additional reservoir (3) containing a cleaning product is under pressure. In this embodiment, the additional reservoir (3) containing a cleaning product is provided with a valve in fluid communication with the cleaning product. When the valve is actuated, the cleaning product is then projected on the application device. The applicator positions itself in front of the mixing device and the latter activates itself in order to eliminate the residues of the delivered mixture remaining on the applicator and evacuate them in a waste bin.
(35) In another embodiment, the cleaning product is runned on the applicator (12). In this embodiment, the additional reservoir (3) containing a cleaning product is positioned inside the application device and is in fluid communication with the application device. The liquid flow is controlled by a valve. Once dosed on the application device, the applicator positions itself in front of the mixing device and the latter activates itself in order to eliminate the residues of the delivered mixture remaining on the applicator and evacuate them in a waste bin.
(36) In another embodiment, the applicator (12) is able to move inside the additional reservoir (3) containing a cleaning product. The applicator positions itself in front of the mixing device and the latter activates itself in order to eliminate the residues of the delivered mixture remaining on the applicator and evacuate them in a waste bin.
(37) In another embodiment, the additional reservoir (3) contains a liquid which has the particular feature of being able to depigment the residues of the delivered mixture which are then evacuated into a waste bin.
(38) Metering Device
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(41) According to a preferred embodiment, the or each metering device (4) comprises: a pre-metering chamber (8) configured to be in fluid communication in a selective manner with one of the reservoirs (3.sub.1, 3.sub.2, . . . , 3) of base product; a metering member (9) able to extract from the pre-metering chamber a predetermined quantity of a base product and movable between the pre-metering chamber and the application device; a means of displacement (10) of the metering member, able to give the metering member a predetermined movement between the pre-metering chamber and the application device in order to deposit on the application device a dose of base product corresponding to said determined composition.
(42)
(43) According to one embodiment, the metering member (9) is a metering rod. In one embodiment, the predetermined movement is a back and forth movement. In one embodiment, said metering rod (9) deposits a predetermined quantity of base product (11) each round trip. In one embodiment, said metering rod (9) is able to deposit on the application device a quantity of base product (11) between 0.07 l and 150 ml. In one embodiment, said metering rod (9) is able to deposit on the application device a quantity of base product (11) preferably between 0.07 l and 100 ml. In one embodiment, said metering rod (9) is able to deposit on the application device a quantity of base product (11) between 0.07 l and 50 ml. In one embodiment, said metering rod (9) is able to deposite on the application device a quantity of base product (11) between 10 l and 50 ml. In one embodiment, said metering rod (9) is able to deposit on the application device a quantity of base product (11) between 0.07 l and 10 ml.
(44) According to one embodiment, the metering devices (4) are controlled separately by a control means which makes it possible to vary the volume delivered from each reservoir (3.sub.1, 3.sub.2, . . . , 3) and to refine the dosing of base products according to the needs.
(45) In one embodiment, the metering device is the same for each reservoir (3.sub.1, 3.sub.2, . . . , 3). In this embodiment, the metering device is made up of a metering rod moving back and forth between the reservoirs (3.sub.1, 3.sub.2, . . . , 3) and the application device (5). During dosing, the cartridges place themselves in front of the metering device which retrieves a predefined number of doses and places them on the application device.
(46) In another embodiment, the metering device is a pump in fluid communication in a selective manner with one of the reservoirs (3.sub.1, 3.sub.2, . . . , 3) of base product. During dosing, the pump takes a predefined dose of base product from one of the reservoirs (3.sub.1, 3.sub.2, . . . , 3) and places it on the application device.
(47) In one embodiment, the metering device is a peristaltic pump. In one embodiment, the metering device is a piezoelectric pump.
(48) In another embodiment, the metering device is provided with a valve in fluid communication in a selective manner with one of the reservoirs (3.sub.1, 3.sub.2, . . . , 3) of base product. In this embodiment, the reservoirs (3.sub.1, 3.sub.2, . . . , 3) are under pressure and when the valve is actuated, the base product is projected on the application device (5).
(49) In one embodiment, the metering device is a syringe. In this embodiment, the body of the syringe is one of the reservoirs (3.sub.1, 3.sub.2, . . . , 3). During dosing, an actuator pushes the plunger of the syringe. The base product is then deposited on the application device.
