Hair color toner

CN224640969UActive Publication Date: 2026-08-18JIANGXI SORIDA INTELLIGENT EQUIP TECH CO LTD
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Patent Information

Application Number
CN202521688502.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-08
Publication Date
2026-08-18
Estimated Expiration
2035-08-08

AI Technical Summary

Technical Problem

[0002]随着经济条件、物质生活的不断提升,越来越多的人都开始通过染发来打扮自己,而在传统的美容美发店、理发店等地方,大都通过手工进行染发剂的调色,调色效果完全依赖于调色师的经验和技术等因素,调色效果难以保证,由此经常导致所调染发剂与客户所要求的颜色存在色差,影响客户体验

Benefits of technology

[0015]The beneficial effects of this application are as follows: When the dye in the cartridge is used up and a new cartridge is needed, the cartridge can be simply pulled out vertically and removed. The new cartridge is then vertically inserted into the positioning mounting base, causing the piercing element at the bottom of the mounting base to pierce the cartridge. The positioning mounting base then positions and fixes the cartridge, simplifying cartridge replacement and reducing operational difficulty. Since the top of the cartridge extends vertically upwards (i.e., in this embodiment, the cartridge is a long, cylindrical shape), multiple cartridges are arranged vertically and located on the surface of the support component. This allows for an increase in the cartridge's capacity by using long, cylindrical cartridges. Multiple pumps are located at the bottom of the support component, which separates the cartridges from the pumps. This allows for a greater number of cartridges to be arranged side-by-side on the surface of the support component, resulting in a rational structural layout. This improves the internal space utilization of the hair dye mixing machine, increases the variety of dye colors available, and enables the mixing of more colors while improving color mixing accuracy.

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Abstract

The application provides a hair dye toning machine, which comprises a main body assembly, a suction assembly and a material receiving assembly; the main body assembly comprises a shell piece, a bearing piece and a plurality of material cylinder pieces, the bearing piece is arranged in the shell piece, and the top of the material cylinder piece extends upward in the vertical direction; the suction assembly comprises a suction pump piece, a suction material guide pipe piece and a puncture piece, the suction pump piece is arranged at the bottom of the bearing piece, the suction pump piece is communicated with one end of the suction material guide pipe piece, the puncture piece is connected to the other end of the suction material guide pipe piece, the puncture piece is arranged at the bottom of the positioning mounting seat and is communicated with the bottom of the material cylinder piece; the material receiving assembly comprises a material outlet piece and a material receiving piece, the material outlet piece is arranged in the shell piece and is communicated with the plurality of suction pump pieces respectively, and the material receiving piece is opposite to the material outlet of the material outlet piece. The suction pump piece of the application is arranged at the bottom of the bearing piece, the space of the surface of the bearing piece is left for arranging the material cylinder piece, the number of the material cylinder piece is increased, more colors of dyes can be mixed, the accuracy of mixing is improved, and the capacity of the material cylinder piece is increased due to the vertical arrangement of the material cylinder piece.
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Description

Technical Field

[0001] This utility model relates to the technical field of hair dyeing and color matching equipment, specifically, to a hair dye color matching machine. Background Technology

[0002] With the continuous improvement of economic conditions and material life, more and more people are starting to dress themselves up by dyeing their hair. However, in traditional beauty salons and barbershops, the color of hair dye is mostly mixed by hand. The color mixing effect depends entirely on the experience and skills of the colorist, and the color mixing effect is difficult to guarantee. This often results in a color difference between the mixed hair dye and the color requested by the customer, which affects the customer experience.

[0003] Currently, there are some automatic color mixing machines. These machines are equipped with multiple consumable color tanks and multiple pumps. The pumps extract different colors of dye from the multiple consumable color tanks to mix the color required by the customer. For example, a color mixing device disclosed in CN217164235U can achieve standardized automatic color mixing. However, because its feeding device is located on one side of the pigment storage seat, it requires a lot of internal space in the color mixing machine. In addition, the pigment bags are placed at an angle on the pigment storage seat. As a result, multiple pigment bags can only be arranged side by side. This is not only inconvenient for setting up pigment bags with larger capacity, but also cannot set up more pigment bags in the same area, which greatly limits the number of pigment types and capacity of the automatic color mixing machine. Utility Model Content

[0004] In view of the shortcomings of the prior art, this application provides a hair dye color mixing machine.

