Drainage comb tooth seat
Through the design of the detachable liquid-guiding comb seat and peristaltic pump liquid extraction device, the problem of the indiscrete liquid-guiding comb teeth in the existing healthy hair comb is solved, and the convenient replacement and cleaning of the liquid-guiding comb teeth is achieved, which improves the liquid delivery efficiency and service life, and ensures the uniform distribution and stable output of the liquid.
Patent Information
- Application Number
- CN202421308362.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-07
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-06-07
AI Technical Summary
The non-removable design of the existing hair-hardening combs is caused by the indiscretion of the liquid-guided comb teeth and combs, making it difficult to clean and inconvenient to replace and maintain, limiting the diversity and adaptability of the products, and increasing the cost of use and waste of resources.
A detachable design liquid-guiding comb tooth seat is adopted, including a seat body, liquid-guiding comb teeth and liquid-guiding block, and a plug-in socket and a liquid-guiding plug-in connector are provided. The liquid-guiding comb teeth are connected to the liquid-guiding chamber. There is a liquid-guiding channel at the center of the surface of the liquid-guiding block and a flow hole is opened at the end. The liquid-guiding branch channel is matched with the comb teeth. Silicone material and a peristaltic pump liquid extraction device are used.
It realizes convenient replacement and cleaning of liquid-guiding comb teeth, improves flexibility and adaptability, reduces resource waste, improves liquid delivery efficiency and service life, and ensures even distribution and stable output of liquids.
Smart Images

Figure CN223143027U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a liquid guiding comb tooth seat. Background Art
[0002] Existing hair care combs usually have a liquid guiding function and can evenly distribute the care liquid onto the hair. However, the designs of these hair care combs have some significant drawbacks. In traditional hair care combs, the liquid guiding function is mainly achieved by liquid guiding comb teeth fixed on the comb body, and these liquid guiding comb teeth and the comb body are an integral non-detachable structure. This design exposes the following problems in use:
[0003] Non-detachability: The integrated design of the liquid guiding comb teeth and the comb body makes it impossible for users to disassemble them for cleaning, maintenance or replacement. This not only makes it inconvenient for maintenance but also may lead to a shortened service life.
[0004] Inconvenience for replacement: Since the liquid guiding comb teeth are fixed on the comb body, users cannot replace different types of liquid guiding comb teeth as needed, thus limiting the diversity and adaptability of the product.
[0005] Difficulty in cleaning: The integrated design makes it difficult to thoroughly clean the comb teeth and the liquid guiding device. Over time, it is easy to breed bacteria, which has an adverse impact on the hair and scalp health of users.
[0006] Lack of flexibility: Due to the inability to disassemble and replace, when users need to replace liquid guiding comb teeth with different functions or different flow rates, they have to purchase an entire new comb body, increasing the usage cost and wasting resources. Content of the Utility Model
[0007] The purpose of the utility model is to provide a liquid guiding comb tooth seat with liquid separation and liquid guiding functions.
[0008] The purpose of the utility model is achieved as follows:
[0009] A liquid guiding comb tooth seat includes a seat body, liquid guiding comb teeth for discharging liquid, and a liquid guiding block. It is characterized in that: the seat body is provided with a plug-in seat for connecting a liquid storage bottle, and the seat body is provided with a first liquid guiding plug joint communicating with the plug-in seat;
[0010] The seat body is provided with a liquid separation cavity, and the seat body is provided with a second liquid guiding plug joint communicating with the liquid separation cavity;
[0011] The liquid guiding comb teeth are arranged on the seat body at intervals, and the liquid guiding comb teeth communicate with the liquid separation cavity;
[0012] The liquid guiding block is placed in the liquid separation cavity. A liquid guiding main channel is arranged at the central position of the surface of the liquid guiding block. The end of the liquid guiding main channel is closed, and diversion holes corresponding to the number of liquid guiding branch channels are opened at the end of the liquid guiding main channel. The diversion holes form the outlet of the liquid guiding main channel;
[0013] The bottom surface of the liquid guiding block is provided with liquid guiding branch channels at intervals around the periphery of the liquid guiding main channel, and the number of the liquid guiding branch channels matches the number of the liquid guiding comb teeth;
[0014] The inlet of the liquid guiding main channel is communicated with the second liquid guiding socket, the diversion holes are communicated with the inlets of the liquid guiding branch channels, and the outlets of the liquid guiding branch channels are communicated with the corresponding liquid guiding comb teeth.
