Scrubbing shoe washing device

By designing a shoe-washing device that combines the automated cleaning, spraying, and drying functions of the shoe brush shaft and shoe hanging shaft, the problems of low efficiency and uneven cleaning of existing equipment are solved, achieving efficient and comprehensive shoe cleaning and a simple operating experience.

CN223640678UActive Publication Date: 2025-12-09深圳市奥德莱智家科技有限公司
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Patent Information

Application Number
CN202423145067.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-12-09
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

Existing shoe washing equipment is inadequate in terms of processing efficiency, cleaning effect, and user experience. It is difficult to efficiently process multiple pairs of shoes and to ensure a uniform cleaning effect.

Method used

A shoe washing device has been designed, including a shoe brush shaft and a shoe hanging shaft. The shoe brush shaft is equipped with bristles, and the shoe hanging shaft can hang multiple pairs of shoes. Combined with a fan and a drive device, it realizes an automated process of cleaning, spraying, rinsing and drying.

Benefits of technology

It enables efficient cleaning of multiple pairs of shoes, ensuring uniform cleaning of all angles on the shoe surface, improving cleaning quality, reducing water waste, and offering easy operation and enhanced user experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a shoe brushing and washing device which comprises a rack, a shoe brush shaft which is arranged in the rack, is cylindrical and rotates along the axis, and a plurality of shoe hanging shafts which are arranged around the shoe brush shaft and are opposite to the rotation direction of the shoe brush shaft, and a plurality of shoes are hung on the shoe hanging shafts. Bristles for brushing shoes are uniformly arranged on the shaft wall of the shoe brush shaft; the shoe brush shaft and the shoe hanging shaft are controlled by the driving device, and clean water, detergent or gas sprayed by the spray washing head and the spray washing holes is conveyed by the air-liquid generating device through the air-liquid pipeline and then is uniformly distributed on the flow dividing disc, so that the surfaces of shoes can be fully contacted and cleaned at all angles; the shoe scrubbing and washing device greatly improves the shoe washing efficiency, and is particularly suitable for professional shoe washing shops and shoe washing industries needing rapid turnover.
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Description

Technical Field

[0001] This utility model relates to the field of shoe washing machine technology, and in particular to a brushing and washing shoe washing device. Background Technology

[0002] With the improvement of living standards and increased awareness of personal hygiene and shoe care, the demand for shoe cleaning is growing. Professional shoe cleaning shops and the shoe cleaning industry have emerged to provide consumers with professional shoe cleaning services. However, existing shoe cleaning equipment has many shortcomings in terms of processing efficiency, cleaning effect, and user experience. Shoe stains adhere strongly, and traditional shoe cleaning methods usually rely on manual brushing or semi-automatic single-shoe cleaning devices. This method is not only inefficient but also makes it difficult to ensure that each pair of shoes receives a uniform cleaning treatment. Therefore, the market urgently needs a rotary shoe cleaning machine that can efficiently process multiple pairs of shoes, integrating automatic brushing, water spraying, and rapid drying to meet the actual needs of professional shoe cleaning shops and the shoe cleaning industry. Utility Model Content

[0003] Therefore, the purpose of this utility model is to provide a shoe washing and brushing device, which has the characteristics of high washing efficiency and good washing effect.

[0004] The technical solution adopted by this utility model to solve its technical problem is as follows:

[0005] A shoe washing and brushing device includes a frame, a shoe brush shaft that rotates along an axis inside the frame, a plurality of shoe hanging shafts arranged around the shoe brush shaft, a plurality of shoes hanging on the shoe hanging shafts, and bristles for brushing and washing shoes evenly arranged on the shaft wall of the shoe brush shaft.

[0006] The frame is equipped with a liquid spraying device for spraying liquid or blowing air onto the inside and outside of the shoes. The liquid spraying device includes a distribution plate with a cavity at one end of the frame. The shoe hanging shaft is a hollow tube, and one end of the shoe hanging shaft is connected to the distribution plate. The distribution plate can uniformly deliver liquid or gas into the shoe hanging shaft.

[0007] The shoe hanging shaft includes several shoe rack tubes for supporting the bottom of the shoes. The opposite side of the shoe rack tube is connected to a shoe slip tube. The upper end of the shoe slip tube is provided with a shoe support block for inserting into the shoe. The air-liquid device includes several spray holes provided on the surface of the shoe support block. The spray holes are connected to the inside of the hollow tube of the shoe hanging shaft. At least two shoe rack tubes are provided on one shoe hanging shaft.