[0005] This application discloses a hair dye color mixing machine comprising: a main body assembly, a suction assembly, and a material receiving assembly; the main body assembly includes a housing, a support assembly, and multiple material cylinders, the support assembly being disposed within the housing and having multiple positioning mounting seats, the bottoms of the multiple material cylinders respectively extending into the multiple positioning mounting seats, the positioning mounting seats positioning and fixing the material cylinders, and the tops of the multiple material cylinders respectively extending upward in a vertical direction; the suction assembly includes multiple pumps, multiple material suction guides, and multiple piercing elements, the multiple pumps being disposed at the bottom of the support assembly, each pump being connected to one end of a material suction guide, the multiple piercing elements being respectively connected to the other end of the multiple material suction guides, the multiple piercing elements being respectively disposed at the bottom of the multiple positioning mounting seats and respectively connected to the bottom of the multiple material cylinders; the material receiving assembly includes a discharge element and a material receiving element, the discharge element being disposed within the housing and respectively connected to the multiple pumps, the discharge ports of the material receiving element and the discharge element being directly opposite each other.

[0006] Preferably, the carrier includes a positioning plate and a support plate, which are spaced apart inside the housing. The positioning plate has multiple first positioning holes, and the support plate has multiple second positioning holes. The multiple first positioning holes are respectively aligned with the multiple second positioning holes and cooperate to form a positioning mounting seat. The bottom of the material cylinder is hemispherical, and the bottom of the material cylinder passes through the first positioning hole and is limited to abutting against the hole wall of the second positioning hole.

[0007] Preferably, the carrier also includes a mounting plate, which is disposed inside the housing and located below the support plate, and multiple pump components are respectively disposed on the mounting plate.

[0008] Preferably, the mounting plate has multiple mounting slots, and multiple pump components are respectively detachably snapped into the multiple mounting slots.

[0009] Preferably, the pumping component includes a peristaltic pump and a discharge conduit. Multiple peristaltic pumps are detachably snapped into multiple mounting slots. The inlets of the multiple peristaltic pumps are connected to one end of the multiple pumping conduit components, and the outlets of the multiple peristaltic pumps are connected to one end of the multiple discharge conduits. The multiple discharge conduits are connected to the discharge component.

[0010] Preferably, the material cylinder includes a material cylinder body and a connecting body. The bottom of the material cylinder body passes through the first positioning hole and is limited to abutting against the hole wall of the second positioning hole. One end of the connecting body is connected to the bottom of the material cylinder body, and the other end of the connecting body passes through the second positioning hole and is connected to the piercing member.

[0011] Preferably, the material extraction conduit includes a material extraction conduit and a waste shell. The waste shell is located at the bottom of the support plate, and the piercing element is inserted into the waste shell. One end of the material extraction conduit is connected to the pump, and the other end of the material extraction conduit is connected to the piercing element.

[0012] Preferably, the waste shell is detachably installed at the bottom of the support plate.

[0013] Preferably, the material receiving component further includes a weighing element, which is disposed on the housing component and located below the discharge port of the discharge component, and the material receiving component is placed on the weighing element.

[0014] Preferably, the material receiving component further includes a cover, which is detachably installed over the discharge port of the material discharging component.

[0015] The beneficial effects of this application are as follows: When the dye in the cartridge is used up and a new cartridge is needed, the cartridge can be simply pulled out vertically and removed. The new cartridge is then vertically inserted into the positioning mounting base, causing the piercing element at the bottom of the mounting base to pierce the cartridge. The positioning mounting base then positions and fixes the cartridge, simplifying cartridge replacement and reducing operational difficulty. Since the top of the cartridge extends vertically upwards (i.e., in this embodiment, the cartridge is a long, cylindrical shape), multiple cartridges are arranged vertically and located on the surface of the support component. This allows for an increase in the cartridge's capacity by using long, cylindrical cartridges. Multiple pumps are located at the bottom of the support component, which separates the cartridges from the pumps. This allows for a greater number of cartridges to be arranged side-by-side on the surface of the support component, resulting in a rational structural layout. This improves the internal space utilization of the hair dye mixing machine, increases the variety of dye colors available, and enables the mixing of more colors while improving color mixing accuracy.

