Split sole cleaning machine

CN122604287APending Publication Date: 2026-08-21DONGGUAN ZESHUN ELECTROMECHANICAL TECH CO LTD
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Patent Information

Application Number
CN202611000974.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-07-07
Publication Date
2026-08-21

AI Technical Summary

Technical Problem

[0003]传统鞋底清洁机多为整体一体式结构,存在体积大、搬运安装不便,并且一体式结构维修时需整体拆机,操作繁琐,所以我们提出了一种分体式鞋底清洁机来解决上述存在的问题

Benefits of technology

本方案,当需要对分体式鞋底清洁机进行组装时,工作人员可将多个清洁机构并排放置在一起,然后通过两个扶手架,可将位于两端的两个清洁机构卡合连接在一起,因而当需要对用户鞋底进行清洁时,用户可直接在多个清洁机构上行走,同时位于两侧的扶手架,可方便用户扶持,进而能够提高用户在多个清洁机构上行走的安全性,通过清洁机构中的底盒,既能对多个分隔条和隔板一体加工成型,降低其制作成本,又能对分隔架提供安装基础,并且通过分隔架上的多个引导架,既能对多个清洁组件进行独立分隔,又能方便用户踩踏其上表面,进而能够方便用户走在清洁机构中部,并且多个分隔条还能对分隔架提供平稳的支持基础;

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Abstract

The application discloses a split type shoe sole cleaning machine and belongs to the technical field of shoe sole cleaning machines. The split type shoe sole cleaning machine comprises cleaning mechanisms, a plurality of the cleaning mechanisms are arranged in an array mode, two cleaning mechanisms located at two ends are connected through handrails, the cleaning mechanism comprises a bottom box, a plurality of partition strips distributed horizontally are integrally formed at the bottom of the inner cavity of the bottom box, a partition plate is arranged at one end of the inner cavity of the bottom box and the partition strips, a partition frame is arranged at the top surface of the inner cavity of the bottom box and the partition strips, and the inner cavity of the partition frame is provided with a plurality of guide frames distributed horizontally. The application can facilitate the assembly and disassembly of the user, thereby improving the convenience of the post-maintenance of the shoe sole cleaning machine, facilitating the transportation of the equipment, and improving the quality of the shoe sole cleaning of the equipment.
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Description

Technical Field

[0001] This invention relates to the field of shoe sole cleaning machine technology, and more specifically, to a split-type shoe sole cleaning machine. Background Technology

[0002] A shoe sole cleaning machine is a cleaning device that automatically removes mud, dirt, and water stains from shoe soles. It is widely used in homes, factories, hospitals, shopping malls, and other places. It can effectively keep the floor clean, reduce the amount of cleaning work, and improve the cleanliness of the environment. It is a commonly used automated cleaning device in modern places.

[0003] Traditional shoe sole cleaning machines are mostly one-piece structures, which are bulky, inconvenient to transport and install, and require complete disassembly for maintenance, making the operation cumbersome. Therefore, we have proposed a split-type shoe sole cleaning machine to solve the above problems. Summary of the Invention

[0004] In view of the problems existing in the prior art, the purpose of this invention is to provide a split-type shoe sole cleaning machine, which can be easily assembled and disassembled by users, thereby improving the convenience of later maintenance of the shoe sole cleaning machine, facilitating the transportation of the equipment, and improving the quality of shoe sole cleaning.

[0005] To solve the above problems, the present invention adopts the following technical solution.