[0015] Detachable design: The liquid guiding comb tooth seat is designed to be detachable and can be easily installed or removed on the comb body. This enables users to replace different liquid guiding comb teeth according to needs, enhancing the flexibility and adaptability of use. At the same time, it is convenient for cleaning and maintenance, extending the service life of the product.
[0016] Convenient cleaning: Since the liquid guiding comb tooth seat and the comb body are separable, users can conveniently clean each component, avoiding the growth of bacteria and ensuring hygienic use.
[0017] Enhanced user experience: Through the replaceable liquid guiding comb teeth, users can select suitable comb tooth types or functions according to different needs, such as choosing comb teeth of different sizes, materials or special functions, significantly enhancing the versatility and user experience of the product.
[0018] Cost savings: The detachable and replaceable design enables users to avoid frequently purchasing a whole new product and only need to replace the corresponding liquid guiding comb teeth, saving the usage cost and reducing resource waste.
[0019] Uniform liquid distribution: By setting the liquid guiding main channel at the central position on the surface of the liquid guiding block and opening diversion holes at its end, it can ensure that after the nutrient solution enters the liquid guiding main channel, it is evenly distributed to each liquid guiding branch channel through the diversion holes, thus achieving uniform liquid distribution.
[0020] Optimized liquid flow path: This design simplifies the path of the liquid from the main channel to the branch channels, effectively reducing the resistance and energy loss during the liquid flow process and improving the liquid delivery efficiency.
[0021] Stability and reliability: By arranging the liquid guiding branch channels at intervals on the bottom surface of the liquid guiding block and communicating them with the diversion holes, it can ensure that the liquid flows smoothly from the liquid guiding main channel to each branch channel, ensuring consistent liquid output from each liquid guiding comb tooth and improving the overall usage effect.
[0022] Reduced risk of liquid leakage: The closed design at the end of the liquid guiding main channel and the setting of the diversion holes can effectively control the liquid flow path, reduce the risk of liquid leakage and maintain the sealing performance of the liquid guiding system.
[0023] Compact structure and easy to manufacture: This design makes the liquid guide block structure more compact, and the manufacturing and assembly processes are simpler, which is conducive to improving production efficiency and reducing manufacturing costs.
[0024] Improve service life: The optimized liquid flow path and efficient liquid distribution method can reduce wear and aging during liquid transportation, and improve the service life of the hair care comb.
[0025] Through this design, the liquid delivery system of the hair care comb can distribute the nutrient solution to each liquid guide comb tooth more efficiently and evenly, ensuring stable and uniform liquid flow during use, and enhancing the performance and user experience of the product.
[0026] The object of the present utility model can also be solved by the following technical measures:
[0027] Further, the liquid guide comb tooth is a hollow cylinder, and liquid outlet holes are opened at a position on the side wall of the hollow cylinder higher than its bottom end, and the upper port of the hollow cylinder abuts against the outlet of the corresponding liquid guide branch channel.
[0028] Avoid clogging: In traditional designs, the liquid outlet holes are located at the bottom end of the liquid guide comb teeth, which are easily blocked by the scalp during hair combing, resulting in unsmooth liquid outflow. In the present utility model, the liquid outlet holes are arranged at a position on the side wall of the hollow cylinder higher than the bottom end, avoiding direct contact between the scalp and the liquid outlet holes, thus effectively preventing clogging of the liquid outlet holes and ensuring smooth liquid output.
[0029] Improve liquid distribution uniformity: The liquid outlet holes are arranged at a high position on the side wall of the hollow cylinder, enabling the liquid to flow out from a higher position, ensuring that during the combing process, the liquid can be evenly distributed on the hair and scalp, optimizing the liquid application effect and enhancing the hair care function.
[0030] Reduce liquid waste: The high-position liquid outlet hole design avoids waste when the liquid flows out directly from the bottom end, enabling more nutrient solution to be effectively utilized, improving the liquid usage efficiency, and reducing unnecessary waste.
