Hairbrush assembly and shoe sole cleaning machine

By using a motor-driven chain transmission system and a wear-resistant, soft roller design, the problems of low transmission efficiency and high noise in existing shoe sole cleaning machines are solved, achieving efficient cleaning and low-noise cleaning results.

CN223845630UActive Publication Date: 2026-01-30SUSU TECHNOLOGY (SUZHOU) CO LTD
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Patent Information

Application Number
CN202520409088.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2026-01-30
Estimated Expiration
2035-03-10

AI Technical Summary

Technical Problem

The existing shoe sole cleaning machine uses belt drive, which results in high losses, low transmission efficiency and high noise, affecting the performance.

Method used

The motor-driven chain drive system, with its wear-resistant and soft polymer material rollers and limit frame design, ensures cleaning effectiveness and equipment stability while reducing noise and energy consumption.

Benefits of technology

It improves transmission efficiency, reduces equipment maintenance costs and noise, ensures stable operation and cleaning effect of the brush roller, and avoids damage to the shoe sole.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a brush assembly and a shoe sole cleaning machine, relates to the technical field of shoe sole cleaning, and aims to solve the technical problems of large friction force matching driving loss, low transmission efficiency and large noise in the prior art. The brush assembly comprises a machine body box and a limiting frame, and the front end and the rear end of the interior of the machine body box are provided with a containing cavity and an assembling cavity respectively; an assembling cavity is formed in the machine body box, brush rollers are installed in the assembling cavity at equal intervals through assembling blocks, a control part and a linkage cavity are arranged on the two sides of the machine body box correspondingly, a storage box and a control box are arranged in the control part, a driving part is arranged at the front end of the machine body box, a limiting frame is installed on the upper sides of the brush rollers in a clamped mode, a guide hopper is arranged in a storage cavity, and the guide hopper is designed in an inclined mode. And the tail end of the guide hopper communicates with the storage box, the guide hopper corresponds to the brush roller, and a sealing cover is rotationally installed at an opening in the upper side of the containing cavity through a hinge. The chain transmission device has the advantages of friction reduction, low loss, high transmission efficiency and low noise.
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Description

Technical Field

[0001] This utility model relates to the field of shoe sole cleaning technology, and more specifically, to a brush assembly and a shoe sole cleaning machine. Background Technology

[0002] When workers enter and exit the workshop, their shoes easily pick up dust, mud, sand, and other debris. If they enter the workshop without cleaning, these contaminants will spread across the floor as they walk. Different production areas may have different cleanliness requirements. For example, in a food factory, some areas are raw material processing areas, while others are finished product packaging areas. When workers move from relatively dirty areas to clean areas, shoe sole cleaning machines can prevent cross-contamination caused by stains and microorganisms carried on their shoes, ensuring the hygiene and safety of the product production process.

[0003] Existing shoe sole cleaning machines use brush rollers to clean shoe soles, and the existing drive structure uses belt drive. Belt drive relies on friction, resulting in high losses and low transmission efficiency. High friction also easily generates noise, affecting the performance. Therefore, we propose a brush assembly and a shoe sole cleaning machine. Utility Model Content

[0004] The purpose of this invention is to overcome the shortcomings of the existing technology, adapt to practical needs, and provide a brush assembly and a shoe sole cleaning machine to solve the current technical problems of high frictional drive loss, low transmission efficiency, and high noise.

[0005] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a brush assembly and a shoe sole cleaning machine, including a body box and a limiting frame. The front and rear ends of the body box are respectively provided with a storage cavity and an assembly cavity. The assembly cavity is equipped with brush rollers at equal intervals through assembly blocks. The two sides of the body box are respectively provided with a control part and a linkage cavity. The control part is provided with a storage box and a control box. The front end of the body box is provided with a drive part. The limiting frame is snapped onto the upper side of the brush rollers.

