CN218804954U - Color matching device - Google Patents

Color matching device Download PDF

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Publication number
CN218804954U
CN218804954U CN202222328529.9U CN202222328529U CN218804954U CN 218804954 U CN218804954 U CN 218804954U CN 202222328529 U CN202222328529 U CN 202222328529U CN 218804954 U CN218804954 U CN 218804954U
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CN
China
Prior art keywords
bottle
vacuum
pressing
color
module
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Active
Application number
CN202222328529.9U
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Chinese (zh)
Inventor
赵冲
魏辉辉
穆成刚
毛毅斌
王强
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Hangzhou Time Machine Intelligent Electronic Technology Co ltd
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Zhejiang Yige Beauty Group Co ltd
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Priority to CN202222328529.9U priority Critical patent/CN218804954U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/62Plastics recycling; Rubber recycling

Abstract

The utility model discloses a color cosmetic mixing of colors device, include: the device comprises a shell, a first clamping device and a second clamping device, wherein the shell is provided with a collecting position for collecting materials; the rotator module is used for placing vacuum pressing bottles filled with materials with different colors, can rotate relative to the collection position, and selects the vacuum pressing bottle opposite to the collection position; the pressing mechanism module can press the vacuum pressing bottle towards the outlet direction of the vacuum pressing bottle, and the vacuum pressing bottle is a quantitative liquid drainage vacuum bottle; the control module is used for controlling the rotating angle of the rotating body module and the pressing times of the pressing mechanism module and controlling the operation sequence of the rotating body module and the pressing mechanism module. The device simple structure, easily operation, the person of facilitating the use uses in any place, for example, can regard as family version makeup mixing of colors device, consequently, the user only need purchase the vacuum of several kinds of primary colors and press the bottle alright in order to allot multiple final target colour, need not purchase many times single makeup product, reduced use cost.