[0031] Enhance infusion stability: The hollow cylinder structure and the side wall liquid outlet hole design enable the liquid to flow out more smoothly during the combing process, avoiding liquid splashing or uneven application caused by the combing action, and ensuring the stability and comfort during use.
[0032] Simplify cleaning and maintenance: The hollow cylinder and high-position side wall liquid outlet hole design make the liquid channel simpler, reducing the risk of liquid residue and clogging, facilitating users to clean and maintain after use, ensuring the hygiene and smoothness of the liquid channel, and extending the service life of the product.
[0033] Further, a liquid guiding main channel groove is provided on the surface of the liquid guiding block, and a liquid guiding branch channel groove is provided on the bottom surface of the liquid guiding block. The liquid guiding block is closely attached to the inner wall of the liquid separation cavity. The liquid guiding main channel groove and the inner wall of the liquid separation cavity enclose a liquid guiding main channel, and the liquid guiding branch channel groove and the inner wall of the liquid separation cavity enclose a liquid guiding branch channel.
[0034] Efficient liquid guiding channel design: The bottom surface and the surface of the liquid guiding block are respectively provided with a liquid guiding branch channel groove and a liquid guiding main channel groove. By closely attaching the liquid guiding block to the inner wall of the liquid separation cavity, these channel grooves and the inner wall jointly enclose a complete liquid guiding channel structure, ensuring that the liquid can flow smoothly, reducing the resistance and loss during the liquid flow process, and improving the liquid guiding efficiency.
[0035] Convenient for manufacturing and assembly: The liquid guiding channel is designed as a groove structure of the liquid guiding block and is enclosed into a channel by the inner wall of the liquid separation cavity, making the manufacturing and assembly of the liquid guiding block more convenient. It reduces the difficulty of independently processing and assembling complex channels, lowers the production cost, and improves the manufacturing efficiency.
[0036] Further, the liquid guiding block is a silica gel liquid guiding block.
[0037] Improve sealing performance and durability: The silica gel material has good elasticity and sealing performance. By using a silica gel block to design the liquid guiding path, it can effectively prevent liquid leakage and enhance the sealing performance of the system. At the same time, the durability and anti-wear performance of the silica gel material improve the service life of the liquid guiding block.
[0038] Further, it further includes a liquid storage bottle. The liquid storage bottle includes a bottle body with an open top and a piston. The piston passes through the open port and is placed in the inner cavity of the bottle body. A liquid storage cavity is formed between the piston and the inner cavity of the bottle body. An insertion joint communicating with the liquid storage cavity is provided at the bottom of the bottle body;
[0039] The liquid storage bottle is seated on the seat body, and the insertion joint is inserted into the insertion socket to connect the liquid storage bottle and the seat body.
[0040] Simplify the liquid replacement process: The liquid storage bottle is inserted into the insertion socket of the seat body through the insertion joint to form a stable connection with the seat body. When the user replaces the liquid, they only need to insert the liquid storage bottle into the insertion socket, which is simple and fast to operate, greatly simplifying the liquid replacement process.
[0041] Enhance the user experience: The liquid storage bottle is designed simply and is convenient to operate. When the user uses the hair care comb, they can add and replace the liquid more easily, reducing the operation steps and time, and improving the comfort and satisfaction of the user experience.
[0042] Realize negative pressure liquid extraction: When the liquid extraction device extracts the nutrient solution in the liquid storage bottle, the generated negative pressure can drive the piston to move. This negative pressure mechanism enables the negative pressure to effectively extract the liquid in the liquid storage bottle regardless of the angle of the hair care comb, ensuring the continuity and consistency of the liquid delivery process, and being unrestricted by the use angle.
[0043] Enhance the flexibility of use: Since the liquid extraction device can work effectively at any angle, users do not need to worry about the problem of liquid being unable to be extracted when using the hair care comb. This design greatly improves the flexibility and convenience of use, enabling users to easily use the hair care comb in any posture and enhancing the user experience.
[0044] Improve the utilization rate of the liquid: The piston design in the liquid storage bottle can ensure that the liquid is fully extracted under the action of negative pressure, reduce liquid residue, improve the utilization rate of the nutrient solution, ensure that every drop of liquid can be effectively utilized, and improve the use efficiency.