[0008] The shoe rack tube is hinged with a sole strip for abutting against the bottom of the shoe. The hinged end of the sole strip forms a hinge plate. One side of the hinge plate is provided with a groove, and the shoe rack tube is provided with a round protrusion that can cooperate with the groove.

[0009] One end of the shoe brush shaft is rotatably mounted and passes through the central axis of the distribution plate. The shoe brush shaft forms a flow-through hollow tube inside the distribution plate. The part of the wall of the flow-through hollow tube inside the cavity of the distribution plate has evenly opened flow-in holes. The flow-through hollow tube is connected to a wind-liquid pipe, and the wind-liquid pipe is connected to a wind-liquid generating device.

[0010] The air-fluid device includes a spray head connected to a distribution plate that can spray fluid to the outside of the shoe.

[0011] The frame is equipped with an exhaust system for drawing gas out of the frame.

[0012] The other end of the frame is equipped with a drive device that drives the shoe brush shaft and the shoe hanging shaft to rotate.

[0013] The driving device includes a power unit located at the bottom of the frame, a transmission disk located above the power unit, the power unit connecting to and driving the shoe brush shaft, the shoe brush shaft being located on the central axis of the transmission disk, and a transmission gear connected between the shoe brush shaft and the shoe hanging shaft being located inside the transmission disk, the shoe hanging shaft rotating in the opposite direction to the shoe brush shaft.

[0014] A clutch shaft is provided between the shoe brush shaft and the transmission disc. By controlling the clutch shaft, the shoe brush shaft can drive the transmission disc to rotate coaxially.

[0015] The frame has a door on one side that can be opened or closed.

[0016] A shoe washing method, the shoe washing steps including:

[0017] S1: Open the compartment door, rotate the shoe hanging shaft to the appropriate position, put the shoes on the shoe support block, and make the shoe rack tube support the bottom of the shoes. Rotate the sole pressure strip to abut against the bottom of the shoes to fix the shoes, and close the compartment door.

[0018] S2: Turn on the shoe washing device switch to perform a pre-rinse operation. The air-liquid generator delivers clean water into the distribution plate through the air-liquid pipe. The clean water washes the shoes from the spray head and spray hole respectively.

[0019] S3: After the pre-rinsing operation in S2 has been performed for 3-5 seconds, the shoe brush shaft and shoe hanging shaft will rotate to rinse the shoes with clean water.

[0020] S4: The air-liquid generating device generates washing liquid and sprays it onto the inner and outer surfaces of the shoes from the spray head and spray holes;

[0021] S5: During the washing operation, the rotational power of the shoe brush shaft and the shoe hanging shaft increases and the rotational speed increases. At the same time, the air-liquid generating device delivers a mixture of washing liquid and clean water, which is sprayed through the spray head and spray holes.

[0022] S6: Rinse the shoe brush shaft and shoe hanging shaft to rotate with the power in S, and the air-liquid generating device only delivers clean water, which is sprayed through the spray head and spray hole.

[0023] S7: During the air-drying process, the air-liquid generating device generates pressurized gas, which is sprayed out through the spray head and spray holes. At the same time, the clutch shaft is controlled so that the shoe brush shaft drives the transmission disk to rotate as a whole, and the power of the power device is increased to the maximum. The shoes are shaken out of water through high-speed rotation.

[0024] S8: During the drying operation, the air-liquid generator produces heated gas, which is blown out through the spray head and spray hole. At the same time, the exhaust device is turned on to discharge the gas containing water vapor from the frame, and the process continues until the shoes are dried.

[0025] S9: Turn off the shoe washing device switch, open the compartment door, take out the shoes one by one, and complete the shoe washing operation.

[0026] The beneficial effects of this utility model are:

[0027] 1. High-efficiency processing: This device uses a rotating shoe brush shaft to clean shoes on a hanging shaft, and multiple shoes can be hung and fixed simultaneously, allowing multiple pairs of shoes to be cleaned at the same time. This design greatly improves shoe cleaning efficiency, and is especially suitable for professional shoe cleaning shops and the shoe cleaning industry that require fast turnover.

[0028] 2. All-round cleaning: Because the bristles for brushing shoes are evenly distributed on the shoe brush shaft, and the shoe hanging shaft can support the shoes to rotate in the opposite direction to the shoe brush shaft, it ensures that all angles of the shoe surface can be fully contacted and cleaned, solving the problem of dead corners that are difficult to reach by traditional methods.

