Active oxygen pet disinfection comb

By setting up an electrolytic module in the pet comb to generate reactive oxygen sterilization liquid and atomizing it, combined with the accurate design of the hair removal plate, the existing pet comb to incomplete sterilization effect and inaccurate movement of the hair removal plate are solved, and deep sterilization and efficient combing are achieved.

CN223157738UActive Publication Date: 2025-07-29SUZHOU KAIYUAN MOULD CO LTD
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Patent Information

Application Number
CN202422431074.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-07-29
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The sterilization effect of existing pet combs is limited to deep fur and may cause damage to the fur. The inaccurate movement of the hair-removing plate leads to low efficiency.

Method used

The electrolytic module in the liquid storage chamber is used to electrolyze the liquid into a sterilizing liquid containing reactive oxygen, and the droplets are formed through the atomized sheet and the hair removal plate is moved accurately by driving the hair removal plate.

Benefits of technology

It achieves efficient sterilization of deep fur, long-lasting adhesion of sterilization droplets, precise movement of the hair removal plate, and improves the combing efficiency and cleaning effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

A liquid storage cavity, a penetrating cavity and a liquid outlet hole communicated with the liquid storage cavity are formed in a shell, a combing structure comprises an installation plate and comb teeth, a spraying mechanism comprises an electrolysis module and an atomization piece, the electrolysis module is arranged on the shell and extends into the liquid storage cavity, the atomization piece is arranged in the liquid outlet hole, and the installation plate is arranged on the shell and extends into the liquid storage cavity. A driving assembly in the dehairing mechanism is arranged on the shell, the tail end of the driving assembly extends out of the penetrating cavity, a dehairing plate is arranged at the tail end of the driving assembly and located below the mounting plate, and receding holes allowing the comb teeth to penetrate through are formed in the dehairing plate. The electrolysis module is arranged in the liquid storage cavity, liquid contained in the electrolysis module can be electrolyzed into sterilization liquid containing active oxygen components, the sterilization liquid is atomized through the atomization piece to form liquid drops to enter fur of a pet, the liquid drops can enter deeper fur along with combing of the sterilization liquid drops, the better sterilization effect is achieved, and the sterilization effect is good. And moreover, the sterilizing liquid in the form of liquid drops is adhered to the fur, so that a more lasting sterilizing effect can be achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of pet cleaning devices, in particular to an active oxygen pet disinfection comb. Background Art

[0002] In modern life, people's demand for pets has gradually increased, and pets have gradually become an integral part of people's lives. Pet fur also sheds hair. In the prior art, there are also tools specifically designed for cleaning pet shed hair or combing hair, such as pet brushes. However, the existing pet combs can only comb pet hair, and their functions are relatively single.

[0003] When using a pet brush, to increase the convenience and cleaning effect of combing, a water tank and a spraying function are added to the pet brush. The liquid is atomized and combing is carried out on the premise of the existence of liquid droplets to improve the combing effect. For example, a pet comb with a spraying function with the application number 202320616128.5 injects water into the liquid chamber, and then the water source is atomized and ejected through the atomization treatment of the atomization sheet. It can increase the smoothness effect when combing hair. In addition, with the UV ultraviolet lamp arranged at the bottom of the device, it can have the effects of sterilization and detecting tinea. In this pet comb, it sterilizes through the UV ultraviolet lamp, and the sterilization effect will be blocked or weakened, and the sterilization effect on the deep layer inside the fur is limited. Moreover, direct irradiation may cause damage to the fur. In addition, in the form of pressing and then rotating to drive, the pressing rod drives the hair removal plate to move. If the pressing rod cannot move vertically accurately, the hair removal plate may deviate when moving, resulting in ineffective synchronous hair removal. Summary of the Utility Model

[0004] The purpose of the utility model is to provide an active oxygen pet disinfection comb. An electrolysis module is arranged in the liquid storage cavity, which can electrolyze the liquid contained therein into a disinfectant solution (such as containing ozone components), and then the disinfectant solution is atomized by an atomization sheet to form liquid droplets that enter the pet's fur. Along with combing, the disinfectant solution droplets can enter deeper into the fur, having a better sterilization effect. Moreover, the liquid droplet form of the disinfectant solution adheres to the fur, and can have a more lasting sterilization effect.