[0045] Prevent air from entering: The liquid storage bottle and the plug-in socket are sealed and connected, effectively preventing air from entering the liquid delivery system, avoiding liquid oxidation and pollution caused by air entry, and ensuring the quality and efficacy of the nutrient solution.
[0046] Improve the durability of the product: By ensuring the tightness and stability of the liquid delivery system, the risk of liquid leakage and system damage is reduced, the service life of the product is extended, and the overall durability and reliability of the product are enhanced.
[0047] The beneficial effects of the present utility model are as follows:
[0048] In the present utility model, the detachable liquid guiding comb tooth seat design enables users to conveniently replace and clean, maintaining the hygiene and service life of the comb and enhancing the user experience.
[0049] In the present utility model, by arranging the liquid guiding main channel at the central position on the surface of the liquid guiding block and opening a diversion hole at its end, it can ensure that after the nutrient solution enters the liquid guiding main channel, it is evenly distributed to each liquid guiding branch channel through the diversion hole, thereby realizing the even distribution of the liquid. This design simplifies the path of the liquid from the main channel to the branch channels, effectively reducing the resistance and energy loss of the liquid during the flow process, improving the liquid delivery efficiency. By arranging the liquid guiding branch channels at intervals on the bottom surface of the liquid guiding block and connecting them with the diversion hole, it can ensure that the liquid flows smoothly from the liquid guiding main channel to each branch channel, ensuring that the liquid output of each liquid guiding comb tooth is consistent and improving the overall use effect. Description of the Drawings
[0050] Figure 1 It is a schematic diagram of the hair care comb of Embodiment 1.
[0051] Figure 2Assembly drawing of the hair care comb of Example 1.
[0052] Figure 3 Another perspective assembly drawing of the hair care comb of Example 1.
[0053] Figure 4 Cross-sectional view of the hair care comb of Example 1 (state without installing the liquid guide comb tooth base).
[0054] Figure 5 Cross-sectional view of the hair care comb of Example 1 (state without installing the liquid guide comb tooth base).
[0055] Figure 6 Exploded view of the hair care comb of Example 1.
[0056] Figure 7 Schematic diagram of the liquid guide comb tooth base of the hair care comb of Example 1.
[0057] Figure 8 Another perspective schematic diagram of the liquid guide comb tooth base of the hair care comb of Example 1.
[0058] Figure 9 Another perspective schematic diagram of the liquid guide comb tooth base of the hair care comb of Example 1.
[0059] Figure 10 Cross-sectional view of the liquid storage bottle of the hair care comb of Example 1.
[0060] Figure 11 Exploded view of the liquid guide comb tooth base of the hair care comb of Example 1.
[0061] Figure 12 Another perspective exploded view of the liquid guide comb tooth base of the hair care comb of Example 1.
[0062] Figure 13 Assembly drawing of the hair care comb of Example 2.
[0063] Figure 14 Another perspective assembly drawing of the hair care comb of Example 2.
[0064] Figure 15 Cross-sectional view of the hair care comb of Example 2 (state with the liquid guide comb tooth base installed).
[0065] Figure 16 Cross-sectional view of the hair care comb of Example 2 (state with the liquid guide comb tooth base installed).
[0066] Figure 17 Cross-sectional view of the hair care comb of Example 2 (state without installing the liquid guide comb tooth base).
[0067] Figure 18 Schematic diagram of the liquid guide block.
[0068] Figure 19 Another perspective schematic diagram of the liquid guiding block.
[0069] Figure 20 Schematic diagram of the liquid guiding block of Embodiment 3.