[0029] 3. High degree of automation: The shoe brush shaft and shoe hanging shaft are controlled by a drive device. The clean water, detergent or gas sprayed from the spray head and spray hole is transported by the air-liquid generator through the air-liquid pipeline and then evenly distributed by the distribution plate. It can not only provide functions such as clean water pre-rinsing, detergent spraying, rinsing and air drying at different stages, but also ensure that the fluid is evenly distributed to the inside and outside of each shoe, improving the cleaning quality while reducing water waste.

[0030] 4. Easy to operate: Users only need to follow simple steps to put the shoes into the starting device to complete the entire shoe washing process. No complicated manual intervention is required, which saves labor costs and improves the user experience. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of the external structure of the shoe washing device;

[0032] Figure 2 This is a schematic diagram of the internal structure of this shoe washing device;

[0033] Figure 3 This is a schematic diagram of the structure of the shoe brush shaft and the diversion plate inside this shoe washing device;

[0034] Figure 4 This is a cross-sectional view of the shoe washing device;

[0035] Figure 5 This is a schematic diagram of the shoe-hanging shaft;

[0036] Figure 6 This is a structural diagram of the shoe rack tube, shoe support block, and shoe sole strip;

[0037] Figure 7 This is a schematic diagram of the structure of Embodiment 2 of the shoe washing device;

[0038] Figure 8 This is a schematic diagram of the internal structure of Embodiment 2 of the shoe washing device;

[0039] Figure 9 This is a cross-sectional view of Embodiment 2 of the shoe washing device. Detailed Implementation

[0040] To make the technical problem solved by this utility model, the technical solution adopted, and the technical effect achieved clearer, the technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described herein are merely for explaining this utility model and not for limiting it. Furthermore, it should be noted that, for ease of description, only the parts related to this utility model are shown in the accompanying drawings, not all of them.

[0041] As an example, refer to Figure 1 , Figure 2 A shoe washing device includes a frame 1, a cylindrical shoe brush shaft 5 that rotates along an axis and is disposed inside the frame 1, and several shoe hanging shafts 4 disposed around the shoe brush shaft 5 and in the opposite direction of rotation of the shoe brush shaft 5. Several shoes are hung on the shoe hanging shafts 4, and the shaft wall of the shoe brush shaft 5 is evenly provided with bristles 50 for brushing shoes.

[0042] Furthermore, this device, by setting the shoe brush shaft 5 to rotate in opposite directions to the shoe hanging shaft 4, and by allowing the shoe hanging shaft 4 to simultaneously suspend and fix multiple shoes, enables multiple pairs of shoes to be cleaned at the same time. This design greatly improves shoe washing efficiency and is especially suitable for professional shoe cleaning shops and the shoe cleaning industry that require rapid turnover.

[0043] Reference Figure 2 The frame 1 is a vertical cylindrical shape. The bottom of the frame 1 is equipped with a drive device 2 that drives the shoe brush shaft 5 and the shoe hanging shaft 4 to rotate. The frame 1 is also equipped with a wind-liquid device for spraying liquid or blowing air onto the inside and outside of the shoes.

[0044] Reference Figure 4The air-liquid device includes a distribution plate 3 with a cavity set at the top of the frame 1. The shoe-hanging shaft 4 is a hollow tube. The bottom end of the shoe-hanging shaft 4 is installed on the drive device 2, and the upper end is hinged in the distribution plate 3. The distribution plate 3 can uniformly transport liquid or gas into the shoe-hanging shaft 4.

[0045] Reference Figure 5 The shoe hanging shaft 4 includes several curved shoe rack tubes 40 for supporting the bottom of the shoes. The lower side of the shoe rack tube 40 is connected to a curved shoe slipper tube 41. The upper end of the shoe slipper tube 41 is provided with a shoe support block 42 for inserting into the shoe. The surface of the shoe support block 42 is provided with several spray holes 420. The spray holes 420 are connected to the inside of the hollow tube of the shoe hanging shaft 4. At least two shoe rack tubes 40 are provided on one shoe hanging shaft 4.

[0046] Reference Figure 6 The shoe rack tube 40 is hinged with an arc-shaped sole pressure strip 43 for abutting against the bottom of the shoe. The hinge end of the sole pressure strip 43 forms a hinge plate 430. One side of the hinge plate 430 is provided with a groove 431. The shoe rack tube 40 is provided with a round protrusion 432 that can cooperate with the groove 431.

