A washing machine roller drive system
By using a single-motor driven sprocket and gear transmission system, the problems of low transmission efficiency and complex structure of traditional boot washing machines are solved, achieving efficient all-round cleaning and extended equipment life.
Patent Information
- Application Number
- CN202522097827.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-09-29
AI Technical Summary
Traditional boot washing machines suffer from problems such as low transmission efficiency, complex structure, high cost, limited brushing coverage, unstable transmission, and inconsistent roller speed, which affect the cleaning effect and the service life of the equipment.
It uses a single motor to output power, combined with sprockets and gears for transmission. The vertical and horizontal brush rollers are driven by double sprockets, which achieves efficient power distribution and smooth transmission. The combination of sprockets and gears achieves transmission coordination and stability under the drive of a single motor.
It improves transmission efficiency, reduces costs, achieves all-round cleaning effect, extends equipment service life, and has a simple and easy-to-understand structure, occupies little space, and is easy to disassemble and assemble.
Smart Images

Figure CN224671472U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a boot washing machine brush roller transmission system, belonging to the field of industrial cleaning transmission technology. Background Technology
[0002] In food processing plants, boot washing machines are commonly used cleaning equipment before and after workers' boots are installed, used to remove mud, oil, and other impurities. However, most traditional boot washing machines currently use a unidirectional brushing structure with multiple motors in their transmission system, resulting in low transmission efficiency, complex structure, high cost, and limited brushing coverage. Especially under high-intensity operating conditions, traditional transmission systems are prone to unstable transmission and inconsistent roller speeds, affecting cleaning effectiveness and equipment lifespan.
[0003] Although existing technologies include boot washing machine structures that combine chain drives, problems still exist such as poor transmission coordination between vertical and horizontal rollers, unreasonable layout, and large space occupation. Summary of the Invention
[0004] Based on the problems described in the background, the present invention aims to solve the following problem: providing a boot washing machine brush roller transmission system that uses a single motor to output power, combined with sprockets and gears for transmission, thereby solving the problems of low transmission efficiency, complex structure, high maintenance costs, limited brushing coverage, unstable transmission, and inconsistent brush roller speeds, which affect the cleaning effect and the service life of the equipment.
[0005] To achieve the above objectives, this utility model provides the following technical solution: A boot washing machine roller transmission system is provided, comprising a boot washing machine body, a motor, a drive sprocket, double sprockets, a vertical roller transmission system one, a vertical transmission bracket, transmission sprocket one, transmission sprocket two, transmission sprocket three, transmission sprocket four, a vertical roller transmission system two, a vertical roller transmission system three, transmission sprocket five, a horizontal roller transmission system one, a horizontal roller transmission system two, a vertical roller, and a horizontal roller. A motor is installed on the edge of the boot washing machine body, and a drive sprocket is provided at the motor output end. The drive sprocket is connected to the left end sprocket of the double sprockets via a chain. The double sprockets are fixedly installed on the vertical roller transmission system one. A straight roller drive is rotatably mounted on a vertical transmission bracket. Vertical roller drives 2 and 3 are also rotatably mounted on the vertical transmission bracket. The vertical transmission bracket is fixed to the main body of the boot washing machine. A transmission sprocket 1 is fixedly mounted on the right side of the vertical roller drive 1 on the vertical transmission bracket. Transmission sprocket 1 is connected to transmission sprocket 2 via a chain. Transmission sprocket 2 and transmission sprocket 3 are both fixedly mounted on the right side of the vertical roller drive 2 on the vertical transmission bracket and are relatively fixed. Transmission sprocket 3 is connected to transmission sprocket 4 via a chain. Transmission sprocket 4 is fixedly mounted on the right side of the vertical roller drive 3 on the vertical transmission bracket.