(50) In one embodiment, the metering device is a gear wheel located in a pre-metering chamber. As it turns, the wheel picks up a dose of formula and deposits it on the application device.
(51) In one embodiment, the metering device is a nozzle equipped with a heating resistor.
(52) In another embodiment, the metering device is a valve able to control the opening and closing of a metering conduit. Alternatively, the valve is replaced by a plate doing round-trips.
(53) Mixing Device
(54)
(55) According to one embodiment, the mixing device (4) comprises a motorized rotating brush (13) able to put itself on the application device (5) in order to homogenize the mixture.
(56) According to one embodiment, the movement and the speed of the brush (13) are calculated in order to concentrate the mixture and avoid projections. In one embodiment, said rotating brush has a speed of rotation between 35 rpm and 370 rpm.
(57) In another embodiment, the mixing device is composed of a rod able to move on the application device (5) in a circle or along a predefined path.
(58) In another embodiment, the mixing device is a ring in which one or more strings are radially arranged. In this embodiment, the ring positions itself on the application device (5). The ring then rotates on itself around its axis. By rotating, the spokes of the ring homogenize the mixture deposited on the application device (5).
(59) In another embodiment, the mixing device (4) is a propeller mixer. In this embodiment, the mixing device (4) consists of one or more blades rotating in one or two directions. In this embodiment, the mixture is carried out in an application chamber where the various constituents of the mixture have been dosed.
(60) In another embodiment, the mixing device (4) is a centrifugation mixer. In this embodiment, the various constituents of the mixture are dosed in an application chamber, said application chamber then rotates at high speed on itself in order to homogenize the various constituents of the mixture.
(61) In another embodiment, the applicator (12) is able to rotate on itself inside an application chamber where the various constituents of the mixture have been dosed.
(62) In another embodiment, the mixing device (4) is a static mixer. In this embodiment, the metering devices are in fluid communication with one another via a static mixer. By crossing the static mixer, the formulas are homogenized.
(63) Application Device
(64)
(65) According to one embodiment, the application device (5) comprises an applicator (12) able to receive a dose of each of the base products, a motor (16) able to move said applicator (12) in order to position it successively opposite the or each metering device (4) and opposite the mixing device (4).
(66) According to one embodiment, the application device (5) is located on the upper part of said case (2). In one embodiment, the application device (5) is located on the lower part of said case (2). In one embodiment, the application device (5) comprises a hood (15) forming a cap of the delivery device (1), the hood (15) comprising a hanging device (17) on a case (2) housing the metering (4) and mixing (4) devices configured to ensure a predefined positioning of the applicator (12) relative to the metering (4) and mixing (4) devices.
(67) According to one embodiment, the metering (4) and mixing (4) devices are arranged one above the other, parallel to the applicator (12), the motor (16) being 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).
(68) According to a preferred embodiment, the metering (4) and mixing (4) devices are arranged around said applicator (12), the motor (16) being able to move the applicator (12) in rotation according to an angular displacement defined in order to position it successively opposite the or each metering device (4) and opposite the mixing device (4).
(69) 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) in order to block a displacement of the applicator (12).
(70) In another embodiment, the delivery device is united to the case (2). In this embodiment, the motor (16) is able to move the applicator (12) from top to bottom according to a defined longitudinal displacement. In this embodiment, the delivery system comprises an orifice able to be crossed perpendicularly by the applicator (12).
(71) According to one embodiment, the application device further comprises an application chamber able to receive the various base products.
(72) According to one embodiment, the applicator (12) can take any geometrical shape depending on the needs. In one embodiment, the applicator (12) has a cylindrical shape. In one embodiment, the applicator (12) has a rectangular shape. According to a preferred embodiment, the applicator (12) has an elongated shape along a longitudinal axis and is directed towards the inside of said case (2). In one embodiment, the applicator (12) has an elongated and cylindrical shape. In one embodiment, the applicator (12) has on its end a bevel shape. In one embodiment, the applicator (12) has on its end a conical shape. In one embodiment, the applicator (12) has on its end the shape of a brush.
(73) In a preferred embodiment, the applicator (12) has the shape of a lipstick stick.