[0006] A split-type shoe sole cleaning machine includes a cleaning mechanism, wherein multiple cleaning mechanisms are arranged in an array, and the outer sides of two cleaning mechanisms located at both ends are connected by a handrail frame. The cleaning mechanism includes a base box. Multiple horizontally distributed partition strips are integrally formed at the bottom of the inner cavity of the base box. A partition plate is provided at one end of each partition strip within the inner cavity of the base box. A partition frame is provided on the top surface of each partition strip within the inner cavity of the base box. Multiple horizontally distributed guide frames are provided within the inner cavity of the partition frame. Multiple notches are opened at one end of the bottom surface of the partition frame, located on one side of the partition plate. A first external toothed roller and a second external toothed roller are respectively provided on both sides of the partition frame within the inner cavity of the base box. The first and second external toothed rollers are connected by multiple cleaning components. A squeezing roller is provided on the top of the second external toothed roller, above the cleaning components. A drive motor is installed in the inner cavity of the base box and on the outside of the partition. A first gear is installed at the output end of the drive motor. A second gear is installed at one end of the first external toothed roller, and the second gear is connected to the first external toothed roller through a transmission chain. A water storage component is installed on the other side of the inner cavity of the base box. An installation hole is opened on the side wall of the partition near the bottom. A liquid level sensor is installed in the inner cavity of the installation hole. Protective covers are provided on the top surface of the base box and on both sides of the partition. A control panel is embedded in one side wall of one of the protective covers. A limiting tube for inserting the handrail frame is detachably installed on at least one side of both ends of the base box.

[0007] Furthermore, the first external toothed roller is located on one side of the partition, and the inner cavity of the bottom box is provided with first bearings for mounting the two ends of the first external toothed roller on both sides. The inner cavity of the bottom box is provided with second bearings on both sides for mounting the second external toothed roller and the two ends of the extrusion roller.

[0008] Furthermore, the cleaning assembly includes an internal toothed drive belt for engaging and connecting the first external toothed roller and the second external toothed roller; The outer wall of the internal gear transmission belt is bonded with a double-sided adhesive strip, and a cleaning sponge is bonded to the outer surface of the double-sided adhesive strip.

[0009] Furthermore, a C-shaped anti-detachment clip is engaged on one side of the top of the outer wall of the internal gear transmission belt, and one side of the C-shaped anti-detachment clip is connected to one end of the cleaning sponge.

[0010] 5. A split-type shoe sole cleaning machine according to claim 1, characterized in that: the drive motor is fixedly connected to the bottom box through a fixing frame.

[0011] Furthermore, the water storage component includes a water tank disposed on one side of the inner cavity of the bottom box, and water outlet holes are provided on both sides of the bottom surface of the water tank; The bottom of the water storage tank is equipped with an electric plug for controlling the water outlet, and the bottom surface of the water storage tank is equipped with a claw for installing the electric plug.

[0012] Furthermore, pull frames are provided on both sides of the water storage tank.

[0013] Furthermore, a grid plate is provided in the inner cavity of the bottom box and at the bottom of the water storage tank.

[0014] Furthermore, a battery is disposed in the inner cavity of the base box and on the side of the drive motor, and the control panel is electrically connected to the battery, the liquid level sensor and the drive motor.

[0015] Furthermore, each of the two protective covers is provided with a connecting hinge on one side of its bottom, and the bottom of the connecting hinge is connected to the bottom box; Both of the protective covers have male buckles on the other side of their bottoms, and both sides of the top surface of the bottom box have female buckles for engaging the male buckles.