[0016] Meanwhile, the cover design prevents the dye at the outlet of the discharge component from being exposed to the air for a long time, which could cause it to dry and clog the discharge conduit and the outlet of the discharge component, thus avoiding damage to the color mixing machine and extending its service life. Attached Figure Description

[0017] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings: Figure 1 This is a schematic diagram of the hair dye mixing machine in Example 1; Figure 2 This is another structural schematic diagram of the hair dye color mixing machine in Example 1; Figure 3 This is a cross-sectional view of the hair dye mixing machine in Example 1; Figure 4 This is a schematic diagram of the bottom structure of the hair dye mixing machine in Example 1; Figure 5 This is a side view of the cylinder component in Example 1; Figure 6 This is a schematic diagram of the material cylinder and the material extraction guide pipe in Example 1; Figure 7 This is a schematic diagram of the cover component in Embodiment 1; Figure 8 This is a schematic diagram of the hair dye mixing machine in Example 2; Figure 9 This is another structural schematic diagram of the hair dye color mixing machine in Example 2.

[0018] Figure label: 1. Main body component; 11. Shell component; 12. Bearing component; 121. Positioning plate; 1211. First positioning hole; 122. Support plate; 1221. Second positioning hole; 123. Mounting plate; 1231. Mounting slot; 13. Material cylinder component; 131. Material cylinder body; 1311. Shell; 1312. Cover; 132. Connecting body; 14. Material support seat; 2. Suction component; 21. Suction pump component; 211. Peristaltic pump; 22. Suction guide pipe component; 221. Suction guide pipe; 222. Waste shell; 23. Puncture head; 3. Material support component; 31. Discharge component; 32. Material support component; 33. Weighing component; 34. Cover component; 100. Material cylinder area; 101. Pipeline area; 102. Discharge area. Detailed Implementation

[0019] The following drawings disclose several embodiments of this application. For clarity, many practical details will be described in the following description. However, it should be understood that these practical details should not be used to limit this application. That is, in some embodiments of this application, these practical details are not essential. In addition, for the sake of simplicity, some conventional structures and components will be shown in the drawings in a simple schematic manner.

[0020] It should be noted that all directional indications in the embodiments of this application, such as up, down, left, right, front, back, etc., are only used to explain the relative positional relationship and movement of the components in a specific posture as shown in the attached figure. If the specific posture changes, the directional indication will also change accordingly.

[0021] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and does not specifically refer to any order or sequence, nor is it intended to limit this application. They are merely used to distinguish components or operations described using the same technical terms and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of various embodiments can be combined with each other, but only if they are feasible for those skilled in the art. If a combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.

[0022] To further understand the content, features, and effects of this application, the following embodiments are provided, and detailed descriptions are given in conjunction with the accompanying drawings.

[0023] Example 1: Reference Figures 1-4 , Figure 1 This is a schematic diagram of the hair dye mixing machine in Example 1. Figure 2 This is another structural schematic diagram of the hair dye color mixing machine in Example 1. Figure 3 This is a cross-sectional view of the hair dye mixing machine in Example 1. Figure 4 This is a schematic diagram of the bottom structure of the hair dye mixing machine in Embodiment 1. The hair dye mixing machine in this embodiment includes a main body component 1, a suction component 2, and a material receiving component 3. The main body component 1 includes a housing component 11, a support component 12, and multiple material cylinder components 13. The support component 12 is located inside the housing component 11 and has multiple positioning mounting seats. The bottoms of the multiple material cylinder components 13 extend into the multiple positioning mounting seats respectively, and the positioning mounting seats position and fix the material cylinder components 13. The tops of the multiple material cylinder components 13 extend upward in the vertical direction respectively. The suction component 2 includes multiple pump components 21, multiple material suction guide components 22, and multiple piercing components 23. The multiple pump components 21 are all located at the bottom of the support component 12. Each pump component 21 is connected to one end of a material suction guide component 22. The multiple piercing components 23 are respectively connected to the other end of the multiple material suction guide components 22. The multiple piercing components 23 are respectively located at the bottom of the multiple positioning mounting seats and are respectively connected to the bottom of the multiple material cylinder components 13. The material receiving assembly 3 includes a discharge component 31 and a material receiving component 32. The discharge component 31 is located on the housing component 11 and is connected to multiple pump components 21 respectively. The material receiving component 32 is directly opposite the discharge port of the discharge component 31.