[0006] In use, this invention is powered by an external power source. The operator starts the device via a control unit. The worker stands on the upper side of the limiting frame, with the shoe sole positioned on the upper side of the pad. The brush rollers rotate to clean the shoe sole. The high-speed rotation of the brush rollers effectively removes stains. The cleaned dust is guided into the hopper of the collection chamber and then into a storage box for centralized processing, reducing environmental pollution. The brush rollers are controlled by a motor, which drives the drive teeth to rotate. Through an adapter chain, the double rows of teeth at the front rotate. The inner sides of the double rows of teeth between each brush roller are also driven by chains, thus driving multiple brush rollers. The brush rollers are made of a wear-resistant and soft polymer material, which effectively cleans stains on the shoe soles while avoiding damage to the shoes. The bottom is damaged. The chain drive reduces friction, lowers noise, and extends service life. At the same time, the chain drive improves transmission efficiency, ensures stable operation of the brush roller, reduces energy consumption, and lowers maintenance costs. The limit frame consists of a frame structure with horizontal and vertical bars. The limit frame covers the outside of the brush roller. Workers stand on the upper side of the limit frame's pad rod to ensure full contact between the sole of their shoes and the brush roller, improving cleaning effect and preventing accidental contact. The movable cover rotates and closes, pressing down the front end to fix the limit frame. The pad rod is installed in the recess by a snap-fit ​​method. The easily disassembled limit frame and pad rod structure facilitates daily maintenance of the brush roller, reduces maintenance difficulty and cost, and improves the overall efficiency of the equipment.

[0007] Preferably, the storage cavity is provided with a guide hopper, which is designed to be inclined. The tail end of the guide hopper is connected to the storage box. The guide hopper corresponds to the brush roller. A cover is installed at the upper opening of the storage cavity by means of a hinge.

[0008] Preferably, the drive unit contains a motor, and the motor output shaft is provided with drive teeth, and an infrared sensor is embedded in the upper side of the drive unit.

[0009] Preferably, the roller has a double row of teeth on one end of the rotating shaft, and both the double row of teeth and the driving teeth are located in the linkage cavity. The driving teeth are connected to the outer teeth of the double row of teeth of the front roller through chain drive, and the inner teeth of the double row of teeth of the roller are connected to each other through chain drive.

[0010] Preferably, the limiting frame is composed of horizontal bars, pads and vertical bars, with the vertical bars distributed on the upper sides of both ends of the horizontal bars, and the lower sides of both ends of the horizontal bars are provided with support legs, and the upper sides of the horizontal bars are provided with notches at equal intervals.

[0011] Preferably, there are five pads, and the pads are engaged in the corresponding recesses. After the cover is closed, the front end presses down on the limiting frame.

[0012] Preferably, the brush roller is made of a wear-resistant and soft polymer material, and the outer side of the brush roller is provided with a nylon brush bristle bonding pad.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] 1. This utility model features a brush roller design. Workers stand on the upper side of the limiting frame, with the shoe sole positioned on the upper side of the pad. The brush roller rotates to clean the shoe sole, effectively removing stains through high-speed rotation. The cleaned dust is guided into the hopper of the collection chamber and then into a storage box for centralized processing, reducing environmental pollution. The brush roller is controlled by a motor, which drives the drive teeth to rotate. A matching chain drives the front double-row teeth to rotate. The inner sides of the double-row teeth between each brush roller are also driven by chains, completing the drive of multiple brush rollers. The brush roller is made of wear-resistant and soft polymer material, effectively cleaning shoe sole stains while avoiding damage. The chain drive reduces friction and noise while increasing service life. Simultaneously, the chain drive improves transmission efficiency, ensuring stable operation of the brush roller, reducing energy consumption, and lowering maintenance costs.

[0015] 2. This utility model also incorporates a limiting frame design. The limiting frame consists of a frame structure with horizontal and vertical bars. The limiting frame covers the outside of the brush roller, and workers stand on the upper side of the pad rod of the limiting frame to ensure that the soles of their shoes have more contact with the brush roller, improving the cleaning effect and preventing accidental contact. The movable cover rotates and closes, pressing down on the front end to fix the limiting frame. At the same time, the pad rod is installed in the recess by a snap-fit ​​method. The easily disassembled limiting frame and pad rod structure facilitates daily maintenance of the brush roller, reduces maintenance difficulty and cost, and improves the overall efficiency of the equipment. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the main structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the driving structure of this utility model;

[0018] Figure 3 This is a schematic diagram of the body box structure of this utility model;

[0019] Figure 4 This is a schematic diagram of the assembly port structure of this utility model;

[0020] Figure 5 This is a schematic diagram of the limiting frame structure of this utility model;

[0021] Figure 6 This is a schematic diagram of the unfolded structure of this utility model.