(74) In one embodiment, the applicator (12) has a length between 2 and 10 cm. In one embodiment, the applicator (12) has a length between 2 and 7 cm. In one embodiment, the applicator (12) has a length between 2 and 6 cm. In one embodiment, the applicator (12) has a length between 5 and 7 cm. In one embodiment, the applicator (12) has a length between 5 and 8 cm. In one embodiment, the applicator (12) has a length between 3 and 6 cm. In one embodiment, the applicator (12) has a length between 4 and 5 cm. In one embodiment, the applicator (12) has a length between 4 and 6 cm.
(75) In one embodiment, the applicator (12) has a diameter between 0.2 and 7 cm. In one embodiment, the applicator (12) has a diameter between 0.2 and 2 cm. In one embodiment, the applicator (12) has a diameter between 0.4 and 0.6 cm. In one embodiment, the applicator (12) has a diameter between 0.5 and 1 cm. In one embodiment, the applicator (12) has a diameter between 1 and 6 cm. In one embodiment, the applicator (12) has a diameter between 1 and 7 cm. In one embodiment, the applicator (12) has a diameter between 2 and 7 cm. In one embodiment, the applicator (12) has a diameter between 2 and 4 cm. In one embodiment, the applicator (12) has a diameter between 3 and 5 cm. In one embodiment, the applicator (12) has a diameter between 4 and 6 cm.
(76) According to one embodiment, the applicator (12) can be completely removable. In this embodiment, the applicator can be replaced by an applicator of different shape and/or size depending on the needs.
(77) According to another embodiment, the applicator (12) may have a removable end piece. In this embodiment, the end piece can be replaced by an end piece of different shape and/or size depending on the needs.
(78) In one embodiment, the end piece can be unscrewed. In this embodiment, the applicator has a thread on its end making it possible to screw an end piece of different shape and/or size depending on the needs.
(79) In one embodiment, the end piece is beveled in shape. In one embodiment, the end piece is conical in shape. In one embodiment, the end piece has the shape of a brush.
(80) Color Sensor and Calculation Module
(81) According to one embodiment, the color sensor (6) is able to scan and process the information of a target color, chosen by a user. In this embodiment, the information on the scanned color is decomposed in the form of a ratio of red, green and blue primary colors and the white and black colors corresponding to the primary colors of the additive synthesis light. These must then be reworked to match the base colors needed to replicate the shades.
(82) According to one embodiment, these operations are carried out by an on-board calculation module (18). In this embodiment, the calculation module (18) is configured to receive the data transmitted by the color sensor (6) concerning the target color. In this embodiment, the calculation module adapts the target color data received by the sensor to the base colors. In this embodiment, the calculation module (18) sends the orders to the control means of the metering devices, as to the necessary quantities of each base product to reproduce the colored product having the target color chosen by a user.
(83) According to one embodiment, the delivery system (1) further comprises a computer program. In this embodiment, the computer program is a portable terminal such as a smart phone, a tablet or a personal computer. In this embodiment, the calculation module (18) is configured to receive data concerning a color chosen by a user directly via the computer program. In this embodiment, the calculation module (18) is configured to receive data about a user that can be entered via the computer program, such as the skin tone, the physical characteristics, the personality, the habits or the coordination with other make-ups.
(84) 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.
(85) The Case
(86)
(87) According to one embodiment, the case (2) can take any geometrical shape depending on the needs. In one embodiment, the case (2) has a cylindrical shape. In one embodiment, the case (2) has a rectangular shape. According to a preferred embodiment, the case (2) has an elongated shape along a longitudinal axis facilitating its handling.
(88) In one embodiment, the case (2) has a length between 5 and 20 cm. In one embodiment, the case (2) has a length between 7 and 13 cm. In one embodiment, the case (2) has a length between 10 and 20 cm.
(89) In one embodiment, the case (2) has a width between 5 and 15 cm. In one embodiment, the case (2) has a width between 12 and 15 cm. In one embodiment, the case (2) has a width between 2 and 4 cm. In one embodiment, the case (2) has a width between 4 and 8 cm.
(90) In one embodiment, the case (2) has a height between 3 and 20 cm. In one embodiment, the case (2) has a height between 5 and 10 cm. In one embodiment, the case (2) has a height between 10 and 20 cm.