[0024] The hair dye mixing machine in this embodiment is used for mixing hair dye colors. It also includes a controller and a control panel. The controller is a conventional color mixing machine controller, which is electrically connected to multiple pump components 21. The controller contains a color mixing control system. The control panel is electrically connected to the controller. The operator can control the controller through the control panel to control the multiple pump components 21 to perform color mixing operations. Multiple material cylinders 13 are filled with dyes of different colors. When the operator selects the desired dye color on the control panel, the controller controls the multiple pump components 21 to draw a certain amount of dye from the multiple material cylinders 13 into the material receiving container 32. After the dye in the material receiving container 32 is mixed evenly, the desired color dye is obtained. When the dye in the cartridge 13 is used up and a new cartridge 13 is needed, the cartridge 13 can be pulled out vertically and removed. The new cartridge 13 is then vertically inserted into the positioning mounting base, and the piercing part 23 at the bottom of the mounting base pierces the cartridge 13. The positioning mounting base positions and fixes the cartridge 13. The replacement of the cartridge 13 is simple and reduces the difficulty of operation. Since the top of the material cylinder 13 extends vertically upward, that is, in this embodiment the material cylinder 13 is a long columnar material cylinder, and multiple material cylinders 13 are arranged vertically and are all located on the surface of the support member 12, the capacity of the material cylinder 13 can be increased by setting the long columnar material cylinder 13. Multiple pumps 21 are located at the bottom of the support member 12, and the support member 12 separates the material cylinder 13 and the pumps 21. In this way, more material cylinders 13 can be arranged side by side on the surface of the support member 12. The structure layout is reasonable, which improves the space utilization rate inside the hair dye color mixing machine, increases the color variety of the hair dye color mixing machine, and thus can mix more colors of dye and improve the accuracy of color mixing.

[0025] Rereference Figures 1-4Specifically, the housing 11 is the housing of the color mixing machine, and the support 12 includes a positioning plate 121 and a support plate 122. The positioning plate 121 and the support plate 122 are spaced apart inside the housing 11. The positioning plate 121 has a plurality of first positioning holes 1211, and the support plate 122 has a plurality of second positioning holes 1221. The plurality of first positioning holes 1211 are respectively aligned with the plurality of second positioning holes 1221 and cooperate to form a positioning mounting seat. The bottom of the material cylinder 13 is hemispherical. After the bottom of the material cylinder 13 passes through the first positioning hole 1211, it is limited and abuts against the hole wall of the second positioning hole 1221. In practical applications, the positioning plate 121 and the support plate 122 separate the interior of the housing 11. The diameter of the first positioning hole 1211 is equal to the outer diameter of the cross-section of the barrel 13, and the diameter of the second positioning hole 1221 is smaller than the outer diameter of the cross-section of the barrel 13. It can be understood that the first positioning hole 1211 is used to limit and fix the barrel 13, so that the barrel 13 can stand vertically in the positioning mounting base. Since the bottom of the barrel 13 is hemispherical, the barrel 13 cannot pass through the second positioning hole 1221 completely, and the bottom of the barrel 13 is limited and abuts against the hole wall of the second positioning hole 1221. That is, the second positioning hole 1221 limits and fixes the bottom of the barrel 13. In this way, the first positioning hole 1211 and the second positioning hole 1221 cooperate to form a positioning mounting base to position and fix the barrel 13, so that it can stand vertically in the positioning mounting base.