[0070] Figure 21 Another perspective schematic diagram of the liquid guiding block of Embodiment 3. Detailed implementation manners
[0071] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments:
[0072] Embodiment, as shown in Figures 1 to 19 A hair care comb, comprising a comb body 1, a liquid pumping device 2, and a liquid guiding comb tooth seat 3. The comb body 1 is provided with a liquid guiding comb tooth seat installation cavity 11. An inlet liquid channel 4 and an outlet liquid channel 5 are provided in the liquid guiding comb tooth seat installation cavity 11. A valve 6 is provided in the inlet liquid channel 4 and / or the outlet liquid channel 5;
[0073] The liquid pumping device 2 is arranged in the comb body 1. The inlet of the liquid pumping device 2 is communicated with the inlet liquid channel 4, and the outlet of the liquid pumping device 2 is communicated with the outlet liquid channel 5;
[0074] The liquid guiding comb tooth seat 3 includes a seat body 31 and liquid guiding comb teeth 32 for discharging liquid. The seat body 31 is provided with a plug socket 33 for connecting a liquid storage bottle. The plug socket 33 is provided with a first liquid guiding plug joint 331;
[0075] The seat body 31 is provided with a liquid distribution cavity 34. The plug socket 33 is provided with a second liquid guiding plug joint 332 communicating with the liquid distribution cavity 34;
[0076] The liquid guiding comb teeth 32 are arranged on the seat body 31 at intervals. The liquid guiding comb teeth 32 are communicated with the liquid distribution cavity 34;
[0077] The liquid guiding comb tooth seat 3 is detachably arranged in the liquid guiding comb tooth seat installation cavity 11. At the same time, the first liquid guiding plug joint 331 is communicated with the inlet liquid channel 4, and the second liquid guiding plug joint 332 is communicated with the outlet liquid channel 5.
[0078] Furthermore, the inlet liquid channel 4 is provided with the valve 6. The valve 6 includes a ball 61 and a spring 62. The ball 61 and the spring 62 are placed in the inlet liquid channel 4. One end of the spring 62 abuts against the outlet of the inlet liquid channel 4, and the other end of the spring 62 abuts against the ball 61. The elastic force of the spring 62 pushes the ball 61 to abut against the inlet of the inlet liquid channel 4 so that the ball 61 closes the inlet of the inlet liquid channel 4.
[0079] Further, it further includes a liquid guiding block 7, the liquid guiding block 7 is placed in the liquid separation cavity 34 and closely adheres to the inner wall of the liquid separation cavity 34, the liquid guiding block 7 is provided with a main liquid guiding channel 8 and liquid guiding branch channels 9, and the number of the liquid guiding branch channels 9 matches the number of the liquid guiding comb teeth 32;
[0080] The inlet of the main liquid guiding channel 8 communicates with the second liquid guiding socket 332, the outlets of the main liquid guiding channel 8 respectively communicate with the inlets of the liquid guiding branch channels 9, and the outlets of the liquid guiding branch channels 9 communicate with the corresponding liquid guiding comb teeth 32.
[0081] Further, a liquid separation concentration port 71 is arranged at the central position of the liquid guiding block 7, the liquid guiding branch channels 9 are arranged on the liquid guiding block 7 at intervals and are located outside the liquid separation concentration port 71, and the inlets of the liquid guiding branch channels 9 communicate with the liquid separation concentration port 71;
[0082] The liquid guiding block 7 is provided with a liquid inlet concentration port 72, and the second liquid guiding socket 332 communicates with the liquid inlet concentration port 72;
[0083] The inlet of the main liquid guiding channel 8 communicates with the liquid inlet concentration port 72, and the outlet of the main liquid guiding channel 8 communicates with the liquid separation concentration port 71.
[0084] Further, the liquid guiding branch channels 9 are arranged on the surface of the liquid guiding block 7, and the main liquid guiding channel 8 is arranged on the bottom surface of the liquid guiding block 7.
[0085] Further, a liquid guiding branch channel groove is arranged on the bottom surface of the liquid guiding block 7, a main liquid guiding channel groove is arranged on the surface of the liquid guiding block 7, the liquid guiding block 7 closely adheres to the inner wall of the liquid separation cavity 34, the main liquid guiding channel groove and the inner wall of the liquid separation cavity 34 enclose the main liquid guiding channel 8, and the liquid guiding branch channel groove and the inner wall of the liquid separation cavity enclose the liquid guiding branch channels 9.
[0086] Further, a diaphragm 10 for closing the outlet of the liquid guiding branch channel 9 is arranged at the position corresponding to the outlet of the liquid guiding branch channel 9 on the bottom surface of the liquid guiding block 7, and a cutting opening 101 is formed in the diaphragm 10.