[0016] Compared with the prior art, the advantages of this invention are: In this solution, when assembling the split-type shoe sole cleaning machine, workers can place multiple cleaning mechanisms side by side. Then, two cleaning mechanisms located at both ends can be connected together using two handrails. Therefore, when cleaning the user's shoe soles is required, the user can walk directly on multiple cleaning mechanisms. At the same time, the handrails on both sides can help the user hold on, thereby improving the user's safety when walking on multiple cleaning mechanisms. The base box in the cleaning mechanism can be integrally processed into multiple dividing strips and partitions, reducing its manufacturing cost, and can also provide an installation base for the dividing frame. Furthermore, the multiple guide frames on the dividing frame can independently separate multiple cleaning components and make it convenient for the user to step on its upper surface, thus making it convenient for the user to walk in the middle of the cleaning mechanism. In addition, the multiple dividing strips can also provide a stable support base for the dividing frame. When a user steps on the divider, the drive motor drives the second gear located at one end of the first external toothed roller via the first gear and transmission chain, enabling the first external toothed roller to rotate smoothly. Since the first external toothed roller is connected to the second external toothed roller through multiple cleaning components, and these cleaning components are located between various guide frames, the rotation of the first and second external toothed rollers synchronously drives the rotation of multiple cleaning components. This allows the outer surfaces of the multiple cleaning components to clean the soles of the shoes stepped on the divider. Because a liquid level sensor is installed at the mounting hole of the divider, the operation of the water storage component can be controlled via the control panel, allowing the water in the water storage component to be released and flow into the inner cavity of the bottom box. At the same time, the liquid level sensor can monitor the liquid level in the bottom box, allowing the lower half of the cleaning component to be submerged in water. As the cleaning component rotates, the water in the bottom box will flush the cleaning component. Because a squeezing roller is located on the top of the second outer toothed roller and above the cleaning component, when the cleaning component rotates to the squeezing roller after rinsing, the squeezing roller will work with the second outer toothed roller to squeeze the passing cleaning component, thereby removing some water from the cleaning component. This allows the slightly wet cleaning component to clean the sole surface of the shoes stepped on on the divider. Since this shoe sole cleaning machine uses multiple cleaning mechanisms laid side by side, the soles of the shoes will be cleaned more and more as the user walks on multiple cleaning mechanisms, ensuring the quality of shoe sole cleaning. At the same time, the user can expand multiple cleaning mechanisms according to needs. The entire shoe sole cleaning machine is simple and convenient to assemble and can greatly reduce its size, making it convenient for users to move and install. Furthermore, if any cleaning mechanism needs to be repaired, it can be disassembled and repaired separately without affecting the operation of other cleaning mechanisms. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 This is a schematic diagram of one side of the structure of the present invention; Figure 3 This is a schematic diagram of the bottom structure of the present invention; Figure 4 This is a schematic diagram of the cleaning mechanism structure of the present invention; Figure 5 This is a schematic diagram of the internal structure of the cleaning mechanism of the present invention; Figure 6 This is a schematic diagram of the exploded structure of the cleaning mechanism of the present invention; Figure 7 This is a schematic diagram of the internal structure of the bottom box of the present invention; Figure 8 This is a schematic diagram of the partition frame structure of the present invention; Figure 9 This is a schematic cross-sectional view of the water storage tank of the present invention; Figure 10 This is a schematic diagram of the cleaning component structure of the present invention.

[0018] Explanation of the labels in the diagram: 1. Handrail; 2. Cleaning mechanism; 3. Base box; 4. Divider strip; 5. Partition; 6. Divider frame; 7. Guide frame; 8. Notch; 9. First external toothed roller; 10. First bearing; 11. Second external toothed roller; 12. Squeeze roller; 13. Second bearing; 14. Cleaning assembly; 141. Internal toothed drive belt; 142. Double-sided adhesive strip; 143. Cleaning sponge; 144. C-type anti-detachment clip; 15. Fixing frame; 16. Drive motor; 17. First gear; 18. Second gear; 19. Drive chain; 20. Water tank; 21. Pull frame; 22. Water outlet; 23. Electric plug; 24. Grille plate; 25. Mounting hole; 26. Liquid level sensor; 27. Battery; 28. Protective cover; 29. ​​Control panel; 30. Connecting hinge; 31. Male buckle; 32. Female buckle; 33. Limit tube. Detailed Implementation