[0026] Rereference Figures 1-4 Preferably, the support member 12 further includes a mounting plate 123, which is disposed inside the housing member 11 and located below the support plate 122. Multiple pumping components 21 are respectively disposed on the mounting plate 123. The mounting plate 123 provides mounting positions for the multiple pumping components 21, fixing their positions. In this specific application, the support plate 122 serves as the boundary, with multiple material cylinders 13 located on the upper layer of the support plate 122, and multiple pumping components 21 located on the lower layer. That is, the upper space of the support plate 122 is used to place the material cylinders 13, and the multiple material cylinders 13 are arranged vertically, resulting in a reasonable structural layout that improves the space utilization inside the hair dye color mixing machine, increases the variety of dyes, and broadens the application scenarios. Specifically, the housing 11 is also provided with a discharge hole and a support seat 14. The discharge component 31 is located at the discharge hole for discharging dye. The support seat 14 is located at the bottom of the color mixing machine housing and directly below the discharge port of the discharge component 31. There is a receiving position between the support seat 14 and the color mixing machine housing. The support component 32 is placed on the receiving position of the support seat 14 to receive the discharging dye.

[0027] Rereference Figures 1-4Preferably, the mounting plate 123 has multiple mounting slots 1231, and multiple pump components 21 are detachably snapped into the multiple mounting slots 1231 respectively. In specific applications, the mounting slots 1231 are semi-circular slots, and the pump components 21 have arc-shaped grooves corresponding to the positions of the mounting slots 1231. The mounting plate 123 can be embedded into the arc-shaped grooves, that is, the pump components 21 are embedded into the mounting slots 1231, so that the pump components 21 are snapped into the mounting plate 123. In this way, when the pump components 21 are damaged and need to be replaced, it is only necessary to remove the pump components 21 from the mounting slots 1231, and then remove the pump components 21 from the bottom of the housing component 11. There is no need to disassemble the support plate 122 or the cylinder component 13, that is, the pump components 21 can be quickly removed, reducing the difficulty of daily maintenance. Specifically, the mounting plate 123 has a first threaded hole, and the pump component 21 has a second threaded hole corresponding to the first threaded hole. When the first threaded hole and the second threaded hole are aligned, the pump component 21 can be fixed to the mounting plate 123 by passing a screw through the first threaded hole and the second threaded hole, which further improves the stability of the pump component 21 installation.

[0028] Reference Figure 5 , Figure 5The image shows a side view of the material cylinder component in Embodiment 1. Preferably, the material cylinder component 13 includes a material cylinder body 131 and a connecting body 132. The bottom of the material cylinder body 131 passes through the first positioning hole 1211 and is limited to abutting against the wall of the second positioning hole 1221. One end of the connecting body 132 communicates with the bottom of the material cylinder body 131, and the other end of the connecting body 132 passes through the second positioning hole 1221 and communicates with the piercing member 23. In specific applications, the material cylinder body 131 is a long, cylindrical material cylinder. The material cylinder body 131 is set perpendicular to the support plate 122, giving it a certain height, which can effectively increase the capacity of the material cylinder component 13 and reduce the replacement frequency. Multiple material cylinder bodies 131 are arranged side by side, and the direction of the line connecting the multiple material cylinder bodies 131 is perpendicular to the length direction of the material cylinder body 131. In this way, more material cylinder bodies 131 can be set with the same bottom area of ​​the hair dye color matching machine, thereby increasing the color variety of the hair dye color matching machine. The connecting body 132 is used to connect with the piercing member 23, which is a piercing tube with one end in the shape of a needle. The piercing member 23 pierces the bottom of the connecting body 132, connecting the connecting body 132 with the material extraction guide tube 22. At this time, the dye in the barrel body 131 can be drawn through the material extraction guide tube 22 to the discharge member 31 for discharge by the suction action of the pump 21. Specifically, both the barrel body 131 and the connecting body 132 are barrel shells with a material bag inside containing dye. The bottom of the connecting body 132 is open and covered with a sealing film. After the piercing member 23 pierces the sealing film and enters the connecting body 132, it can pierce the material bag. Furthermore, the barrel body 131 includes a shell 1311 and a cover 1312, which are detachably installed by threads. The connecting body 132 is located at the bottom of the cover 1312, and the bottom of the cover 1312 is hemispherical. When the dye in a certain material cylinder 13 is used up, the material cylinder 13 can be taken out, the cover 1312 can be unscrewed, the internal material bag can be replaced, and the cover 1312 can be tightened again for reuse.