[0005] To achieve the above purpose, the technical solution adopted by the utility model is: an active oxygen pet disinfection comb, comprising:

[0006] A housing, which is internally provided with a liquid storage cavity and a through cavity separated from the liquid storage cavity. A liquid outlet hole communicating with the liquid storage cavity is arranged on the bottom wall of the housing.

[0007] A combing structure, which comprises a mounting plate and a plurality of comb teeth arranged in a matrix on the mounting plate. The mounting plate is arranged on the bottom end face of the housing and gives way to the liquid outlet hole.

[0008] The spray mechanism includes an electrolysis module and an atomizing sheet. The electrolysis module is arranged on the housing and extends into the liquid storage cavity to electrolyze the liquid in the liquid storage cavity into a sterilizing liquid containing active oxygen. The atomizing sheet is arranged in the liquid outlet.

[0009] The hair removal mechanism includes a driving component and a hair removal plate. The driving component is arranged on the shell and the end thereof extends out of the through cavity. The hair removal plate is arranged at the end of the driving component and is located below the mounting plate. A clearance hole for the comb teeth to pass through is formed on the hair removal plate.

[0010] As a further optimization, the outer shell includes an outer upper shell and an outer lower shell that are connected to each other, and an inner upper shell and an inner lower shell that are arranged in the outer upper shell and the outer lower shell and are connected to each other. The liquid storage cavity is formed in the inner upper shell and the inner lower shell, and a pair of through cavities separated from the liquid storage cavity are formed by the enclosure structure.

[0011] As a further optimization, the inner upper shell is provided with a positioning slot communicating with the through-hole, the driving assembly includes a horizontal plate and vertical plates provided on opposite sides of the horizontal plate, the vertical plates passing through the through-hole and connected at their lower ends to the dehairing plate, the lower ends of the horizontal plates abut against the bottom wall of the positioning slot via springs, and a pressure column is provided at their upper ends. Preferably, the pressure column is provided with a press button extending from the outer upper shell for easy pressing by an operator.

[0012] As a further optimization, a pair of sleeves are provided on the transverse plate, and the upper parts of the pair of springs extend into the pair of sleeves respectively, which can ensure the stability of the springs during compression and elastic recovery.

[0013] As a further optimization, the horizontal plate is provided with a first and a second staggered clip, and the vertical plate is provided with a positioning hole. The vertical plate extends between the first and second clips, and the second clip extends into the positioning hole. Through the staggered clips and the cooperation between the clips and the positioning holes, the vertical plate can be stably connected to the horizontal plate and is easy to install.

[0014] As a further optimization, a vertical guide groove is provided on the vertical plate, and a guide block is provided on the inner wall of the through cavity. The guide block is embedded in the vertical guide groove to ensure the accuracy and stability of the vertical movement of the vertical plate and the dehairing plate.

[0015] As a further optimization, the shell is provided with a liquid inlet hole connected to the liquid storage cavity, so as to facilitate the injection of liquid into the liquid storage cavity.

[0016] As a further optimization, the electrolysis module includes a power source and electrode plates connected to the power source. After the electrode plates are powered on, the liquid in the liquid storage cavity is electrolyzed to generate a sterilizing component, such as active oxygen (ozone substance).

[0017] More specifically, the electrolysis module is a low-voltage electrolytic ozone water electrode module.

[0018] As a further optimization, a handle is formed on one side of the outer shell, which is convenient for the operator to hold.

[0019] Compared with the prior art, the present utility model has the following beneficial effects:

[0020] 1. An electrolysis module is arranged in the liquid storage cavity, and the liquid contained therein can be electrolyzed into a sterilizing liquid containing active oxygen components (such as ozone). The sterilizing liquid is atomized by the atomizing sheet to form droplets, which enter the fur of the pet. Along with the combing action, the sterilizing liquid droplets can enter deeper into the fur, achieving a better sterilizing effect. Moreover, the sterilizing liquid in the form of droplets adheres to the fur, having a more lasting sterilizing effect.