Description

Color matching device
Technical Field
The utility model relates to a beautiful technical field of makeups, in particular to color matching device of makeup.
Background
With the improvement of living standard of people, the requirements of consumers on beauty and skin care are higher and higher, and meanwhile, the professional level is also improved.
More and more women who make up daily are to the color makeup products such as lip glaze, lipstick, nail polish, foundation make-up liquid on the market at present belong to single article monochromatic mostly, this makes up the crowd when putting on according to oneself and taking different and selecting different colour color makeup products, need can satisfy daily needs to the same product repeated purchase a plurality of different colours. This undoubtedly increases the use cost and also causes a waste problem.
Therefore, how to automatically color the color cosmetic product to achieve the diversity of colors of the color cosmetic product is a technical problem to be solved urgently by those skilled in the art.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model provides a color matching device carries out the automatic mixing of colors to the color cosmetic product to realize the variety of color cosmetic product colour.
In order to achieve the above object, the utility model provides a following technical scheme:
a color cosmetic toning device, comprising:
a housing having a collection location for collecting material;
the rotator module is used for placing vacuum pressing bottles filled with materials with different colors, can rotate relative to the collection position, and selects the vacuum pressing bottles opposite to the collection position;
the pressing mechanism module can press the vacuum pressing bottle towards the outlet direction of the vacuum pressing bottle, and the vacuum pressing bottle is a quantitative liquid drainage vacuum bottle;
the control module is used for controlling the rotating angle of the rotor module and the pressing times of the pressing mechanism module, and controlling the operation sequence of the rotor module and the pressing mechanism module.
Preferably, in the above make-up color-mixing device, the casing includes:
the rotor module and the pressing mechanism module are both arranged in the middle cylinder;
the upper cover is detachably connected with the top of the middle cylinder;
the base, the base with the bottom of middle drum can be dismantled and be connected, just the base have can with the breach of vacuum pressing bottle export intercommunication, the breach is the collection position.
Preferably, in the above make-up color-mixing device, the pressing mechanism module includes:
the pressing piece can abut against the bottom end of the vacuum pressing bottle and can move along a first direction, and the first direction is a direction in which the bottom end is connected with the outlet;
the driving component drives the pressing piece to move.
Preferably, in the above make-up color matching device, the pressing piece has a fitting hole extending in a second direction, the second direction is perpendicular to the first direction, and the second direction is perpendicular to the axis of the eccentric shaft;
the drive assembly includes:
the second motor is in signal connection with the control module;
the eccentric shaft is eccentrically connected with an output shaft of the second motor, is in limit fit connection with the fit hole along the first direction, and can move along the second direction;
the limiting support is provided with a guide rail along the first direction, the pressing piece is in sliding fit with the guide rail, and the extension line of the moving track of the pressing piece passes through the collecting position.
Preferably, among the aforementioned color cosmetic color matching device, the rotator module includes:
the supporting seat is arranged in a rotating mode relative to the base;
the positioning barrel is arranged along the circumferential direction of the supporting seat and is used for placing the vacuum pressing bottle;
the driving structure is used for driving the supporting seat to rotate.
Preferably, in the above make-up color-mixing device, the support base includes:
the disc main body is provided with mounting through holes arranged along the circumferential direction and used for the vacuum pressing bottle to pass through, the positioning barrels are communicated with the mounting through holes in a one-to-one correspondence manner, and the positioning barrels are fixedly connected with the disc main body;
the guide seat is fixedly connected with the first side of the disc main body, the positioning barrels are distributed around the guide seat, and the guide seat is provided with a connecting shaft mounting hole penetrating through the guide seat and the disc main body;
the rotating seat is fixedly connected with the second side of the disc main body and rotatably installed on the base, and the first side and the second side are opposite sides of the disc main body.
Preferably, in the color makeup and color mixing device, the driving structure is a first motor, a connecting shaft fixedly connected with the guide holder is fixedly connected with an output shaft of the first motor, the first motor is a stepping motor, and the first motor is in signal connection with the control module.
Preferably, in the color cosmetic toning device, the rotating base is dug with a matching surface for fitting with the outer side of the vacuum pressing bottle.
Preferably, in the above make-up color-mixing device, the rotor module further includes:
the mount pad, the mount pad with supporting seat fixed connection, and have on the mount pad and be used for the vacuum presses the through-hole of the export one-to-one intercommunication of bottle, the mount pad can with the pump head of bottle is pressed in the vacuum offsets, the pressing means module is pressed when the bottle is pressed in the vacuum, the vacuum of bottle is pressed in the vacuum raw material bottle with the pump head relative movement.
Preferably, the color cosmetic toning device further comprises a human-computer interaction module in signal connection with the control module.
Preferably, in the color makeup and color mixing device, the human-computer interaction module comprises a comparison module pre-stored with a color database, and the color database comprises colors and proportional relations of target colors and raw materials proportioned into the target colors.
Preferably, in the color makeup toning device, the human-computer interaction module further includes a photographing device for obtaining a sample color, and the comparison module obtains a picture photographed by the photographing device, compares the sample color with a color in the color database, and obtains a target color and a color and proportion relationship between the target color and a raw material proportioned to the target color.
Preferably, in the color cosmetic toning device, the human-computer interaction module is a mobile terminal.
The utility model provides a color cosmetic mixing of colors device during the use, can set up a plurality of vacuums and press the bottle to material colour in every vacuum presses the bottle is different. The material color capable of being blended out of the final target color is selected through the required final target color, the content of each material color is controlled through the control module to control the matching of the rotator module and the pressing mechanism module, the blending of the final target color is realized easily, and the diversity of the color makeup colors is realized.
The device simple structure, easily operation, the person of facilitating the use uses in any place, for example, can regard as family version makeup mixing of colors device, consequently, the user only need purchase the vacuum of several kinds of primary colors and press the bottle alright in order to allot multiple final target colour, need not purchase many times single makeup product, reduced use cost.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the description below are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is an outer side schematic structure view of a color cosmetic toning device disclosed in the embodiment of the present invention;
fig. 2 is a schematic view of a local inner side structure of the color cosmetic toning device disclosed in the embodiment of the present invention;
fig. 3 is an inner side structure diagram of the color cosmetic toning device disclosed in the embodiment of the present invention;
fig. 4 is a schematic structural view of a U-shaped plate of the color matching device disclosed in the embodiment of the present invention;
fig. 5 is another schematic inner side structure diagram of the color cosmetic toning device disclosed in the embodiment of the present invention;
fig. 6 is a schematic structural view of the connection between the second motor and the eccentric shaft of the color matching device disclosed in the embodiment of the present invention;
fig. 7 is a schematic view of the installation of a vacuum raw material bottle of the color matching device disclosed in the embodiment of the present invention;
fig. 8 is another schematic view of the vacuum raw material bottle of the color matching device disclosed in the embodiment of the present invention;
fig. 9 is a schematic view of a first directional structure of a supporting seat of the color cosmetic toning device disclosed in the embodiment of the present invention;
fig. 10 is a schematic view of another direction structure of the supporting seat of the color matching device disclosed in the embodiment of the present invention;
fig. 11 is a schematic structural view of a mounting seat of the color cosmetic toning device disclosed in the embodiment of the utility model;
wherein the content of the first and second substances,
1 is a shell, 11 is an upper cover, 12 is a middle cylinder, 13 is a base and 14 is a gap;
21 is a positioning barrel, 22 is a supporting seat and 23 is a mounting seat;
221 is a disc main body, 222 is an installation through hole, 223 is a rotating seat, 224 is an assembly hole, 225 is a matching surface, and 226 is a guide seat;
31 is a second motor, 32 is an eccentric shaft, 33 is a pressing piece, 34 is a limit bracket, and 35 is a connecting plate;
331 is a connecting section, 332 is a pressing section;
4 is a vacuum pressing bottle, 41 is a vacuum raw material bottle, and 42 is a pump head;
421 is a guide pipe, 422 is a spring, 423 is a baffle plate, 424 is a discharge pipe;
51 is an upper connecting plate, 53 is a lower connecting plate, and 52 is a U-shaped plate.
Detailed Description
The utility model discloses a color matching device for color cosmetics carries out automatic color matching to the color cosmetics product to realize the variety of color cosmetics product colour.
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts all belong to the protection scope of the present invention.
In the following, the terms "first", "second" are used for descriptive purposes only and are not to be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature.
As shown in fig. 1-11, the utility model discloses a color cosmetics mixing of colors device can match out the color cosmetics product of different colours through using the device, satisfies user's daily demand.