[0006] The right sprocket of the double sprocket is connected to drive sprocket five via a chain. Drive sprocket five is installed on horizontal brush roller drive one. Horizontal brush roller drive two is installed on both sides of horizontal brush roller drive one and is connected by a sprocket. Vertical brush rollers are installed on vertical brush roller drive one, vertical brush roller drive two and vertical brush roller drive three. Horizontal brush rollers are installed on horizontal brush roller drive two on both sides of horizontal brush roller drive one. The horizontal brush rollers are located inside the main body of the boot washing machine, while the vertical brush rollers protrude outside the main body of the boot washing machine.
[0007] Preferably, the vertical roller drive includes a drive shaft, a fixed frame, and a bevel gear. The fixed frame is fixed to the main body of the boot washing machine. The drive shaft is rotatably mounted on the fixed frame and the vertical drive support. The bevel gear is mounted on the drive shaft and located between the double sprocket and the vertical drive support.
[0008] Preferably, the vertical roller drive includes a second drive shaft, a second fixed frame, and a second bevel gear. The second fixed frame is fixed to the main body of the boot washing machine, the second drive shaft is rotatably mounted on the second fixed frame and the vertical drive support, and the second bevel gear is mounted on the second drive shaft and located on the left side of the second fixed frame.
[0009] Preferably, the vertical roller drive includes a drive shaft and a bevel gear. The drive shaft is rotatably mounted on the vertical drive bracket, and the bevel gear is mounted on the drive shaft and located on the left side of the vertical drive bracket.
[0010] Preferably, the horizontal roller drive includes a drive shaft four, a fixed frame four, a drive sprocket six, a drive gear one, a drive shaft five, a drive gear two, and a drive sprocket seven. The fixed frame four is mounted on the main body of the boot washing machine. The drive shaft four and drive shaft five are rotatably mounted on the fixed frame four and the main body of the boot washing machine. The rightmost end of the drive shaft four is equipped with the drive sprocket five. The drive shaft four is also equipped with the drive sprocket six, which is located to the left of the drive sprocket five. The drive shaft four is also equipped with the drive gear one, which is located to the left of the drive sprocket six. The drive gear one meshes with the drive gear two, which is mounted on the drive shaft five. The drive shaft five is also equipped with the drive sprocket seven.
[0011] Preferably, the horizontal roller drive includes a drive sprocket eight and a drive shaft six. The drive shaft six is fixed on the main body of the boot washing machine, and the drive sprocket eight is mounted on the drive shaft six and connected to the drive sprocket six and the drive sprocket seven respectively via chains.
[0012] Preferably, the vertical roller is mounted on bevel gear 1, bevel gear 2, and bevel gear 3 on vertical roller drive 1, vertical roller drive 2, and vertical roller drive 3, and the horizontal roller is connected to drive shaft 6 on horizontal roller drive 2 on both sides of horizontal roller drive 1.
[0013] The beneficial effects of this utility model are:
[0014] 1. Power output is achieved through a single motor, and the vertical and horizontal roller drives are driven by double sprockets respectively, which realizes efficient power distribution and transmission efficiency. Moreover, two different motion modes, horizontal and vertical, can be achieved with only a single motor, reducing the number of motors used and lowering costs.
[0015] 2. Through the coordinated brushing of three sets of vertical brush rollers and two sets of horizontal brush rollers, the boots are cleaned in all directions, and the cleaning effect on the soles and sides of the boots is increased.
[0016] 3. The transmission method adopts a combination of sprockets and gears. Under the drive of a single motor, the transmission ratio is stable and the transmission is smooth. The final output roller speed is the same, and the transmission coordination between the vertical and horizontal rollers is high, which greatly improves the service life of the equipment.