[0029] Rereference Figures 1-4Preferably, the pump component 21 includes a peristaltic pump 211 and a discharge conduit. Multiple peristaltic pumps 211 are detachably snap-fitted into multiple mounting slots 1231. The inlets of the multiple peristaltic pumps 211 are connected to one end of multiple extraction conduit components 22, and the outlets of the multiple peristaltic pumps 211 are connected to one end of multiple discharge conduits. The multiple discharge conduits are connected to the discharge component 31. The peristaltic pumps 211 improve the accuracy of dye extraction and the precision of dye color matching. Specifically, the discharge component 31 is a discharge adapter with multiple independently operated discharge conduit ports. Each discharge conduit port is connected to a separate discharge conduit, meaning each discharge conduit port of the discharge component 31 discharges a single color dye. Each color dye has an independent discharge channel, thus avoiding dye mixing and contamination within the discharge conduit due to the use of the same discharge conduit port, and improving the accuracy of color matching.

[0030] Refer to together Figure 6 , Figure 6 The diagram below shows the structure of the material cylinder and the extraction guide pipe in Embodiment 1. Preferably, the extraction guide pipe 22 includes an extraction guide pipe 221 and a waste shell 222. The waste shell 222 is located at the bottom of the support plate 122, and the piercing member 23 is inserted through the waste shell 222. One end of the extraction guide pipe 221 is connected to the pump 21, and the other end of the extraction guide pipe 221 is connected to the piercing member 23. When dye accidentally leaks from the main body 131 or the connecting body 132, the leaked dye can be collected in the waste shell 222. The waste shell 222 can prevent the dye from flowing to the bottom of the support plate 122, thus preventing dye from dripping onto the pump 21, the extraction guide pipe 221, and the workbench, saving time for cleaning up dye contamination. Specifically, the waste shell 222 has a waste receiving groove, and the piercing element 23 passes through the bottom of the waste receiving groove. The waste shell 222 covers the bottom of the support plate 122, and the bottoms of the connecting body 132 and the material cylinder body 131 are both located within the waste receiving groove. Furthermore, the waste shell 222 is detachably installed on the bottom of the support plate 122. The support plate 122 has a third threaded hole, and the waste shell 222 has a fourth threaded hole corresponding to the third threaded hole. A screw passes through the third threaded hole and the fourth threaded hole to detachably install the waste shell 222 on the bottom of the support plate 122. Thus, when the dye in the waste shell 222 is full, the waste shell 222 can be removed and replaced. The waste shell 222 has a discharge hole, and the wall of the discharge hole is fitted with a sealing ring. The material extraction guide 221 and the piercing element 23 can pass through the discharge hole into the waste shell 222 or be pulled out from the bottom of the waste shell 222.

[0031] Rereference Figure 1Preferably, the material receiving component 3 further includes a weighing element 33, which is located on the housing 11 and below the discharge port of the discharge component 31. The material receiving component 32 is placed on the weighing element 33. In specific applications, the weighing element 33 is an electronic weighing scale, which is set on the material receiving base 14 to weigh the weight of the dye in the material receiving component 32. The weighing element 33 is also electrically connected to the controller to facilitate real-time monitoring of the weight of the dye in the material receiving component 32. That is, after each dye discharge, the actual dye discharge amount can be obtained by the change in the reading of the weighing element 33. Compared with the preset discharge amount data, it can be determined whether the dye is discharged according to the preset amount, which is convenient for subsequent tracking and calibration, and improves the accuracy of dye mixing. Specifically, the material receiving component 32 is a material receiving bucket. In this embodiment, there are nine units each of the following: material cylinder 13, positioning mounting base, pump 21, material extraction guide 22, and piercing member 23. The housing 11 is square, meaning the nine positioning mounting bases in this embodiment are arranged in an array. Each material cylinder 13 is paired with one positioning mounting base, one pump 21, one material extraction guide 22, and one piercing member 23. Of course, in other embodiments, the number of material cylinder 13, positioning mounting base, pump 21, material extraction guide 22, and piercing member 23 can be set according to actual needs, and is not limited here.