[0021] 2. After the combing is completed, by pressing the driving component to drive the hair removal plate to move downward, the hair wound around the comb teeth can be conveniently removed, facilitating the cleaning of the disinfection comb itself. Description of the Drawings

[0022] Figure 1 It is a structural diagram of the present utility model.

[0023] Figure 2 It is a structural diagram of the bottom view of the present utility model.

[0024] Figure 3 It is a cross-sectional view at the central axis of the present utility model.

[0025] Figure 4 It is a structural diagram of the present utility model after removing the outer upper shell and the outer lower shell.

[0026] Figure 5 It is a cross-sectional view at the through cavity of the present utility model after removing the outer upper shell and the outer lower shell.

[0027] Figure 6 It is a position relationship diagram of the inner lower shell and the hair removal mechanism of the present utility model.

[0028] Figure 7 It is Figure 6 The enlarged view of A in

[0029] Figure 8 It is a structural diagram of the hair removal mechanism of the present utility model. Detailed Description of the Invention

[0030] The following are specific embodiments of the present invention and the accompanying drawings to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.

[0031] like Figures 1 to 5 As shown, an active oxygen pet disinfection comb includes a shell 10, a combing mechanism 30, a spray mechanism and a hair removal mechanism 50. The shell 10 is provided with a liquid storage chamber 201 and a through cavity 202 separated from the liquid storage chamber 201. The bottom wall of the shell 10 is provided with a liquid outlet 200 connected to the liquid storage chamber 201. The combing structure 30 includes a mounting plate 31 and a plurality of comb teeth 32 arranged in a matrix on the mounting plate 31. The mounting plate 31 is arranged on the bottom end surface of the shell 10 and is opposite to the liquid outlet 201. 0 give way, the spray mechanism includes an electrolytic module 41 and an atomizing sheet 42, the electrolytic module 41 is arranged on the shell 10 and extends into the liquid storage cavity 201, the atomizing sheet 42 is arranged in the liquid outlet 200, the depilatory mechanism 50 includes a driving component 51 and a depilatory plate 52, the driving component 51 is arranged on the shell 10 and the end thereof extends out of the through cavity 202, the depilatory plate 52 is arranged at the end of the driving component 51 and is located below the mounting plate 31, and a give way hole 501 for the comb teeth 32 to pass through is formed on the depilatory plate 52.

[0032] In the present invention, the mounting plate 31 is fixedly mounted on the outer shell 10, and the comb teeth 32 are fixed on the mounting plate 31 for combing the pet's fur. An upper clearance hole is provided in the middle of the mounting plate 31, which can be used for the liquid outlet 200 to communicate with the outside. The hair removal plate 52 is set on the outer shell 10 through the driving component 51, and is provided with a lower clearance hole 500, which can be used for the liquid outlet 200 to communicate with the outside. In addition, a plurality of clearance holes 501 arranged in a strip shape are provided to allow multiple comb teeth 32 to pass downward. When using the present invention, first, a liquid that can be electrolyzed, such as tap water, is placed in the liquid storage chamber 201. The active oxygen pet disinfection comb is manually moved so that the comb teeth 32 act on the pet's fur to comb. At the same time, after pressing the power supply, the liquid in the liquid storage chamber 201 is electrolyzed by the electrolysis module 41 into a liquid that can sterilize (a sterilizing liquid containing ozone components). The sterilizing liquid is then atomized into small droplets by the atomizing sheet 42. As the combing action progresses, the fur becomes smooth and fluffy. The bactericidal liquid enters the hair and even deeper into the fur to perform sterilization and disinfection. Its sterilization range is larger, longer-lasting, and more thorough. The above action can clean the fur at the same time during the fur combing process, which is more beneficial to the health of the pet; after completing the above combing and sterilization actions, the driving component 51 is operated to make the hair removal plate 52 move in the vertical direction away from the mounting plate 31, thereby pushing the hair wrapped around the comb teeth 32 out between the comb teeth 32, making it more convenient to remove the hair from the active oxygen pet disinfection comb.

[0033] Moreover, in the present invention, the liquid outlet 200 is arranged in the middle of the comb teeth 32. On the one hand, the combed fur is more likely to allow the sterilization droplets to enter during the movement of the comb teeth 32. On the other hand, after entering the fur, the sterilization droplets can be more evenly dispersed in the fur through the combing of the comb teeth 32 again. Therefore, through a single combing action of the comb teeth, the sterilization liquid can have a larger range of action and effect, without the need for repeated combing, thereby improving operating efficiency.