[0017] 4. The structure is simple and easy to understand, the layout is reasonable, it occupies little space, and different transmission units can be quickly disassembled and assembled, making it easy to replace parts. Attached Figure Description
[0018] Figure 1 This is a bottom view of the structural schematic diagram of this utility model;
[0019] Figure 2 This is a top view of the structural schematic diagram of this utility model;
[0020] Figure 3 This is a bottom view showing the specific structure of the transmission part of this utility model;
[0021] Figure 4 This is a top view illustrating the specific structure of the transmission part of this utility model;
[0022] In the diagram: 1 is the main body of the boot washing machine; 2 is the motor; 3 is the drive sprocket; 4 is the double sprocket; 5 is the vertical brush roller drive one; 6 is the vertical transmission support; 7 is the transmission sprocket one; 8 is the transmission sprocket two; 9 is the transmission sprocket three; 10 is the transmission sprocket four; 11 is the vertical brush roller drive two; 12 is the vertical brush roller drive three; 13 is the transmission sprocket five; 14 is the horizontal brush roller drive one; 15 is the horizontal brush roller drive two; 16 is the vertical brush roller; 17 is the horizontal brush roller; 51 52 is drive shaft one; 53 is fixed frame one; 111 is bevel gear one; 112 is drive shaft two; 113 is bevel gear two; 121 is drive shaft three; 122 is bevel gear three; 141 is drive shaft four; 142 is fixed frame four; 143 is drive sprocket six; 144 is drive gear one; 145 is drive shaft five; 146 is drive gear two; 147 is drive sprocket seven; 151 is drive sprocket eight; 152 is drive shaft six. Detailed Implementation
[0023] The embodiments of this utility model will be further described below with reference to the accompanying drawings:
[0024] Example 1
[0025] like Figure 1 and Figure 2 As shown, this utility model provides a boot washing machine roller transmission system, including a boot washing machine body 1, a motor 2, a drive sprocket 3, a double sprocket 4, a vertical roller transmission 1 5, a vertical transmission bracket 6, a transmission sprocket 1 7, a transmission sprocket 2 8, a transmission sprocket 3 9, a transmission sprocket 4 10, a vertical roller transmission 2 11, a vertical roller transmission 3 12, a transmission sprocket 5 13, a horizontal roller transmission 1 14, a horizontal roller transmission 2 15, a vertical roller 16, and a horizontal roller 17. The motor 2 is mounted on the edge of the boot washing machine body 1. The output end of the motor 2 is equipped with a drive sprocket 3. The drive sprocket 3 is connected to the left sprocket of the double sprocket 4 via a chain. The double sprocket 4 is fixedly mounted on the vertical roller transmission 1 5. Drive 1 5 is rotatably mounted on vertical transmission bracket 6. Vertical roller drive 2 11 and vertical roller drive 3 12 are also rotatably mounted on vertical transmission bracket 6. Vertical transmission bracket 6 is fixed on the main body 1 of the boot washing machine. Drive sprocket 1 7 is fixedly mounted on the right side of vertical roller drive 1 5. Drive sprocket 1 7 is connected to drive sprocket 2 8 via a chain. Drive sprocket 2 8 and drive sprocket 3 9 are both fixedly mounted on the right side of vertical roller drive 2 11 and are fixed relative to each other. Drive sprocket 3 9 is connected to drive sprocket 4 10 via a chain. Drive sprocket 4 10 is fixedly mounted on the right side of vertical roller drive 3 12.
[0026] During transmission, motor 2 outputs power to drive drive sprocket 3 to rotate. Drive sprocket 3 drives double sprocket 4 through a chain. Double sprocket 4 drives vertical roller drive 5 to rotate, thereby driving drive sprocket 7 to rotate. Drive sprocket 7 drives drive sprocket 8 through a chain. Drive sprocket 8 drives vertical roller drive 11 and drive sprocket 9 to rotate. Drive sprocket 9 drives drive sprocket 10 through a chain, thereby driving vertical roller drive 12 to rotate, thus realizing the movement of the vertical transmission part.