Specifically, the color cosmetic toning device comprises a shell 1, and a rotator module (not shown in the figure) and a pressing mechanism module (not shown in the figure) which are arranged in the shell. The rotator module is used for placing the vacuum pressing bottle 4 and can drive the vacuum pressing bottle 4 to rotate; the pressing mechanism module is used for applying pressure to the vacuum pressing bottle 4 so as to discharge the raw materials in the vacuum pressing bottle 4. Set up the collection position that communicates the casing 1 inside on casing 1, press bottle 4 when rotating to collecting the position as the vacuum of required colour, the pressing means module starts to press this vacuum and presses bottle 4, discharges the raw materials of required colour side by side.
By adopting the device, when in use, a plurality of vacuum pressing bottles 4 can be arranged, and the color of the material in each vacuum pressing bottle 4 is different. The material color capable of being blended out of the final target color is selected through the required final target color, the content of each material color is controlled through the control module to control the matching of the rotator module and the pressing mechanism module, the blending of the final target color is realized easily, and the diversity of the color makeup colors is realized.
The device simple structure, easily operation, the person of facilitating the use uses in any place, for example, can regard as family version makeup mixing of colors device, consequently, the user only need purchase the vacuum of several kinds of primary colors and press bottle 4 alright with allotment multiple final target colour, need not purchase many times to single makeup product, has reduced use cost.
The following describes the specific structure of the color cosmetic toning device with reference to the accompanying drawings:
as shown in fig. 1, the casing 1 of the color cosmetic toning device is a cylindrical structure. Specifically, the device comprises an upper cover 11, a middle cylinder 12 and a base 13. In order to facilitate the replacement of the raw material or the maintenance of the inside of the housing 1, it is preferable that the upper cover 11 and the intermediate cylinder 12 are detachably connected, and of course, the intermediate cylinder 12 and the base 13 may be detachably connected. In practice, a snap fit or a threaded connection, etc. may be used.
It can be seen from fig. 1 that the side wall of the base 13 has a notch 14, and this notch 14 is a space for placing the finished collecting element, i.e. the collecting position. During the use, will accomodate the appearance cup and place the finished product beautiful makeup of collecting the ratio in breach 14 department. The containing cup can be a nail polish bottle, a lipstick tube or a foundation liquid split-charging bottle and the like.
In order to realize color matching, a plurality of vacuum pressing bottles 4 are required to be arranged in the shell 1, preferably, the vacuum pressing bottles can be circumferentially arranged, and the colors of materials contained in each vacuum pressing bottle 4 are different. When the vacuum pressing bottle is used, materials in the vacuum pressing bottle 4 capable of being blended into the color can be selected according to the final color, and the selected vacuum raw material bottles are sequentially rotated to the notch 14. Therefore, the vacuum-pressure bottle 4 described above needs to be rotatably disposed in the housing 1.
As shown in fig. 2-5 and fig. 7-11, a rotator module is disposed in the housing 1 for driving the vacuum pressing bottle 4 to rotate. Specifically, this rotor module includes: positioning barrel 21, support seat 22, mounting seat 23 and first motor (not shown in the figure).
The positioning barrel 21 is a cylindrical member, and the vacuum pressing bottle 4 is placed in the positioning barrel 21 when in use. It should be noted that the shape of the positioning barrel 21 is matched with the shape of the vacuum pressing bottle 4, and it is ensured that the positioning barrel 21 is slightly larger than the size of the vacuum pressing bottle 4, as long as the vacuum pressing bottle 4 can enter and exit the positioning barrel 21, and the inclination of the vacuum pressing bottle 4 is prevented by the limitation of the positioning barrel 21.
Among them, fig. 9 and 10 show the structure of the support base 22, and the support base 22 includes a disc main body 221, a mounting through hole 222, a rotation base 223, a guide base 226, a mating face 225, and a fitting hole 224.
The disc main body 221 is a disc structure, and a plurality of mounting through holes 222 are formed along the circumferential direction, and the positioning barrels 21 are correspondingly communicated with the mounting through holes 221 one by one. Preferably, the tub 21 may be fixed to the disk body 221 with an axis of the tub 21 coinciding with an axis of the mounting through-hole 222. It is ensured that the opening size and shape of the mounting through hole 222 is the same as the cross-sectional size and shape of the positioning tub 21.
The positioning barrel 21 and the disc main body 221 may be of an integral structure or may be detachably bonded or magnetically attached.
The upper side of the disc main body 221 is provided with a positioning barrel 21, the lower side is provided with a rotating seat 223, and the rotating seat 223 can be integrally connected with the mounting seat 23 or detachably connected with the mounting seat during assembly.
Since the vacuum pressing bottle 4 is a cylinder structure and the rotating base 223 is a cylinder structure in the specific application, when the outer wall of the vacuum pressing bottle 4 contacts with the outer wall of the rotating base 223, the contact surface is only a line, so that the contact area is small, which is not beneficial to the stability of the vacuum pressing bottle 4. In view of this, as shown in fig. 7, a fitting surface 225 is formed on the rotary base 223, and specifically, the fitting surface 225 can completely fit with the outer ring of the vacuum-pressed bottle 4, thereby increasing the contact area between the vacuum-pressed bottle 4 and the rotary base 223.