[0034] The active oxygen pet disinfecting comb of the present invention is equipped with an electrolysis module in the liquid storage chamber, which can electrolyze the liquid (such as tap water) contained therein into a sterilizing liquid containing ozone components, and then form droplets of the sterilizing liquid into the pet's fur in the form of atomization. The droplets formed by the sterilizing liquid can enter deeper layers of the fur along with the combing action, thereby forming a better sterilization effect. Moreover, the sterilizing liquid in the form of droplets adheres to the fur, thereby having a more lasting sterilization effect.

[0035] In one embodiment of the present invention, the electrolysis module 41 can be selected as a low-voltage electrolysis ozone water electrode module, which can electrolyze tap water into a liquid containing ozone components and sterilize by using the action of active oxygen substances (such as oxidation).

[0036] More specifically, the outer shell 10 includes an outer upper shell 11 and an outer lower shell 12 connected to each other, and an inner upper shell 21 and an inner lower shell 22 arranged in the outer upper shell 11 and the outer lower shell 12 and connected to each other. The lower ends of the outer lower shell 12 and the inner lower shell 22 are provided with holes for connecting to form a liquid outlet 200, and the lower end of the outer lower shell 12 is provided with a yield slot 120 for fixing the mounting plate 31. A liquid storage chamber 201 is formed in the inner upper shell 21 and the inner lower shell 22, and a pair of through chambers 202 separated from the liquid storage chamber 201 are formed by the enclosure structure to ensure the sealing effect of the liquid storage chamber 201.

[0037] Combine Figures 6 to 8 As shown, the inner upper shell 21 is provided with a positioning groove 210 connected to the through-hole 202. The driving assembly 51 includes a horizontal plate 511 and vertical plates 512 arranged on opposite sides of the horizontal plate 511. The vertical plates 512 pass through the through-hole 202 and are connected to the hair removal plate 52 at their lower ends. The lower end of the horizontal plate 511 abuts against the bottom wall of the positioning groove 210 via a spring 513. The upper end of the horizontal plate 511 is provided with a pressure column 514. The pressure column 514 drives the horizontal plate 511 downward under external force, causing the pair of vertical plates 512 to move vertically downward within the through-hole 202, thereby driving the hair removal plate 52 downward to remove the hair from the comb teeth 32. After the above action is completed, the downward pressure acting on the pressure column 514 is removed, and the horizontal plate 511 drives the vertical plates 512 and the hair removal plate 52 to return to their original position under the elastic recovery action of the spring 513. Preferably, the pressure column 514 is provided with a press button 61 extending from the outer upper shell 11 to facilitate manual pressing operation.

[0038] Furthermore, a pair of sleeves 515 are provided on the horizontal plate 511. The upper parts of a pair of springs 513 respectively extend into the pair of sleeves 515, and the lower ends of the springs 513 abut against the bottom wall of the positioning groove 210. The upper parts of the springs 513 extending into the sleeves 515 can ensure the stability of their positions.

[0039] The first buckle 5111 and the second buckle 5112 are provided on the horizontal plate 511 with a dislocation. A positioning hole 5120 is provided on the vertical plate 512. The vertical plate 512 extends between the first buckle 5111 and the second buckle 5112, and the second buckle 5112 extends into the positioning hole 5120, which can stably connect the vertical plate 512 and the horizontal plate 511.

[0040] In addition, a vertical guiding groove 5121 is provided on the vertical plate 512. A guiding block 221 is provided on the inner wall of the through cavity 202. The guiding block 221 is embedded in the vertical guiding groove 5121. The lifting of the vertical plate 512 is limited by the guiding block 221 through the vertical guiding groove 5121, which can ensure the accuracy of the vertical movement of the vertical plate 512 and the hair removal plate 52 and avoid jamming caused by tilting.