(91) According to one embodiment, the case (2) is able to receive at least two reservoirs (3.sub.1, 3.sub.2, . . . ). In one embodiment, the case (2) comprises two reservoirs (3.sub.1 and 3.sub.2). In one embodiment, the case (2) comprises three reservoirs (3.sub.1 to 3.sub.3). In one embodiment, the case (2) comprises four reservoirs (3.sub.1 to 3.sub.4). In one embodiment, the case (2) comprises five reservoirs (3.sub.1 to 3.sub.5). In one embodiment, the case (2) further comprises an additional reservoir (3).
(92) 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 distribution channels. In another embodiment, each of the reservoirs (3.sub.1, 3.sub.2, . . . , 3) is able to move in front of the metering device.
(93) According to a preferred embodiment, the case (2) is able to receive as many metering devices (4) as there are reservoirs (3.sub.1, 3.sub.2, . . . , 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).
(94) According to one embodiment, the case (2) is able to receive the mixing device (4).
(95) According to one embodiment, the reservoirs (3.sub.1, 3.sub.2, . . . , 3), the metering devices (4) and the mixing device (4) are arranged so as to form a circle around said longitudinal axis.
(96) According to one embodiment, the case (2) comprises a energy supply device (19). In this embodiment, the hanging device (17) ensures an electrical contact between the energy supply device (19) and the motor (16) for displacement of the applicator.
(97) According to one embodiment, the case (2) is provided with a color sensor (6). In one embodiment, the color sensor (6) is located on the lower part of said case (2). In one embodiment, the color sensor (6) is located on the upper part of said case (2). In another embodiment, the color sensor (6) is located on the lateral part of said case (2).
(98) According to one embodiment, the case (2) is provided with a screen display. In this embodiment, a user has the means to preview the mixture produced before application and to modify it if necessary, but also to obtain information on the use levels of the battery and the cartridges.
(99) According to one embodiment, the case (2) is made of 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 a renewable material. In one embodiment, the case (2) is made of plant material. In one embodiment, the case (2) is made of bamboo.
(100) Method for Delivering a Colored Product Having a Target Color
(101) The present invention also relates to a method of custom-made delivering of a colored product having a target color using a delivery system (1), as described above, comprising the following steps: scanning and decomposing the target color using the color sensor (6); receiving information about the target color using the calculation module (18); determining a composition of the colored product from the base products contained in the reservoirs (3.sub.1, 3.sub.2, . . . ); depositing on the application device (5), using the or each metering device (4), a dose of each of the base products corresponding to said determined composition; mixing the doses of base products deposited on the application device (5) using the mixing device (4).
(102) In one embodiment, the application device (5) is unlocked after mixing the doses of the base products, so as to allow a user to apply the colored product.
(103) In one embodiment, the application device (5) is positioned in its original position after application of the colored product by a user.
(104) In one embodiment, a cleaning product is applied on the applicator (12) in order to remove residual colored products remaining on the applicator (12).
(105) In one embodiment, the previous steps can be repeated in order to reproduce a colored product having the same color or a different color.
(106) Cosmetic Use
(107) According to one embodiment, the delivery system (1) of the invention is used in cosmetic applications requiring the delivering of a colored product having a target color. In one embodiment, the delivery system (1) of the invention is used for delivering a tint of lipstick, eye shadow, foundation, concealer, blush, powder, lip liner, eye pensil, eyeliner, mascara, nail polish or hair coloring. In one embodiment, the delivery system (1) of the invention is used for delivering a lipstick tint.
(108) Other Uses
(109) In one embodiment, the delivery system (1) of the invention can be used for different applications requiring the delivery of a colored product having a target color. In one embodiment, the delivery system (1) of the invention is used in the art field, for example as a brush, marker, pencil, pen or pastel. In the field of building restoration, for example wax, resin, lacquer, coating and varnish. In the clothing field, for example, dye, wax. In one embodiment, the delivery system (1) of the invention is used in the food sector, for example for the distribution of food coloring. In one embodiment, the delivery system (1) of the invention is used in the automobile field, for delivering car paint. In one embodiment, the delivery system (1) of the invention is used in the medical field, for example for the delivery of custom-made reactive solutions.
(110) Although 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 disclosure as defined by the claims.