[0087] Further, the liquid guiding comb teeth 32 are hollow cylinders, liquid outlet holes 321 are formed in the side walls of the hollow cylinders at positions higher than their bottom ends, and the upper ports of the hollow cylinders abut against the corresponding diaphragms 10 and communicate with the corresponding liquid guiding branch channels 9.
[0088] Further, it further includes a liquid storage bottle 200, the liquid storage bottle 200 includes a bottle body 201 with an open top and a piston 202, the piston 202 passes through the open port and is placed in the inner cavity of the bottle body 201, a liquid storage cavity 203 is formed between the piston 202 and the inner cavity of the bottle body 201, and a socket 100 communicating with the liquid storage cavity 203 is arranged at the bottom of the bottle body 201;
[0089] The liquid storage bottle 200 is seated on the seat body 31, and the plug connector 100 is inserted into the socket 33 so that the liquid storage bottle 200 and the seat body 31 are connected.
[0090] Furthermore, the openings of the liquid inlet channel 4 and the liquid discharge channel 5 respectively face the opening of the liquid guiding comb tooth seat installation cavity 11, or the openings of the liquid inlet channel 4 and the liquid discharge channel 5 respectively face the inner cavity of the liquid guiding comb tooth seat installation cavity 11.
[0091] Furthermore, the liquid pumping device 2 is a peristaltic pump.
[0092] Principle of the installation process of the liquid guiding comb tooth seat 3:
[0093] When installing the liquid guiding comb tooth seat 3, first insert the liquid guiding comb tooth seat 3 into the liquid guiding comb tooth seat installation cavity 11 in the comb body 1.
[0094] The liquid guiding comb tooth seat 3 is connected to the liquid guiding comb tooth seat installation cavity 11 in a detachable manner. At the same time, the first liquid guiding plug connector 331 is communicated with the liquid inlet channel 4, and the second liquid guiding plug connector 332 is communicated with the liquid discharge channel 5.
[0095] This design ensures that the liquid guiding comb tooth seat 3 can be stably installed in the comb body 1, and at the same time, the liquid inlet channel 4 and the liquid discharge channel 5 are communicated with the liquid pumping device 2, providing a channel for the subsequent liquid pumping process.
[0096] Principle of the liquid pumping process at any angle is as follows:
[0097] A peristaltic pump is used as the liquid pumping device 2 in the liquid pumping process. The peristaltic pump pushes the liquid by mechanically compressing the hose to achieve the extraction and transportation of the liquid.
[0098] When the peristaltic pump is started, the liquid inlet is communicated with the liquid inlet channel 4, and the liquid discharge port is communicated with the liquid discharge channel 5.
[0099] The peristaltic pump compresses the hose through mechanical movement, so that the liquid in the hose is pushed out. The liquid in the liquid inlet channel 4 is pushed into the seat body 31 of the liquid guiding comb tooth seat 3 and enters the liquid distribution cavity 34.
[0100] At the same time, the liquid guiding comb teeth 32 in the liquid guiding comb tooth seat 3 distribute the liquid to each liquid guiding comb tooth 32 and discharge it along the liquid guiding comb teeth 32.
[0101] Since in the liquid pumping process, the peristaltic pump compresses the hose through mechanical movement to push the liquid to flow. This movement causes a negative pressure area to be formed in the hose, thereby generating a negative pressure, which prompts the liquid to be extracted and transported along the pipeline. Therefore, the working principle of the liquid pumping device 2 ensures that no matter what the installation angle of the liquid guiding comb tooth seat 3 is, the liquid can be stably extracted and distributed, thus realizing the liquid pumping process at any angle.
[0102] Such a design ensures the stable extraction and diversion of the liquid, enabling the hair care comb to effectively conduct liquid delivery and hair care in different postures.
[0103] The working process for the nutrient solution to achieve uniform flow through the hair care comb is as follows:
[0104] First, the nutrient solution is stored in the liquid storage bottle 200 within the comb body 1. When using the hair care comb, the peristaltic pump is activated and begins to extract the nutrient solution from the liquid storage bottle 200. The peristaltic pump, with its unique working method (moving the liquid by squeezing the hose), can precisely control the flow rate and pressure of the liquid, ensuring the uniformity and continuity of the flow.