The area of the mating surface 225 is gradually reduced from one side of the mounting through hole 222 to the other side, and the depth of the mating surface 225 is gradually reduced from one side of the mounting through hole 222 to the other side.
A guide seat 226 is provided at a central position of an upper side surface of the disk main body 221, and the above-mentioned positioning buckets 21 are uniformly arranged along a circumferential direction of the guide seat 226. The guide holder 226 has a conical structure gradually expanding from the upper end toward one end of the disk body 221. The guide holder 226 is hollow inside and communicates with the mounting through-hole 222 in the center of the disc main body 221. When the disc is installed, a connecting shaft is fixed to the center of the mounting base 23, and the connecting shaft passes through the mounting hole 224 of the disc main body 221 and the guide base 226. It should be ensured that the connecting shaft is fixedly connected to the disc main body 221 and/or the guide seat 226 to ensure that the supporting seat 22 can rotate synchronously with the mounting seat 23. In practice, transmission gears can be arranged on the connecting shaft and the output shaft of the first motor, and the connecting shaft is driven to rotate through gear transmission.
During specific operation, the mounting seat 23 needs to be driven to rotate through the connecting shaft, so as to drive the supporting seat 22 connected with the mounting seat 23 to rotate, and then drive the positioning barrel 21 connected with the supporting seat 22 to move synchronously, so that the positioning barrel 21, the supporting seat 22 and the mounting seat 23 can be processed into an integrated structure during actual processing. The connecting shaft is fixedly connected with the supporting seat 22.
It should be noted that the first motor involved in the present scheme is a stepping motor, and the stepping distance is the distance of the adjacent positioning barrel 21, so as to ensure that the first motor is stepped once, and the notch 14 is replaced by one positioning barrel 21 correspondingly.
Fig. 11 shows the structure of the mounting base 23, wherein the mounting base 23 has a disc-shaped structure, and the mounting base 23 has an annular groove along the circumferential direction, the guide base 226 is fixedly connected with the middle boss of the mounting base 23, an annular groove is formed between the edge boss and the middle boss of the mounting base 23, and the vacuum pressing bottle 4 can be limited by the edge boss and the middle boss. A plurality of through holes are circumferentially arranged on the bottom of the annular groove of the mounting seat 23, and correspond to the outlets of the vacuum pressing bottles 4 one by one. During the rotation of the mounting seat 23, the through holes can be in turn in communication with the notches 14 described above. When in use, the raw materials in the vacuum pressing bottle 4 enter the containing cup placed at the notch 14 through the through hole.
Since the mounting seat 23 rotates synchronously with the positioning barrel 21, the first motor can be fixedly connected with the housing 1.
In the above embodiment, the casing 1 and the rotator module of the make-up toning device are explained, which is a basic mounting structure of the make-up toning device.
When the first motor is started, the mounting seat 23 is driven to rotate through the connecting shaft, the supporting seat 22 connected with the mounting seat 23 is further driven to rotate, and the positioning barrel 21 connected with the supporting seat 22 is further driven to move synchronously, so that the vacuum pressing bottle 4 opposite to the notch 14 is changed, and conversion of different raw materials is realized.
On the basis of the above technical solution, the color cosmetic toning device in the present solution further includes a pressing mechanism module for driving the raw material discharge volume in the vacuum pressing bottle 4, as shown in fig. 2 to 6. Fig. 2 and 3 show the assembly relationship of the pressing mechanism module 3, and specifically, the pressing mechanism module is mounted on the housing 1 through an assembly bracket assembly.
The pressing mechanism module comprises a second motor 31, an eccentric shaft 32, a pressing piece 33, a connecting plate 35 and a limit bracket 34. Wherein the eccentric shaft 32 is connected eccentrically arranged with respect to the output shaft of said second motor 31, such that upon rotation of the second motor 31 the eccentric shaft 32 moves eccentrically with respect to the output shaft of the second motor 31, as shown in fig. 6. In actual assembly, the output shaft of the second motor 31 is horizontally disposed, the eccentric shaft 32 is disposed in parallel with respect to the output shaft, and the positioning barrel 21 is vertically oriented, so that, when the second motor 31 is operated, the eccentric shaft 32 is driven to rotate, thereby varying the distance of the eccentric shaft 32 with respect to the bottom end of the vacuum raw material barrel 41. That is, the pressing member 33 is movable in a first direction in which the bottom end of the vacuum raw material bucket 41 is connected to the outlet of the vacuum raw material bucket 41, and the bottom end of the vacuum raw material bucket 41 is opposite to the outlet of the vacuum raw material bucket 41.
In practical applications, the first direction may be a height direction.