[0019] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0020] Example: Please see Figures 1-8A split-type shoe sole cleaning machine includes a cleaning mechanism 2, which comprises multiple cleaning mechanisms arranged in an array. Two cleaning mechanisms at either end are connected by a handle frame 1. Each cleaning mechanism 2 includes a base box 3. The bottom of the inner cavity of the base box 3 has multiple horizontally distributed partition strips 4 integrally formed. A partition plate 5 is provided in the inner cavity of the base box 3 at one end of each partition strip 4. A partition frame 6 is provided in the inner cavity of the base box 3 at the top surface of each partition strip 4. Multiple horizontally distributed guide frames 7 are provided in the inner cavity of the partition frame 6. Multiple notches 8 are opened at one end of the bottom surface of the partition frame 6 on one side of each partition plate 5. A first external toothed roller 9 and a second external toothed roller 11 are respectively provided on both sides of the inner cavity of the base box 3 and the partition frame 6. The first external toothed roller 9 and the second external toothed roller 11 are connected by multiple cleaning components 14. A squeezing roller 12 is provided on the top of the second external toothed roller 11 and above the cleaning component 14; a drive motor 16 is provided in the inner cavity of the bottom box 3 and outside the partition 5. A first gear 17 is installed at the output end of the drive motor 16. A second gear 18 is provided at one end of the first external toothed roller 9 and the second gear 18 is connected to the first external toothed roller 9 through a transmission chain 19. A water storage component is provided on the other side of the inner cavity of the bottom box 3. An installation hole 25 is provided on the side wall of the partition 5 near the bottom. A liquid level sensor 26 is provided in the inner cavity of the installation hole 25. Protective covers 28 are provided on the top surface of the bottom box 3 and on both sides of the partition 6. A control panel 29 is embedded on one side of the side wall of one of the protective covers 28. A limiting tube 33 for inserting the handrail 1 is detachably installed on at least one side of both ends of the bottom box 3. When assembling the split-type shoe sole cleaning machine, workers can place multiple cleaning mechanisms 2 side by side, and then connect the two cleaning mechanisms 2 located at both ends using two handrails 1. Therefore, when cleaning the user's shoe soles is required, the user can walk directly on the multiple cleaning mechanisms 2. At the same time, the handrails 1 on both sides can help the user hold on, thereby improving the user's safety when walking on the multiple cleaning mechanisms 2. The base box 3 in the cleaning mechanism 2 can not only integrate multiple dividing strips 4 and partitions 5, reducing their manufacturing cost, but also provide an installation base for the dividing frame 6. Furthermore, the multiple guide frames 7 on the dividing frame 6 can not only independently separate the multiple cleaning components 14, but also facilitate the user's stepping on them. Stepping on its upper surface allows users to easily walk in the middle of the cleaning mechanism 2, and the multiple dividers 4 provide a stable support base for the divider frame 6. When a user steps on the divider frame 6, the drive motor 16 drives the second gear 18 located at one end of the first external toothed roller 9 via the first gear 17 and the transmission chain 19, thus enabling the first external toothed roller 9 to rotate smoothly. Since the first external toothed roller 9 is connected to the second external toothed roller 11 through multiple cleaning components 14, and the multiple cleaning components 14 are located between each guide frame 7, the rotation of the first external toothed roller 9 and the second external toothed roller 11 synchronously drives the multiple cleaning components 14 to rotate, thereby allowing the outer surfaces of the multiple cleaning components 14 to face the divider frame 6 when stepped on. The sole surface of the shoe is cleaned. Since a liquid level sensor 26 is installed at the mounting hole 25 of the partition 5, the operation of the water storage component can be controlled via the control panel 29, allowing water to be released from the water storage component and flow into the inner cavity of the bottom box 3. Simultaneously, the liquid level sensor 26 monitors the liquid level in the bottom box 3, ensuring the lower half of the cleaning component 14 is submerged in water. As the cleaning component 14 rotates, the water in the bottom box 3 washes over it. Because a squeezing roller 12 is positioned on top of the second external toothed roller 11 and above the cleaning component 14, after washing and rotating to the squeezing roller 12, the squeezing roller 12 works in conjunction with the second external toothed roller 11 to clean the passing components. The cleaning component 14 is squeezed to remove some water, allowing it to clean the soles of shoes stepped on by the slightly damp component 14. Since the shoe sole cleaning machine uses multiple cleaning mechanisms 2 laid side by side, the soles of shoes will become increasingly cleaner as the user walks on them, ensuring the quality of the cleaning. Users can also expand the cleaning mechanism 2 as needed. The entire shoe sole cleaning machine is simple and convenient to assemble, and its size is greatly reduced, making it easy for users to move and install. Furthermore, if any cleaning mechanism 2 needs maintenance, it can be disassembled and repaired separately without affecting the operation of other cleaning mechanisms 2.