[0105] Subsequently, the nutrient solution is delivered to the liquid guiding block 7. Here, the nutrient solution first enters the liquid inlet concentration port 72 and then flows into the main liquid guiding channel 8. Through the main liquid guiding channel 8, the liquid is evenly distributed to each liquid guiding branch channel 9. These branch channels are designed to match the number of liquid guiding comb teeth 32, ensuring that each comb tooth can obtain sufficient nutrient solution.
[0106] Next, the nutrient solution flows into the liquid guiding comb teeth 32 through the branch channels. Each comb tooth is a hollow cylinder with liquid outlet holes 321 opened on its side wall. Since the upper port of the hollow cylinder is in contact with the diaphragm 10 of the liquid guiding branch channel 9, the liquid can smoothly flow out evenly through the liquid outlet holes 321. This diaphragm 10 has a cut 101, which not only plays a sealing role but also ensures that the liquid can flow out smoothly when necessary.
[0107] Through the above steps, the hair care comb can ensure that the nutrient solution is evenly distributed on the scalp and hair throughout the use process, achieving an ideal care effect. This finely regulated process not only improves the utilization efficiency of the liquid but also ensures the even distribution of the liquid, enabling both the scalp and hair to obtain sufficient nutrition.
[0108] In Embodiment 1, the openings of the liquid inlet channel 4 and the liquid discharge channel 5 respectively face the inner cavity of the liquid guiding comb tooth seat installation cavity 11:
[0109] In Embodiment 1, in combination Figures 1 to 12 As shown, in Embodiment 1, the openings of the liquid inlet channel 4 and the liquid discharge channel 5 respectively face the inner cavity of the liquid guiding comb tooth seat installation cavity 11. The user inserts the liquid guiding comb tooth seat 3 into the liquid guiding comb tooth seat installation cavity 11 within the comb body 1, and then moves it left and right for insertion, so that the first liquid guiding plug joint 331 is communicated with the liquid inlet channel 4, and the second liquid guiding plug joint 332 is communicated with the liquid discharge channel 5.
[0110] In Embodiment 2, the openings of the liquid inlet channel 4 and the liquid discharge channel 5 respectively face the opening of the liquid guiding comb tooth seat installation cavity 11:
[0111] In Embodiment 2, in combination Figures 13 to 17As shown, in Embodiment 2, the openings of the liquid inlet channel 4 and the liquid discharge channel 5 respectively face the opening of the liquid guide comb tooth seat installation cavity 11. The user inserts the liquid guide comb tooth seat 3 into the liquid guide comb tooth seat installation cavity 11 in the comb body 1. At the same time, the first liquid guide connector 331 is communicated with the liquid inlet channel 4, and the second liquid guide connector 332 is communicated with the liquid discharge channel 5.
[0112] Benefits of the openings of the liquid inlet channel 4 and the liquid discharge channel 5 respectively facing the opening of the liquid guide comb tooth seat installation cavity 11:
[0113] When the positions of the first liquid guide connector 331 and the second liquid guide connector 332 in Embodiment 2 are changed, and the installation process of the liquid guide comb tooth seat 3 is synchronously completed, the first liquid guide connector 331 is communicated with the liquid inlet channel 4, and the second liquid guide connector 332 is communicated with the liquid discharge channel 5. It is simpler and more convenient for the user to install.
[0114] Both of the above-mentioned Embodiment 1 and Embodiment 2 adopt a liquid guide block 7 such as Figure 18 and Figure 19 .
[0115] Embodiment 3: Replace the liquid guide block in the above-mentioned Embodiment 1 and Embodiment 2 with a liquid guide block such as Figure 20 and Figure 21 :
[0116] Combined with Figures 20 to 21 As shown, the liquid guide block 7 is provided with a liquid guide main channel 8 and liquid guide branch channels 9. The number of the liquid guide branch channels 9 matches the number of the liquid guide comb teeth 32. The surface center position of the liquid guide block 7 is provided with the liquid guide main channel 8. The inlet of the liquid guide main channel 8 is communicated with the second liquid guide connector 332. The end of the liquid guide main channel 8 is closed. The end of the liquid guide main channel 8 is provided with diversion holes 81 corresponding to the number of the liquid guide branch channels. The diversion holes 81 form the outlet of the liquid guide main channel 8.