The moving distance of the vacuum pressing bottle 4 is related to the position of the rotation of the eccentric shaft 32, and the moving distance of the vacuum pressing bottle 4 can determine the discharge amount of the material in the vacuum pressing bottle 4. Or the eccentric shaft 32 is rotated to the most distal end to complete one pressing of the vacuum pressing bottle 4, and the liquid output amount of each pressing of the vacuum pressing bottle 4 is the same.
For the installation of the eccentric shaft 32, the eccentric shaft 32 can be connected with the output shaft of the second motor 31 through a connecting plate 35, that is, the output shaft is in transmission connection with the center of the connecting plate 35, and the eccentric shaft 32 is eccentrically installed on the connecting plate 35. Or the eccentric shaft 32 is arranged in parallel with the output shaft and connected by a vertically disposed connecting rod.
In a specific embodiment, the structure of the pressing member 33 may be limited, and it should be noted that the actual pressing member includes, but is not limited to, the following structures:
the pressing piece 33 includes a connection section 331 and a pressing section 332, as shown in fig. 5. The pressing section 332 is used to abut against the vacuum pressing bottle 4, and the connecting section 331 has a fitting hole extending along the second direction, specifically, a strip-shaped through hole. The second direction here is perpendicular to the first direction described above, and the second direction is perpendicular to the axis of the eccentric shaft. The connection section 331 is disposed in parallel with the connection plate 35. When mounted, the eccentric shaft 32 passes through the engagement hole and moves in the direction in which the engagement hole extends when the eccentric shaft 32 rotates.
Since the eccentric shaft 32 is a rotational motion, in order to convert the rotation of the eccentric shaft 32 into a height direction motion of the pressing member 33, a limit bracket 34 may be fixedly installed on the assembly bracket assembly, and specifically, the limit bracket 34 is a guide post disposed along the height direction, and the guide post has a groove thereon. Accordingly, the connection section 331 has a protrusion that is engaged with the groove.
It is ensured that the length of the fitting hole is not less than the length of the horizontal direction partial movement of the eccentric shaft 32. The opening distance in the height direction of the matching hole is the diameter of the eccentric shaft 32, so long as the eccentric shaft 32 can be limited along the height and horizontally moved and installed in the matching hole.
So configured, when the eccentric shaft 32 rotates, the horizontal direction component motion of the eccentric shaft 32 is converted into motion along the length direction of the mating hole; the vertical motion of the eccentric shaft 32 is converted into a motion of driving the pressing member 33 in the height direction under the limit of the limit bracket 34.
In a specific application embodiment, the rotation angle of the second motor 31 can be selected according to the requirement of the raw material, i.e. the pressure applied by the pressing member to the vacuum pressing bottle 4 is changed.
The structure of the mounting bracket assembly will be described with reference to fig. 2-4:
the assembly bracket assembly comprises an upper connecting plate 51, a lower connecting plate 53 and a U-shaped plate 52, wherein the upper connecting plate is detachably fixed on the upper cover 11; the lower connecting plate is detachably fixed on the middle cylinder 12; the U-shaped plate 52 covers the outer side of the second motor 31, and the tail ends of the U-shaped plate 52 are provided with planes for being detachably and fixedly connected with the shell of the second motor 31; the U-shaped plate 52 is detachably and fixedly connected with the upper connecting plate 51. It should be noted that the detachable and fixed connection of the part may be a screw connection.
The upper connecting plate 51 and the lower connecting plate 53 form an upper mounting space of the pressing mechanism module, and the rotator module and the vacuum pressing bottle 4 in the above embodiment are located in a lower mounting space between the lower connecting plate 53 and the base 13. In combination with the arrangement described above, the first motor may be fixed to the lower connecting plate 53.
In order to allow the pusher 33 to push the vacuum-pressed bottle 4 in the lower mounting space, a through hole through which the pusher 33 passes needs to be formed in the lower connecting plate 53.
During operation, the rotor module in the installation space drives vacuum pressing bottle 4 to rotate down to when rotating vacuum pressing bottle 4 of required colour to pressing piece 33 below, then starting the second motor, under the effect of pressing piece 33, make this vacuum press the raw materials in the bottle 4 to flow out, and flow into and accomodate the appearance cup.
In view of the above arrangement, it is necessary to ensure that the opening position of the notch 14 coincides with the extended line of the movement locus of the pressing member 33.
The main structure of the color matching device is disclosed in the above, and in addition, the color matching device further comprises a vacuum pressing bottle 4 adapted to the pressing mechanism module.
In order to ensure the stability of the performance of the raw material in the vacuum pressing bottle 4, the inside of the vacuum pressing bottle 4 is in a vacuum state and is filled with the liquid raw material.
In fig. 7 and 8, the vacuum pressing bottle 4 herein is shown as a cylindrical structure including a vacuum material bottle 41 and a pump head 42. When assembled, the pump head 42 is adjacent one end of the base 13 of the housing 1. The pump head 42 is a one-way communication pump head for cosmetic bottles, and when in use, the liquid in the vacuum raw material bottle 41 can be discharged by pressing the pump head 42.