[0021] See Figures 4-7 The first external toothed roller 9 is located on one side of the partition plate 5. The inner cavity of the bottom box 3 is provided with first bearings 10 for mounting the two ends of the first external toothed roller 9 on both sides. The other two sides of the inner cavity of the bottom box 3 are provided with second bearings 13 for mounting the two ends of the second external toothed roller 11 and the extrusion roller 12. The first bearing 10 can be installed in the inner cavity of the base box 3 and can provide stable support for the first external toothed roller 9, thereby improving the stability of the operation of the first external toothed roller 9. Similarly, the second bearing 13 can ensure the stability of the operation of the second external toothed roller 11 and the extrusion roller 12 and provide support for them.

[0022] See Figure 4 , Figure 5 , Figure 6 , Figure 7 and Figure 10 The cleaning assembly 14 includes an internal toothed drive belt 141 for engaging and connecting the first external toothed roller 9 and the second external toothed roller 11; a double-sided adhesive strip 142 is adhered to the outer wall of the internal toothed drive belt 141, a cleaning sponge 143 is adhered to the outer surface of the double-sided adhesive strip 142, and a C-type anti-detachment clip 144 is engaged on one side of the top of the outer wall of the internal toothed drive belt 141, and one side of the C-type anti-detachment clip 144 is connected to one end of the cleaning sponge 143. The internal toothed drive belt 141 in the cleaning assembly 14 connects the first external toothed roller 9 and the second external toothed roller 11, and its inner wall meshes with the outer walls of the two rollers. This allows the first external toothed roller 9 to rotate synchronously and smoothly while driving the second external toothed roller 11 to rotate, and also prevents the internal toothed drive belt 141 from slipping on the first external toothed roller 9 and the second external toothed roller 11, ensuring the stability of the operation of the internal toothed drive belt 141. The cleaning sponge 143 can be adhered to the outer wall of the internal toothed drive belt 141 through the double-sided adhesive strip 142, so that the internal toothed drive belt 141 can drive the cleaning sponge 143 to rotate, so that the cleaning sponge 143 can clean the user's shoe sole. The C-shaped anti-detachment clip 144 can not only be locked on the outer wall of the internal toothed drive belt 141, but also limit the pulling of one end of the cleaning sponge 143, thereby improving the stability of the cleaning sponge 143 as it rotates with the internal toothed drive belt 141.

[0023] See Figures 5-7 The drive motor 16 is fixedly connected to the base box 3 through the fixing bracket 15, so that the drive motor 16 can be stably installed in the base box 3.

[0024] See Figures 5-9 The water storage component includes a water storage tank 20 disposed on one side of the inner cavity of the bottom box 3. Water outlet holes 22 are provided on both sides of the bottom surface of the water storage tank 20. An electric plug 23 for controlling the water outlet holes 22 is provided at the bottom of the water storage tank 20. A claw for installing the electric plug 23 is provided on the bottom surface of the water storage tank 20. The water storage tank 20 in the water storage assembly can store the water needed to clean the shoe soles, and can also install the electric plug 23 via the claw. The electric plug 23 can be controlled via the control panel 29, so that the telescopic end can be flexibly plugged at the water outlet 22. The electric plug 23 can be activated as needed to release the water in the water storage tank 20, so that the water can flow into the inner cavity of the bottom box 3, which is convenient for the water in the bottom box 3 to soak and clean the cleaning sponge 143.

[0025] See Figure 9 Both sides of the water storage tank 20 are equipped with pull frames 21, which can not only strengthen the structural strength of the water storage tank 20, but also make it convenient for users to lift the water storage tank 20 upwards, thereby making it convenient for users to disassemble, maintain and add water to the water storage tank 20.