[0032] Reference Figure 7 , Figure 7 The diagram below illustrates the structure of the cover component in Embodiment 1. Preferably, the material receiving assembly 3 further includes a cover component 34, which is detachably installed over the outlet of the discharge component 31. By installing the cover component 34, when the hair dye color mixing machine is not performing color mixing, the cover component 34 is placed over the outlet of the discharge component 31 to prevent the dye at the outlet of the discharge component 31 from being exposed to air for extended periods, causing it to dry and clog the discharge conduit and the outlet of the discharge component 31, thus preventing damage to the color mixing machine and extending its service life. Furthermore, the cover component 34 includes a discharge cap and an anti-drying liquid. The anti-drying liquid is located inside the discharge cap. When the cover component 34 is placed over the outlet of the discharge component 31, the anti-drying liquid keeps the outlet of the discharge component 31 moist, further preventing the dye at the outlet of the discharge component 31 from drying out. In this embodiment, the anti-drying liquid is water. Since commonly used dyes are insoluble in water, this avoids color mixing at the outlet of the discharge component 31. Of course, in other embodiments, the anti-drying liquid can also be other liquids incompatible with the dye, which will not be elaborated here. Specifically, the inner wall of the cover component 34 is provided with threads, and the outlet of the discharge component 31 is provided with a threaded post. The cover component 34 can be installed and disassembled by screwing the threads to the threaded post.

[0033] Example 2: Reference Figure 8 and Figure 9 , Figure 8 This is a schematic diagram of the hair dye mixing machine in Example 2. Figure 9This is another structural schematic diagram of the hair dye mixing machine in Embodiment 2. The difference between the hair dye mixing machine in this embodiment and Embodiment 1 is that the housing component 11 in this embodiment is cylindrical. It can be understood that the hair dye mixing machine in this embodiment is divided into three areas: a barrel area 100, a pipe area 101, and a discharge area 102. The carrier component 12, barrel component 13, and pump component 21 are all located in the barrel area 100. The carrier component 12 divides the barrel area 100 into upper and lower layers, with the barrel component 13 located in the upper layer and the pump component 21 in the lower layer. The discharge component 31 and the receiving component 32 are located in the discharge area 102. The pipe area 101 is used to accommodate the discharge conduit; that is, one end of the discharge conduit is connected to the peristaltic pump 211, and the other end of the discharge conduit passes through the pipe area 101 and connects to the discharge component 31. Compared with Embodiment 1, the circular structure can further reduce the volume of the hair dye mixing machine, making it suitable for factories with limited space.

[0034] In summary, when the dye in the cartridge 13 is used up and a new cartridge 13 is needed, the cartridge 13 can be simply pulled out vertically and removed. The new cartridge 13 is then vertically inserted into the positioning mounting base, and the piercing element 23 at the bottom of the mounting base pierces the cartridge 13. The positioning mounting base then positions and fixes the cartridge 13. The replacement of the cartridge 13 is simple and reduces the difficulty of operation. Since the top of the material cylinder 13 extends vertically upward, that is, in this embodiment the material cylinder 13 is a long columnar material cylinder, and multiple material cylinders 13 are arranged vertically and are all located on the surface of the support member 12, the capacity of the material cylinder 13 can be increased by setting the long columnar material cylinder 13. Multiple pumps 21 are located at the bottom of the support member 12, and the support member 12 separates the material cylinder 13 and the pumps 21. In this way, more material cylinders 13 can be arranged side by side on the surface of the support member 12. The structure layout is reasonable, which improves the space utilization rate inside the hair dye color mixing machine, increases the color variety of the hair dye color mixing machine, and thus can mix more colors of dye and improve the accuracy of color mixing.

[0035] The above description is merely an embodiment of this application and is not intended to limit the scope of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of the claims of this application.