[0117] The bottom surface of the liquid guide block 7 is provided with the liquid guide branch channels 9 at intervals around the liquid guide main channel 8. The diversion holes 81 are communicated with the inlets of the liquid guide branch channels 9.
[0118] The liquid guide comb tooth 32 is a hollow cylinder. A liquid outlet hole 321 is opened at a position on the side wall of the hollow cylinder higher than its bottom end. The upper port of the hollow cylinder abuts against the outlet of the corresponding liquid guide branch channel 9.
[0119] Beneficial effects of adopting the liquid guide block in Embodiment 3:
[0120] By setting the total liquid guiding channel at the central position on the surface of the liquid guiding block and opening diversion holes at its end, it can ensure that after the nutrient solution enters the total liquid guiding channel, it is evenly distributed to each liquid guiding branch channel through the diversion holes, thus achieving uniform liquid distribution. This design simplifies the path of the liquid from the total channel to the branch channels, effectively reducing the resistance and energy loss of the liquid during the flow process, and improving the liquid delivery efficiency. By arranging the liquid guiding branch channels at intervals on the bottom surface of the liquid guiding block and connecting them with the diversion holes, it can ensure that the liquid flows smoothly from the total liquid guiding channel to each branch channel, ensuring that the liquid output of each liquid guiding comb tooth is consistent and improving the overall use effect.
Claims
1. A liquid guiding comb tooth seat, comprising a seat body, liquid guiding comb teeth for discharging liquid, and a liquid guiding block, characterized in that: The base body is provided with a socket for connecting the liquid storage bottle, and the base body is provided with a first liquid guiding socket connector communicating with the socket. The base body is provided with a liquid distribution cavity, and the base body is provided with a second liquid guiding socket connector communicating with the liquid distribution cavity. The liquid guiding comb teeth are arranged on the base body at intervals, and the liquid guiding comb teeth communicate with the liquid distribution cavity. The liquid guiding block is placed in the liquid distribution cavity. A main liquid guiding channel is arranged at the central position of the surface of the liquid guiding block. The end of the main liquid guiding channel is closed, and a diversion hole corresponding to the number of liquid guiding branch channels is opened at the end of the main liquid guiding channel. The diversion hole forms the outlet of the main liquid guiding channel. Liquid guiding branch channels are arranged at intervals on the bottom surface of the liquid guiding block around the main liquid guiding channel. The number of the liquid guiding branch channels matches the number of the liquid guiding comb teeth. The inlet of the main liquid guiding channel communicates with the second liquid guiding socket connector. The diversion hole communicates with the inlet of the liquid guiding branch channel, and the outlet of the liquid guiding branch channel communicates with the corresponding liquid guiding comb tooth.
2. The liquid guide comb tooth seat according to claim 1, wherein: The liquid guiding comb tooth is a hollow cylinder. A liquid outlet hole is opened at a position on the side wall of the hollow cylinder higher than its bottom end. The upper port of the hollow cylinder abuts against the outlet of the corresponding liquid guiding branch channel.
3. The liquid guiding comb tooth seat according to claim 1, characterized in that: A main liquid guiding channel groove is arranged on the surface of the liquid guiding block, and a liquid guiding branch channel groove is arranged on the bottom surface of the liquid guiding block. The liquid guiding block is closely attached to the inner wall of the liquid distribution cavity. The main liquid guiding channel groove and the inner wall of the liquid distribution cavity enclose the main liquid guiding channel, and the liquid guiding branch channel groove and the inner wall of the liquid distribution cavity enclose the liquid guiding branch channel.
4. The liquid guide comb tooth base according to any one of claims 1-3, characterized in that: The liquid guiding block is a silica gel liquid guiding block.
5. The liquid guiding comb tooth seat according to claim 1, wherein: It further includes a liquid storage bottle. The liquid storage bottle includes a bottle body with an open top and a piston. The piston passes through the open port and is placed in the inner cavity of the bottle body. A liquid storage cavity is formed between the piston and the inner cavity of the bottle body. An insertion connector communicating with the liquid storage cavity is arranged at the bottom of the bottle body. The liquid storage bottle is placed on the base body, and the insertion connector is inserted into the socket to connect the liquid storage bottle and the base body.