[0026] See Figure 6 A grid plate 24 is provided in the inner cavity of the bottom box 3 and at the bottom of the water storage tank 20 to prevent foreign objects from entering the electric plug 23 at the bottom of the water storage tank 20, thereby improving the safety of using the electric plug 23.

[0027] See Figures 5-7 A battery 27 is installed in the inner cavity of the base box 3 and on the side of the drive motor 16. The control panel 29 is electrically connected to the battery 27, the liquid level sensor 26 and the drive motor 16. The battery 27 can supply power to the control panel 29, the liquid level sensor 26 and the drive motor 16, so that the shoe sole cleaning machine can be set up without an external power source.

[0028] See Figure 4 , Figure 6 Each of the two protective covers 28 has a connecting hinge 30 on one side of its bottom, and the bottom of the connecting hinge 30 is connected to the bottom box 3; each of the two protective covers 28 has a male buckle 31 on the other side of its bottom, and both sides of the top surface of the bottom box 3 have female buckles 32 for engaging the male buckle 31. By connecting the hinge 30, it can be installed on the base box 3 and connected to the protective cover 28, so that the user can easily open the protective cover 28, and thus facilitate the user to maintain the water tank 20 and the drive motor 16. By engaging the male buckle 31 and the female buckle 32, the other side of the protective cover 28 can be easily locked and limited, which improves the stability of the protective cover 28 in use.

[0029] In use: When assembling the split-type shoe sole cleaning machine, the operator can place multiple cleaning mechanisms 2 side by side, and then connect the two cleaning mechanisms 2 located at both ends through two handrails 1. Therefore, when cleaning the user's shoe soles, the user can walk directly on the multiple cleaning mechanisms 2. At the same time, the handrails 1 on both sides can help the user to hold on, thereby improving the user's safety when walking on the multiple cleaning mechanisms 2. Through the bottom box 3 in the cleaning mechanism 2, multiple separators 4 and partitions 5 can be integrally processed and formed, reducing... Its manufacturing cost is low, and it can provide an installation base for the partition frame 6. Through the multiple guide frames 7 on the partition frame 6, multiple cleaning components 14 can be independently separated, and it is convenient for users to step on its upper surface, thus making it convenient for users to walk in the middle of the cleaning mechanism 2. In addition, multiple partition strips 4 can also provide a stable support base for the partition frame 6. When the user steps on the partition frame 6, the drive motor 16 can drive the second gear 18 located at one end of the first external toothed roller 9 through the first gear 17 and the transmission chain 19, thereby enabling the first external toothed roller 9 to rotate smoothly. Since the first external toothed roller 9 is connected to the second external toothed roller 11 through multiple cleaning components 14, and the multiple cleaning components 14 are respectively located between each guide frame 7, the rotation of the first external toothed roller 9 and the second external toothed roller 11 can synchronously drive the multiple cleaning components 14 to rotate, thereby enabling the outer surfaces of the multiple cleaning components 14 to clean the sole surfaces of the shoes stepped on the partition frame 6. Since a liquid level sensor 26 is installed at the mounting hole 25 of the partition 5, the operation of the water storage component can be controlled through the control panel 29, thereby releasing the water located in the water storage component and allowing it to flow into the inner cavity of the bottom box 3. At the same time, the liquid level sensor 26 can monitor the liquid level height in the bottom box 3, so that the lower half of the cleaning component 14 can be immersed in water. Thus, when the cleaning component 14 rotates, the water in the bottom box 3 will flush the cleaning component 14. Because a squeezing roller 12 is provided on the top of the second outer toothed roller 11 and above the cleaning component 14, when the cleaning component 14 is rinsed and rotates to the squeezing roller 12, the squeezing roller 12 will cooperate with the second outer toothed roller 11 to squeeze the passing cleaning component 14, thereby removing some water from the cleaning component 14. This allows the slightly wet cleaning component 14 to clean the sole surface of the shoes stepped on on the divider 6. Since the shoe sole cleaning machine uses multiple cleaning mechanisms 2 laid side by side, when the user walks on multiple cleaning mechanisms 2, the soles of the shoes will be cleaned more and more, ensuring the quality of shoe sole cleaning. At the same time, the user can expand multiple cleaning mechanisms 2 according to needs. The entire shoe sole cleaning machine is simple and convenient to assemble and can greatly reduce the size, making it convenient for users to move and install. Also, if any cleaning mechanism 2 needs to be repaired, it can be disassembled and repaired separately without affecting the operation of other cleaning mechanisms 2.