[0027] The right sprocket of the double sprocket 4 is connected to the transmission sprocket 5 13 via a chain. The transmission sprocket 5 13 is installed on the horizontal brush roller transmission 1 14. Horizontal brush roller transmission 2 15 is installed on both sides of the horizontal brush roller transmission 1 14 and is connected by a sprocket. The vertical brush roller 16 is installed on the vertical brush roller transmission 1 5, the vertical brush roller transmission 2 11 and the vertical brush roller transmission 3 12. The horizontal brush roller 17 is installed on the horizontal brush roller transmission 2 15 on both sides of the horizontal brush roller transmission 1 14. The horizontal brush roller 17 is located inside the main body 1 of the boot washing machine, while the vertical brush roller 16 protrudes outside the main body 1 of the boot washing machine.
[0028] After rotation, the right sprocket of the double sprocket 4 drives the transmission sprocket 5 13 to rotate via the chain. The transmission sprocket 5 13 drives the horizontal brush roller transmission 1 14 to rotate. The horizontal brush roller transmission 1 14 rotates through the sprocket and is connected to the horizontal brush roller transmission 2 15 to achieve rotation, thereby realizing the movement of the horizontal transmission part.
[0029] like Figure 3 and Figure 4 As shown, the vertical roller drive 5 includes a drive shaft 51, a fixed frame 52, and a bevel gear 53. The fixed frame 52 is fixed on the main body 1 of the boot washing machine. The drive shaft 51 is rotatably mounted on the fixed frame 52 and the vertical drive bracket 6. The bevel gear 53 is mounted on the drive shaft 51 and located between the double sprocket 4 and the vertical drive bracket 6.
[0030] When the vertical roller drive 5 is in operation, the double sprocket 4 drives the drive shaft 51 to rotate. The drive shaft 51 rotates through bearings on the fixed frame 52 and the vertical transmission support 6. The bevel gear 53 on the drive shaft 51 realizes the vertical direction of power and achieves vertical rotation, thereby driving a vertical roller 16 to rotate.
[0031] like Figure 3 and Figure 4 The vertical roller transmission 21 shown includes a transmission shaft 2111, a fixed frame 212 and a bevel gear 213. The fixed frame 212 is fixed on the main body 1 of the boot washing machine. The transmission shaft 211 is rotatably mounted on the fixed frame 212 and the vertical transmission bracket 6. The bevel gear 213 is mounted on the transmission shaft 211 and is located on the left side of the fixed frame 212.
[0032] When the vertical roller drive 11 is in operation, the transmission sprocket 7 at the right end of the vertical roller drive 5 drives the transmission sprocket 8 to rotate via a chain. The transmission sprocket 8 drives the transmission shaft 111 to rotate. The transmission shaft 111 rotates on the fixed frame 112 and the vertical transmission bracket 6 via bearings. The bevel gear 113 on the transmission shaft 111 realizes the vertical direction of power and achieves vertical rotation, thereby driving a vertical roller 16 to rotate.
[0033] like Figure 3 and Figure 4 The vertical roller transmission 312 shown includes a transmission shaft 3121 and a bevel gear 3122. The transmission shaft 3121 is rotatably mounted on the vertical transmission bracket 6, and the bevel gear 3122 is mounted on the transmission shaft 3121 and located on the left side of the vertical transmission bracket 6.
[0034] When the vertical roller drive 12 is in operation, it drives the transmission sprocket 10 to rotate via the chain through the transmission sprocket 9. The transmission sprocket 10 drives the transmission shaft 121 to rotate. The transmission shaft 121 rotates on the vertical transmission bracket 6 through the bearing. The bevel gear 122 on the transmission shaft 121 realizes the vertical direction of power and achieves vertical rotation, thereby driving a vertical roller 16 to rotate.
[0035] like Figure 3 and Figure 4 The horizontal roller drive 14 shown includes a drive shaft 141, a fixed frame 142, a drive sprocket 143, a drive gear 144, a drive shaft 145, a drive gear 146, and a drive sprocket 147. The fixed frame 142 is mounted on the main body 1 of the boot washing machine. The drive shafts 141 and 145 are rotatably mounted on the fixed frame 142 and the main body 1 of the boot washing machine. The rightmost end of the drive shaft 141 is equipped with a drive sprocket 13. The drive shaft 141 is also equipped with a drive sprocket 143, which is located to the left of the drive sprocket 13. The drive shaft 141 is also equipped with a drive gear 144, which is located to the left of the drive sprocket 143. The drive gear 144 meshes with a drive gear 146, which is mounted on the drive shaft 145. The drive shaft 145 is also equipped with a drive sprocket 147.