[0022] The following are the labels in the diagram: 1. Machine body box; 101. Cover; 102. Control unit; 103. Linkage chamber; 104. Drive unit; 105. Support frame; 106. Movable cover; 107. Storage chamber; 108. Guide hopper; 109. Motor; 110. Infrared sensor; 111. Storage box; 112. Control box; 113. Assembly chamber; 2. Brush roller; 3. Assembly block; 4. Double row of teeth; 5. Drive teeth; 6. Limiting frame; 601. Horizontal bar; 602. Support leg; 603. Pad rod; 604. Longitudinal bar; 605. Notch. Detailed Implementation

[0023] like Figures 1 to 4 As shown, this utility model relates to a brush assembly and a shoe sole cleaning machine, including a body box 1 and a limiting frame 6. The front and rear ends of the body box 1 are respectively provided with a storage cavity 107 and an assembly cavity 113. Brush rollers 2 are equidistantly installed in the assembly cavity 113 through assembly blocks 3. The two sides of the body box 1 are respectively provided with a control unit 102 and a linkage cavity 103. The control unit 102 is provided with a storage box 111 and a control box 112. The front end of the body box 1 is provided with a drive unit 104. The storage cavity 107 is provided with a guide hopper 108. Furthermore, the guide hopper 108 is designed with an incline, and its tail end connects to the storage box 111. The guide hopper 108 corresponds to the brush roller 2. A cover 101 is hinged and installed at the upper opening of the receiving cavity 107. A motor 109 is installed inside the drive unit 104, and a drive tooth 5 is provided on the output shaft of the motor 109. An infrared sensor 110 is embedded in the upper side of the drive unit 104. A double row of teeth 4 is provided on the shaft at one end of the brush roller 2, and both the double row of teeth 4 and the drive tooth 5 are located in the linkage cavity 103. The tooth 5 is connected to the outer teeth of the double-row teeth 4 of the front brush roller 2 via chain drive, and the inner teeth of the double-row teeth 4 of the brush roller 2 are connected via chain drive. The worker stands on the upper side of the limit frame 6, with the sole of the shoe located on the upper side of the pad rod 603. The brush roller 2 rotates to clean the sole of the shoe. The high-speed rotation of the brush roller 2 effectively removes stains. The cleaned dust is guided into the guide hopper 108 of the collection cavity 107 and then guided to the storage box 111 for centralized processing, reducing environmental pollution. The brush roller 2 is controlled by the motor 109. The drive gear 5 rotates, which in turn drives the front double-row teeth 4 to rotate via an adapter chain. The inner sides of the double-row teeth 4 between each brush roller 2 are also driven by a chain, thus driving multiple brush rollers 2. The brush rollers 2 are made of wear-resistant and soft polymer material, which can effectively clean stains on the soles of shoes while avoiding damage to the soles. The chain drive reduces friction, lowers noise, and increases service life. At the same time, the chain drive can improve transmission efficiency, ensure stable operation of the brush rollers 2, reduce energy consumption, and lower maintenance costs.

[0024] like Figures 2 to 6As shown, this utility model relates to a brush assembly and a shoe sole cleaning machine, including a body box 1 and a limiting frame 6. The limiting frame 6 is snapped onto the upper side of the brush roller 2. The limiting frame 6 is composed of horizontal bars 601, pads 603, and vertical bars 604, with the vertical bars 604 distributed on the upper sides of both ends of the horizontal bars 601. Support legs 602 are provided on the lower sides of both ends of the horizontal bars 601. Notches 605 are equidistantly opened on the upper side of the horizontal bars 601. There are five pads 603, and the pads 603 are snapped into the corresponding notches 605. After the cover 101 is closed, the front end presses down on the limiting frame 6. The brush roller 2 is made of wear-resistant and soft polymer material, and the brush roller... The outer side of roller 2 is provided with a nylon brush bristle fitting pad 603. The limiting frame 6 is a frame structure consisting of horizontal bars 601 and vertical bars 604. The limiting frame 6 is clamped to the outer side of the brush roller 2. Workers stand on the pad 603 of the limiting frame 6 to ensure that the soles of their shoes have more contact with the brush roller 2, improve the cleaning effect, and prevent accidental contact. The movable cover 106 rotates to close and presses down the front end to fix the limiting frame 6. At the same time, the pad 603 is installed in the recess 605 by snap-fit. The structure of the easily disassembled limiting frame 6 and pad 603 facilitates the daily maintenance of the brush roller 2, reduces the difficulty and cost of maintenance, and improves the overall efficiency of the equipment.