[0030] The first bearing 10 can be installed inside the cavity of the base box 3 and provides stable support for the first external toothed roller 9, thereby improving the operational stability of the first external toothed roller 9. Similarly, the second bearing 13 can ensure the operational stability of the second external toothed roller 11 and the extrusion roller 12 and provide support for them. The internal toothed drive belt 141 in the cleaning assembly 14 can connect the first external toothed roller 9 and the second external toothed roller 11 together and make its inner wall mesh with the outer walls of the two, so that the first external toothed roller 9 can rotate synchronously and smoothly drive the second external toothed roller 11 to rotate, while preventing the internal toothed drive belt 141 from becoming loose. Slippage on the first outer toothed roller 9 and the second outer toothed roller 11 ensures the stability of the internal toothed drive belt 141. The cleaning sponge 143 can be adhered to the outer wall of the internal toothed drive belt 141 by the double-sided adhesive strip 142, so that the internal toothed drive belt 141 can drive the cleaning sponge 143 to rotate, so that the cleaning sponge 143 can clean the user's shoe sole. The C-shaped anti-detachment clip 144 can not only be locked on the outer wall of the internal toothed drive belt 141, but also limit the pulling of one end of the cleaning sponge 143, thereby improving the stability of the cleaning sponge 143 as it rotates with the internal toothed drive belt 141.

[0031] The water storage tank 20 in the water storage assembly can store the water needed for cleaning shoe soles and also allows the electric plug 23 to be installed via a latch. The control panel 29 can control the operation of the electric plug 23, enabling the telescopic end to flexibly block the water outlet 22. The electric plug 23 can be activated as needed to release water from the water storage tank 20, allowing water to flow into the inner cavity of the bottom box 3 for soaking and cleaning the cleaning sponge 143. The pull frame 21 strengthens the structure of the water storage tank 20 and allows the user to easily lift the water storage tank 20 upwards. This allows users to easily disassemble, maintain, and add water to the water tank 20. The grating plate 24 prevents foreign objects from entering the electric plug 23 at the bottom of the water tank 20, improving the safety of the electric plug 23. The connecting hinge 30 allows it to be installed on the base box 3 and connected to the protective cover 28, making it easy for users to open the protective cover 28. This facilitates maintenance of the water tank 20 and the drive motor 16. The male and female buckles 31 and 32 engage to secure the other side of the protective cover 28, improving the stability of the protective cover 28.

[0032] The above are merely preferred embodiments of the present invention; however, the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and its improved concept, should be covered within the scope of protection of the present invention.