Claims

1. A hair dye color mixing machine, characterized in that, include: The main component (1) includes a housing (11), a support (12), and a plurality of cylindrical components (13). The support (12) is disposed inside the housing (11). The support (12) is provided with a plurality of positioning mounting seats. The bottoms of the plurality of cylindrical components (13) extend into the plurality of positioning mounting seats respectively. The positioning mounting seats position and fix the cylindrical components (13). The tops of the plurality of cylindrical components (13) extend upward in the vertical direction respectively. A suction assembly (2) includes multiple pump components (21), multiple material suction guide components (22), and multiple piercing components (23). The multiple pump components (21) are all located at the bottom of the support member (12). Each pump component (21) is connected to one end of a material suction guide component (22). The multiple piercing components (23) are respectively connected to the other ends of the multiple material suction guide components (22). The multiple piercing components (23) are respectively located at the bottom of the multiple positioning mounting seats and are respectively connected to the bottom of the multiple material cylinder components (13). The material receiving assembly (3) includes a discharge component (31) and a material receiving component (32). The discharge component (31) is located on the housing component (11) and is connected to a plurality of pump components (21). The material receiving component (32) is directly opposite the discharge port of the discharge component (31).

2. The hair dye mixing machine according to claim 1, characterized in that, The carrier (12) includes a positioning plate (121) and a support plate (122). The positioning plate (121) and the support plate (122) are spaced apart inside the housing (11). The positioning plate (121) has a plurality of first positioning holes (1211), and the support plate (122) has a plurality of second positioning holes (1221). The plurality of first positioning holes (1211) are respectively aligned with the plurality of second positioning holes (1221) and cooperate to form the positioning mounting seat. The bottom of the material cylinder (13) is hemispherical. The bottom of the material cylinder (13) passes through the first positioning hole (1211) and is limited to abut against the hole wall of the second positioning hole (1221).

3. The hair dye mixing machine according to claim 2, characterized in that, The carrier (12) also includes a mounting plate (123), which is disposed inside the housing (11) and located below the support plate (122). A plurality of pump components (21) are respectively disposed on the mounting plate (123).

4. The hair dye mixing machine according to claim 3, characterized in that, The mounting plate (123) has multiple mounting slots (1231), and the multiple pump components (21) are respectively detachably snapped into the multiple mounting slots (1231).

5. The hair dye mixing machine according to claim 4, characterized in that, The pumping component (21) includes a peristaltic pump (211) and a discharge conduit. The peristaltic pumps (211) are respectively detachably snapped into the mounting slots (1231). The inlets of the peristaltic pumps (211) are respectively connected to one end of the pumping conduit component (22). The outlets of the peristaltic pumps (211) are respectively connected to one end of the discharge conduit. The discharge conduits are respectively connected to the discharge component (31).

6. The hair dye mixing machine according to claim 2, characterized in that, The material cylinder component (13) includes a material cylinder body (131) and a connecting body (132). The bottom of the material cylinder body (131) passes through the first positioning hole (1211) and is limited to abutting against the hole wall of the second positioning hole (1221). One end of the connecting body (132) is connected to the bottom of the material cylinder body (131), and the other end of the connecting body (132) passes through the second positioning hole (1221) and is connected to the piercing component (23).

7. The hair dye mixing machine according to claim 6, characterized in that, The material extraction conduit (22) includes a material extraction conduit (221) and a waste shell (222). The waste shell (222) is located at the bottom of the support plate (122). The piercing member (23) passes through the waste shell (222). One end of the material extraction conduit (221) is connected to the pump (21), and the other end of the material extraction conduit (221) is connected to the piercing member (23).

8. The hair dye mixing machine according to claim 7, characterized in that, The waste shell (222) is detachably installed at the bottom of the support plate (122).

9. The hair dye mixing machine according to claim 1, characterized in that, The material receiving component (3) further includes a weighing component (33), which is disposed on the housing component (11) and located below the discharge port of the discharge component (31), and the material receiving component (32) is placed on the weighing component (33).

10. The hair dye mixing machine according to claim 1, characterized in that, The material receiving component (3) also includes a cover (34), which is detachably installed over the discharge port of the material discharging component (31).

Citation Information

Patent Citations

  • Color mixing equipment

    CN217164235U