[0041] A liquid inlet hole 2011 communicating with the liquid storage cavity 201 is provided on the outer shell 10. Through the liquid inlet hole 2011, liquid can be injected into the liquid storage cavity to ensure the normal progress of electrolysis and atomization. The liquid inlet hole 2011 is specifically formed on the inner upper shell 21 and directly communicates with the liquid storage cavity 201. An opening can be provided on the outer upper shell 11 and connected to the liquid inlet hole 2011, and a plug cover 62 is provided and installed on the shell 10 to seal the liquid storage cavity 201.

[0042] In addition, a handle 63 is formed by the extension of the outer upper shell 11 and the outer lower shell 12. Components such as a battery, a button, a control chip, and a connecting wire can be provided at the handle 63 to ensure electrical connection with the electrolysis module 41 and the atomization sheet 42. The presence of the handle 63 also facilitates the operator to hold.

[0043] The specific embodiments described herein are merely illustrative of the spirit of the present invention. Those skilled in the art to which the present invention pertains can make various modifications or supplements to the described specific embodiments or use similar means to replace them, but will not deviate from the spirit of the present invention or exceed the scope defined by the appended claims.

Claims

1. An active oxygen pet disinfection comb, characterized in that include: The shell has a liquid storage cavity and a through cavity separated from the liquid storage cavity, and the bottom wall of the shell is provided with a liquid outlet hole connected to the liquid storage cavity. The combing structure includes a mounting plate and a plurality of comb teeth arranged in a matrix on the mounting plate. The mounting plate is arranged on the bottom end surface of the housing and gives way to the liquid outlet. The spray mechanism includes an electrolysis module and an atomizing sheet. The electrolysis module is arranged on the housing and extends into the liquid storage cavity to electrolyze the liquid in the liquid storage cavity into a sterilizing liquid containing active oxygen. The atomizing sheet is arranged in the liquid outlet. The hair removal mechanism includes a driving component and a hair removal plate. The driving component is arranged on the shell and the end thereof extends out of the through cavity. The hair removal plate is arranged at the end of the driving component and is located below the mounting plate. A clearance hole for the comb teeth to pass through is formed on the hair removal plate.

2. The active oxygen pet disinfection comb according to claim 1, characterized in that, The outer shell includes an outer upper shell and an outer lower shell connected to each other, and an inner upper shell and an inner lower shell arranged inside the outer upper shell and the outer lower shell and connected to each other. The liquid storage cavity is formed inside the inner upper shell and the inner lower shell, and a pair of through cavities separated from the liquid storage cavity are formed by the enclosure structure.

3. The active oxygen pet disinfection comb according to claim 2, wherein The inner upper shell is provided with a positioning groove connected to the through cavity, and the driving assembly includes a horizontal plate and vertical plates arranged on opposite sides of the horizontal plate. The vertical plate passes through the through cavity and the lower end is connected to the dehairing plate. The lower end of the horizontal plate is abutted against the bottom wall of the positioning groove through a spring, and a pressure column is provided at its upper end.

4. The active oxygen pet disinfection comb according to claim 3, characterized in that, A pair of sleeves are provided on the transverse plate, and the upper portions of the pair of springs extend into the pair of sleeves respectively.

5. The active oxygen pet disinfection comb according to claim 3, characterized in that, The horizontal plate is provided with a first clip and a second clip that are staggered with each other, and the vertical plate is provided with a positioning hole. The vertical plate extends between the first clip and the second clip, and the second clip extends into the positioning hole.

6. The active oxygen pet disinfection comb according to claim 3 or 5, characterized in that, A vertical guide groove is provided on the vertical plate, and a guide block is provided on the inner wall of the through cavity. The guide block is embedded in the vertical guide groove.

7. The active oxygen pet disinfection comb according to claim 1, wherein The shell is provided with a liquid inlet hole which is communicated with the liquid storage cavity.

8. The active oxygen pet disinfection comb according to claim 1, characterized in that, The electrolysis module includes a power source and an electrode sheet connected to the power source.

9. The activated oxygen pet disinfection comb according to claim 1 or 8, characterized in that, The electrolysis module is a low-voltage electrolysis ozone water electrode module.

10. The active oxygen pet disinfection comb according to claim 1, wherein, A handle is formed on one side of the shell.

Citation Information

Patent Citations

  • Pet comb with spraying function

    CN220140483U