[0036] The horizontal rotation is achieved by the transmission sprocket 5 13 driving the transmission shaft 4 141 to rotate. The transmission sprocket 6 143 and the transmission gear 1 144 on the transmission shaft 4 141 also rotate. The transmission gear 1 144 meshes with the transmission gear 2 146 on the transmission shaft 5 145 to rotate, thus driving the transmission sprocket 7 147 to rotate. The transmission shaft 4 141 is rotatably fixed to the fixed frame 4 142 and the main body 1 of the boot washing machine through bearings.
[0037] like Figure 3 and Figure 4 The horizontal roller drive 15 shown includes a drive sprocket 8 151 and a drive shaft 6 152. The drive shaft 6 152 is fixed on the main body 1 of the boot washing machine. The drive sprocket 8 151 is mounted on the drive shaft 6 152 and is connected to the drive sprocket 6 143 and the drive sprocket 7 147 respectively by a chain.
[0038] The transmission sprockets 6 143 and 7 147 drive the transmission sprockets 8 151 on both sides to rotate via chains. The transmission sprockets 8 151 then drive the transmission shaft 6 152 to rotate. The transmission shaft 6 152 is fixed to the main body 1 of the boot washing machine by bearings.
[0039] The vertical roller 16 is mounted on bevel gears 53, 113, and 122 on vertical roller drive 1, vertical roller drive 2, and vertical roller drive 3, and the horizontal roller 17 is connected to drive shaft 152 on horizontal roller drive 2, which is located on both sides of horizontal roller drive 14.
[0040] When the specific rollers rotate, the vertical roller 16 rotates through bevel gear 1 53, bevel gear 2 113 and bevel gear 3 122, and the horizontal roller 17 rotates through drive shaft 6 152.
Claims
1. A boot washing machine roller transmission system, characterized in that, The machine includes a boot washing machine body (1), a motor (2), a drive sprocket (3), a double sprocket (4), a vertical brush roller drive one (5), a vertical transmission bracket (6), a transmission sprocket one (7), a transmission sprocket two (8), a transmission sprocket three (9), a transmission sprocket four (10), a vertical brush roller drive two (11), a vertical brush roller drive three (12), a transmission sprocket five (13), a horizontal brush roller drive one (14), a horizontal brush roller drive two (15), a vertical brush roller (16), and a horizontal brush roller (17). The motor (2) is installed on the edge of the boot washing machine body (1). The output end of the motor (2) is equipped with a drive sprocket (3). The drive sprocket (3) is connected to the left end sprocket of the double sprocket (4) by a chain. The double sprocket (4) is fixedly installed on the vertical brush roller drive one (5). The vertical brush roller drive one (5) rotates. The vertical transmission bracket (6) is installed on the vertical transmission bracket (6). The vertical transmission bracket (6) is also rotatably installed on the vertical transmission bracket (6). The vertical transmission bracket (6) is fixed on the main body (1) of the boot washing machine. The vertical roller transmission one (5) is fixedly installed on the right side of the vertical transmission bracket (6) with a transmission sprocket one (7). The transmission sprocket one (7) is connected to the transmission sprocket two (8) by a chain. The transmission sprocket two (8) and the transmission sprocket three (9) are both fixedly installed on the right side of the vertical roller transmission two (11) and fixed relative to each other. The transmission sprocket three (9) is connected to the transmission sprocket four (10) by a chain. The transmission sprocket four (10) is fixedly installed on the right side of the vertical roller transmission three (12) of the vertical transmission bracket (6). The right sprocket of the double sprocket (4) is connected to the transmission sprocket five (13) by a chain. The transmission sprocket five (13) is installed on the horizontal hair roller transmission one (14). Horizontal hair roller transmission two (15) is installed on both sides of the horizontal hair roller transmission one (14) and is connected by a sprocket. The vertical hair roller (16) is installed on the vertical hair roller transmission one (5), the vertical hair roller transmission two (11) and the vertical hair roller transmission three (12). The horizontal hair roller (17) is installed on the horizontal hair roller transmission two (15) on both sides of the horizontal hair roller transmission one (14). The horizontal hair roller (17) is located inside the main body (1) of the boot washing machine, and the vertical hair roller (16) is exposed outside the main body (1) of the boot washing machine.