In combination with the pressing mechanism module of the color cosmetic toning device, when the pressing member 33 presses the vacuum pressing bottle 4, the vacuum raw material bottle 41 can move relative to the pump head 42, that is, the pump head 42 is pressed, so that the material in the vacuum pressing bottle 4 flows out through the pump head 42.
The pump head 42 described above allows dosing of the material flowing out during pressing, i.e. the same material flows out each time a press is made. In practical application, all known pump heads for discharging liquid by pressing can be selected and are within a protection range.
In the scheme, as shown in fig. 7 and 8, a mode is preferably adopted, specifically, a conduit 421 is connected to the outlet end of the vacuum raw material bottle 41, the conduit 421 is communicated with a discharge pipe 424 through a baffle 423, a spring 422 is sleeved outside the conduit 421, the spring 422 is located between the vacuum raw material bottle 41 and the baffle 423, and the discharge pipe 424 and the baffle 423 can move along the axial direction of the conduit 421. When the discharging pipe 424 moves closer to the guide pipe 421, the discharging pipe 424 can communicate with the vacuum raw material bottle 41 and discharge a predetermined amount of material.
When the color matching device is installed, the baffle 423 can be clamped in the annular groove of the installation seat 23 of the rotating body module of the color matching device.
The structure of the inside of the vacuum-pressing bottle 4 is not particularly limited, and reference is made to all known vacuum-pressing bottles. Because the structure of the scheme is not the improvement of the vacuum pressing bottle 4, the content of the scheme can not be described in detail, and only the assembly relation between the vacuum pressing bottle 4 and the color makeup toning device is described.
On above-mentioned technical scheme's basis, in order to realize rotor module and the pressing means module automatic control to the colour cosmetic mixing of colors device, still set up the control module group, this control module group and first motor and the equal signal connection of second motor 31. The rotation angle of the first motor is controlled through the control module, so that the vacuum pressing bottle 4 with required color moves to the notch 14, and the rotation angle of the second motor 31 is controlled through the control module, so that the total amount of materials discharged from the selected vacuum pressing bottle 4 is controlled, and the automatic proportioning requirements of different raw materials are met.
It should be noted that, each time the color matching device is started, the first motor and the second motor need to be reset to ensure that each adjustment is started from the initial position.
In a further embodiment, the color makeup toning device further comprises a human-computer interaction module in signal connection with the control module. When the control module is used, an operator can input target information on the man-machine interaction module so as to control the control module.
In order to simplify the structure and facilitate the use, the man-machine interaction module can be set as an electronic product, and the electronic product can be a mobile terminal.
In practice, an application program may be installed on the electronic product, and the electronic product is connected to the control module in a communication manner, and the control module controls the first motor and the second motor 31 according to the obtained target information by inputting the target information on the application program.
It should be noted that the target information includes the operation angle of the first motor, the operation angle of the second motor 31, and the operation sequence of the first motor and the second motor 31. When the electronic product is used, an operator can directly input target information on the electronic product and send the information to the control module. The specific sending mode may be setting a sending button on the application program.
In addition, a comparison module can be built in the application program, and a color database can be prestored. Wherein, the color database comprises the color and proportion relation of the target color and the raw materials proportioned into the target color.
When the color comparison module is used, the application program can compare the acquired color with the color database of the memory to acquire a compared target color, and the comparison module converts the color and the proportional relation information of the raw materials of the target color into target information input to the application program.
It should be noted that the electronic product in the present embodiment may be a mobile phone or a computer.
As used in the present application and in the claims, the terms "a," "an," "the," and/or "the" are not intended to be exhaustive or to include the plural as well, unless the context clearly indicates otherwise. In general, the terms "comprises" and "comprising" merely indicate that steps and elements are included which are explicitly identified, that the steps and elements do not form an exclusive list, and that a method or apparatus may include other steps or elements. An element defined by the phrase "comprising a component of ' 8230 ' \8230; ' does not exclude the presence of additional identical elements in the process, method, article, or apparatus that comprises the element.
In the present specification, the embodiments are described in a progressive manner, each embodiment focuses on differences from other embodiments, and the same and similar parts among the embodiments are referred to each other.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (13)