Claims

1. A split-type shoe sole cleaning machine, characterized in that: It includes a cleaning mechanism (2), and multiple cleaning mechanisms (2) are provided. The multiple cleaning mechanisms (2) are arranged in an array, wherein the two cleaning mechanisms (2) located at both ends are connected by a handrail (1) on their outer sides. The cleaning mechanism (2) includes a base box (3). The bottom of the inner cavity of the base box (3) is integrally formed with multiple horizontally distributed partition strips (4). A partition plate (5) is provided in the inner cavity of the base box (3) at one end of the partition strips (4). A partition frame (6) is provided in the inner cavity of the base box (3) at the top surface of the partition strips (4). Multiple horizontally distributed guide frames (7) are provided in the inner cavity of the partition frame (6). Multiple notches (8) are opened at one end of the bottom surface of the partition frame (6) at one side of the partition plate (5). A first external toothed roller (9) and a second external toothed roller (11) are respectively provided in the inner cavity of the base box (3) at both sides of the partition frame (6). The first external toothed roller (9) and the second external toothed roller (11) are connected by multiple cleaning components (14). A squeezing roller (12) is provided at the top of the second external toothed roller (11) above the cleaning components (14). A drive motor (16) is provided in the inner cavity of the bottom box (3) and on the outside of the partition (5). A first gear (17) is installed at the output end of the drive motor (16). A second gear (18) is provided at one end of the first external toothed roller (9). The second gear (18) is connected to the first external toothed roller (9) through a transmission chain (19). A water storage component is provided on the other side of the inner cavity of the bottom box (3). An installation hole (25) is provided on the side wall of the partition (5) near the bottom. A liquid level sensor (26) is provided in the inner cavity of the installation hole (25). A protective cover (28) is provided on the top surface of the bottom box (3) and on both sides of the partition (6). A control panel (29) is inlaid on one side of the side wall of one of the protective covers (28). A limiting tube (33) for inserting the handrail (1) is detachably installed on at least one side of both ends of the bottom box (3).

2. The split-type shoe sole cleaning machine according to claim 1, characterized in that: The first external toothed roller (9) is located on one side of the partition (5), and the inner cavity of the bottom box (3) is provided with first bearings (10) for mounting the two ends of the first external toothed roller (9). The inner cavity of the bottom box (3) is provided with second bearings (13) on both sides for mounting the two ends of the second external toothed roller (11) and the extrusion roller (12).

3. The split-type shoe sole cleaning machine according to claim 1, characterized in that: The cleaning assembly (14) includes an internal toothed drive belt (141) for engaging and connecting the first external toothed roller (9) and the second external toothed roller (11). The outer wall of the internal toothed drive belt (141) is bonded with a double-sided adhesive strip (142), and a cleaning sponge (143) is bonded to the outer surface of the double-sided adhesive strip (142).

4. A split-type shoe sole cleaning machine according to claim 3, characterized in that: A C-type anti-detachment clip (144) is engaged on one side of the top of the outer wall of the internal toothed transmission belt (141), and one side of the C-type anti-detachment clip (144) is connected to one end of the cleaning sponge (143).

5. A split-type shoe sole cleaning machine according to claim 1, characterized in that: The drive motor (16) is fixedly connected to the base box (3) via a fixing frame (15).

6. A split-type shoe sole cleaning machine according to claim 1, characterized in that: The water storage component includes a water tank (20) disposed on one side of the inner cavity of the bottom box (3), and water outlet holes (22) are provided on both sides of the bottom surface of the water tank (20). The bottom of the water storage tank (20) is provided with an electric plug (23) for controlling the water outlet (22), and the bottom surface of the water storage tank (20) is provided with a claw for installing the electric plug (23).

7. A split-type shoe sole cleaning machine according to claim 6, characterized in that: Pull frames (21) are provided on both sides of the water storage tank (20).

8. A split-type shoe sole cleaning machine according to claim 6, characterized in that: A grating plate (24) is provided in the inner cavity of the bottom box (3) and at the bottom of the water storage tank (20).

9. A split-type shoe sole cleaning machine according to claim 1, characterized in that: A battery (27) is provided in the inner cavity of the bottom box (3) and on the side of the drive motor (16). The control panel (29) is electrically connected to the battery (27), the liquid level sensor (26) and the drive motor (16).

10. A split-type shoe sole cleaning machine according to claim 1, characterized in that: Each of the two protective covers (28) has a connecting hinge (30) on one side of its bottom, and the bottom of the connecting hinge (30) is connected to the bottom box (3); Both of the protective covers (28) are provided with male buckles (31) on the other side of the bottom, and female buckles (32) for engaging the male buckles (31) are inlaid on both sides of the top surface of the bottom box (3).