[0025] Working Principle: This embodiment provides a brush assembly and a shoe sole cleaning machine. During use, it is powered by an external power source. The operator starts the device via a control unit. The worker stands on the upper side of the limit frame 6, with the shoe sole positioned on the upper side of the pad rod 603. The brush roller 2 rotates to clean the shoe sole. The high-speed rotation of the brush roller 2 effectively removes dirt. The cleaned dust is guided into the guide hopper 108 of the collection cavity 107 and then into the storage box 111 for centralized processing, reducing environmental pollution. The brush roller 2 is controlled by a motor 109, which drives the drive gear 5 to rotate. Through an adapter chain drive, the foremost... The double-row teeth 4 rotate, and the inner side of the double-row teeth 4 between each brush roller 2 is also driven by the chain, thus driving multiple brush rollers 2, ensuring stable operation of brush rollers 2, reducing energy consumption, and lowering maintenance costs. The limit frame 6 is a frame structure consisting of horizontal bars 601 and vertical bars 604. The limit frame 6 is clamped on the outside of the brush roller 2. Workers stand on the pad rod 603 of the limit frame 6 to ensure that the sole of the shoe has more contact with the brush roller 2, improve the cleaning effect, and prevent accidental contact. The movable cover 106 rotates to close and presses down the front end to fix the limit frame 6. At the same time, the pad rod 603 is installed in the recess 605 by snap-fit.

[0026] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.

Claims

1. A brush assembly and shoe sole cleaning machine comprising a machine box (1) and a limiting frame (6), characterized in that: The inside front and back ends of the machine body box (1) are respectively provided with a receiving cavity (107) and an assembly cavity (113), the assembly cavity (113) is equidistantly provided with a wool roller (2) through an assembly block (3), the two sides of the machine body box (1) are respectively provided with a control part (102) and a linkage cavity (103), the control part (102) is provided with a storage box (111) and a control box (112), the front end of the machine body box (1) is provided with a driving part (104), and the limiting frame (6) is clamped and installed on the upper side of the wool roller (2).

2. A brush assembly and sole cleaning machine according to claim 1 wherein: The receiving cavity (107) is provided with a guide hopper (108), and the guide hopper (108) is inclined, the tail end of the guide hopper (108) is communicated with the storage box (111), the guide hopper (108) corresponds to the wool roller (2), and the upper opening of the receiving cavity (107) is hingedly rotatably provided with a cover (101).

3. A brush assembly and sole cleaning machine as claimed in claim 2 wherein: The driving part (104) is provided with a motor (109), and the output shaft of the motor (109) is provided with a driving gear (5), and the upper side of the driving part (104) is embeddedly provided with an infrared sensor (110).

4. A brush assembly and sole cleaning machine as claimed in claim 3 wherein: One end of the wool roller (2) is provided with a double-row gear (4), and the double-row gear (4) and the driving gear (5) are located in the linkage cavity (103), the driving gear (5) and the outer gear of the double-row gear (4) of the front wool roller (2) are connected through chain transmission, and the inner gears of the double-row gear (4) of the wool roller (2) are connected through chain transmission.

5. A brush assembly and sole cleaning machine according to claim 4 wherein: The limiting frame (6) is composed of a horizontal bar (601), a pad rod (603) and a vertical bar (604), and the vertical bar (604) is distributed on the upper side of the two ends of the horizontal bar (601), the lower side of the two ends of the horizontal bar (601) is provided with a supporting leg (602), and the upper side of the horizontal bar (601) is equidistantly provided with a notch (605).

6. A brush assembly and sole cleaning machine according to claim 5 wherein: The pad rod (603) is provided with five, and the pad rod (603) is clamped in the corresponding notch (605), and the front end of the cover (101) is pressed down after being closed.

7. A brush assembly and sole cleaning machine according to claim 6 wherein: The wool roller (2) is composed of a wear-resistant and soft high polymer material, and the outer side of the wool roller (2) is provided with a nylon brush wire pad rod (603).