2. The boot washing machine roller transmission system according to claim 1, characterized in that, The vertical roller drive (5) includes a drive shaft (51), a fixed frame (52), and a bevel gear (53). The fixed frame (52) is fixed on the main body (1) of the boot washing machine. The drive shaft (51) is rotatably mounted on the fixed frame (52) and the vertical drive bracket (6). The bevel gear (53) is mounted on the drive shaft (51) and located between the double sprocket (4) and the vertical drive bracket (6).
3. The boot washing machine roller transmission system according to claim 1, characterized in that, The vertical roller transmission 2 (11) includes a transmission shaft 2 (111), a fixed frame 2 (112) and a bevel gear 2 (113). The fixed frame 2 (112) is fixed on the main body (1) of the boot washing machine. The transmission shaft 2 (111) is rotatably mounted on the fixed frame 2 (112) and the vertical transmission bracket (6). The bevel gear 2 (113) is mounted on the transmission shaft 2 (111) and located on the left side of the fixed frame 2 (112).
4. The boot washing machine roller transmission system according to claim 1, characterized in that, The vertical roller drive three (12) includes a drive shaft three (121) and a bevel gear three (122). The drive shaft three (121) is rotatably mounted on the vertical drive bracket (6), and the bevel gear three (122) is mounted on the drive shaft three (121) and located on the left side of the vertical drive bracket (6).
5. The boot washing machine roller transmission system according to claim 1, characterized in that, The horizontal roller drive (14) includes a drive shaft four (141), a fixed frame four (142), a drive sprocket six (143), a drive gear one (144), a drive shaft five (145), a drive gear two (146), and a drive sprocket seven (147). The fixed frame four (142) is mounted on the main body (1) of the boot washing machine. The drive shaft four (141) and the drive shaft five (145) are rotatably mounted on the fixed frame four (142) and the main body (1) of the boot washing machine. The drive sprocket five is installed at the rightmost end of the drive shaft four (141). (13) A transmission sprocket six (143) is also installed on the transmission shaft four (141). The transmission sprocket six (143) is located to the left of the transmission sprocket five (13). A transmission gear one (144) is also installed on the transmission shaft four (141). The transmission gear one (144) is located to the left of the transmission sprocket six (143). The transmission gear one (144) meshes with the transmission gear two (146). The transmission gear two (146) is installed on the transmission shaft five (145). A transmission sprocket seven (147) is also installed on the transmission shaft five (145).
6. The boot washing machine roller transmission system according to claim 1, characterized in that, The horizontal roller drive (15) includes a drive sprocket (151) and a drive shaft (152). The drive shaft (152) is fixed on the main body (1) of the boot washing machine. The drive sprocket (151) is installed on the drive shaft (152) and is connected to the drive sprocket (143) and the drive sprocket (147) respectively by a chain.
7. The boot washing machine roller transmission system according to claim 1, characterized in that, The vertical roller (16) is mounted on bevel gears 1 (53), 2 (113), and 3 (122) on vertical roller drive 1 (5), vertical roller drive 2 (11), and vertical roller drive 3 (12). The horizontal roller (17) is connected to drive shaft 6 (152) on horizontal roller drive 2 (15) on both sides of horizontal roller drive 1 (14).