1. A color cosmetic toning device is characterized by comprising:
a housing having a collection location for collecting material;
the rotator module is used for placing vacuum pressing bottles filled with materials with different colors, can rotate relative to the collection position, and selects the vacuum pressing bottles opposite to the collection position;
the pressing mechanism module can press the vacuum pressing bottle towards the outlet direction of the vacuum pressing bottle, and the vacuum pressing bottle is a quantitative liquid drainage vacuum bottle;
the control module is used for controlling the rotating angle of the rotor module and the pressing times of the pressing mechanism module, and controlling the operation sequence of the rotor module and the pressing mechanism module.
2. The color cosmetic toning device according to claim 1, wherein the housing includes:
the rotor module and the pressing mechanism module are both arranged in the middle cylinder;
the upper cover is detachably connected with the top of the middle cylinder;
the base, the base with the bottom of middle drum can be dismantled and be connected, just the base have can with the breach of vacuum pressing bottle export intercommunication, the breach is the collection position.
3. The color cosmetic toning device according to claim 2, wherein the pressing mechanism module comprises:
the pressing piece can abut against the bottom end of the vacuum pressing bottle and can move along a first direction, and the first direction is the direction of a connecting line of the bottom end and the outlet of the vacuum pressing bottle;
and the driving component drives the pressing piece to move.
4. The color cosmetic toning apparatus according to claim 3, wherein the pressing member has a fitting hole extending in a second direction, the second direction being perpendicular to the first direction, and the second direction being perpendicular to an axis of the eccentric shaft;
the drive assembly includes:
the second motor is in signal connection with the control module;
the eccentric shaft is eccentrically connected with an output shaft of the second motor, is in limit fit connection with the fit hole along the first direction, and can move along the second direction;
the limiting support is provided with a guide rail along the first direction, the pressing piece is in sliding fit with the guide rail, and the extension line of the moving track of the pressing piece passes through the collecting position.
5. The color cosmetic toning device according to claim 2, wherein the rotator module comprises:
the supporting seat is arranged in a rotating mode relative to the base;
the positioning barrel is arranged along the circumferential direction of the supporting seat and is used for placing the vacuum pressing bottle;
and the driving structure is used for driving the supporting seat to rotate.
6. The color cosmetic toning device according to claim 5, wherein the support base comprises:
the disc main body is provided with mounting through holes which are circumferentially arranged and used for the vacuum pressing bottle to pass through, the positioning barrels are correspondingly communicated with the mounting through holes one by one, and the positioning barrels are fixedly connected with the disc main body;
the guide seat is fixedly connected with the first side of the disc main body, the positioning barrels are distributed around the guide seat, and the guide seat is provided with a connecting shaft mounting hole penetrating through the guide seat and the disc main body;
the rotating seat is fixedly connected with the second side of the disc main body and rotatably arranged on the base, and the first side and the second side are opposite two sides of the disc main body.
7. The color cosmetic toning device according to claim 6, wherein the driving structure is a first motor, a connecting shaft fixedly connected with the guide holder is fixedly connected with an output shaft of the first motor, the first motor is a stepping motor, and the first motor is in signal connection with the control module.
8. The color cosmetic toning device according to claim 6, wherein the rotating seat is dug with a matching surface for fitting with the outer side of the vacuum pressing bottle.
9. The color cosmetic toning device according to claim 5, wherein the rotator module further comprises:
the mount pad, the mount pad with supporting seat fixed connection, and have on the mount pad and be used for the vacuum presses the through-hole of the export one-to-one intercommunication of bottle, the mount pad can with the pump head of bottle is pressed in the vacuum offsets, the pressing means module is pressed when the bottle is pressed in the vacuum, the vacuum of bottle is pressed in the vacuum raw material bottle with the pump head relative movement.
10. The color cosmetic toning device according to any one of claims 1 to 9, further comprising a human-computer interaction module in signal connection with the control module.
11. The color cosmetic toning device according to claim 10, wherein the human-computer interaction module comprises a comparison module pre-stored with a color database, and the color database comprises colors and proportional relationships of target colors and raw materials proportioned to the target colors.
12. The color cosmetic toning device according to claim 11, wherein the human-computer interaction module further comprises a photographing device for obtaining a sample color, and the comparison module obtains a picture photographed by the photographing device, compares the sample color with a color in the color database, and obtains a target color and a color and proportion relationship between the target color and a raw material proportioned to the target color.
13. The color cosmetic toning device according to claim 10, wherein the human-computer interaction module is a mobile terminal.
CN202222328529.9U 2022-08-31 2022-08-31 Color matching device Active CN218804954U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222328529.9U CN218804954U (en) 2022-08-31 2022-08-31 Color matching device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222328529.9U CN218804954U (en) 2022-08-31 2022-08-31 Color matching device

Publications (1)

Publication Number Publication Date
CN218804954U true CN218804954U (en) 2023-04-07

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222328529.9U Active CN218804954U (en) 2022-08-31 2022-08-31 Color matching device

Country Status (1)

Country Link
CN (1) CN218804954U (en)

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Effective date of registration: 20231123

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Address before: Room 09, 6th Floor, Building 5, No. 2, Kejiyuan Road, Baiyang Street, Qiantang District, Hangzhou City, Zhejiang Province, 310018

Patentee before: Zhejiang Yige Beauty Group Co.,Ltd.

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