[0047] Reference Figure 4 The upper end of the shoe brush shaft 5 is rotatably mounted and passes through the central axis of the distribution plate 3. The upper end of the shoe brush shaft 5 forms a flow-through hollow tube 51. The portion of the wall of the flow-through hollow tube 51 within the cavity of the distribution plate 3 has evenly spaced inlet holes 510. The top end of the flow-through hollow tube 51 is connected to a ventilation-liquid pipe 11, and the other end of the ventilation-liquid pipe 11 is connected to a ventilation-liquid generating device 60. Specifically, the ventilation-liquid generating device 60 can supply clean water, detergent, a mixture of clean water and detergent, gas, or heated gas to the ventilation-liquid pipe 11.

[0048] Reference Figure 4 The air-liquid device includes a spray head 30 that is connected to the distribution plate 3 and can spray fluid onto the shoe hanging shaft 4. Specifically, the spray head 30 is disposed on the lower surface of the distribution plate 3.

[0049] The frame 1 is equipped with an exhaust device 12 for extracting gas to the outside of the frame 1.

[0050] Furthermore, the shoe brush shaft 5 and the shoe hanging shaft 4 are controlled by the drive device 2. The clean water, detergent or gas sprayed from the spray head 30 and the spray hole 420 is transported by the air-liquid generator 60 through the air-liquid pipe 11 and then evenly distributed to the distribution plate 3. This not only provides functions such as pre-rinsing with clean water, spraying with detergent, rinsing and drying at different stages, but also ensures that the fluid is evenly distributed to the inside and outside of each shoe, improving the cleaning quality while reducing water waste.

[0051] Reference Figure 4The drive unit 2 includes a power unit located at the lower part of the frame 1. Preferably, the power unit contains a motor, and a transmission disk 20 is located above the power unit. The power unit connects to and drives the shoe brush shaft 5. Preferably, the motor drives the shoe brush shaft 5 to rotate via a belt. Belt transmission can protect the motor to a certain extent in case of overload, preventing it from burning out. The shoe brush shaft 5 is located on the central axis of the transmission disk 20, and a transmission gear is provided inside the transmission disk 20, connecting the shoe brush shaft 5 and the shoe hanging shaft 4. Specifically, the shoe brush shaft 5 and the shoe hanging shaft 4 are rotated in opposite directions by the transmission gear.

[0052] A clutch shaft 52 is provided between the shoe brush shaft 5 and the transmission disk 20. By controlling the clutch shaft 52, the shoe brush shaft 5 can drive the transmission disk 20 to rotate coaxially. Specifically, when the clutch shaft 52 is tightly fitted onto the shoe brush shaft 5 and rotates coaxially with the shoe brush shaft 5, the shoe brush shaft 5 drives the shoe hanging shaft 4 to rotate via the transmission gear, and the transmission disk 20 does not rotate. When the clutch shaft 52 is locked to the transmission disk 20, the shoe brush shaft 5, the shoe hanging shaft 4, and the diverter disk 3 on the transmission disk 20 are a single unit, and are driven to rotate by the drive device 2 to achieve the dehydration operation of the shoes.

[0053] A door 10 that can be opened or closed is provided on one side of the frame 1. Preferably, the door 10 can be made of tempered glass or other high-strength transparent material.

[0054] In Embodiment Two, the frame 1 is placed horizontally, with the shoe brush shaft 5 and shoe hanging shaft 4 arranged horizontally inside. The diverter plate 3 and drive device 2 are respectively located on both sides, and the spray heads 30 are evenly arranged horizontally inside the upper wall of the frame 1 through pipes. Other features of Embodiment Two are basically the same as those of Embodiment One.

[0055] The shoe washing steps using this shoe washing device are as follows:

[0056] S1: Open the door 10, rotate the shoe hanging shaft 4 to the appropriate position, put the shoes on the shoe support block 42, and make the shoe rack tube 40 support the bottom of the shoes. Rotate the sole pressure strip 43 to abut against the bottom of the shoes to fix the shoes, and close the door 10.

[0057] S2: Turn on the shoe washing device switch to perform a pre-rinse operation. The air-liquid generator 60 delivers clean water into the diversion plate 3 through the air-liquid pipe 11. The clean water washes the shoes from the spray head 30 and the spray hole 420 respectively.

[0058] S3: After the pre-rinsing operation in S2 has been performed for 3-5 seconds, the shoe brush shaft 5 and the shoe hanging shaft 4 rotate to rinse the shoes with clean water.

[0059] S4: The air-liquid generating device 60 generates washing liquid and sprays it onto the inner and outer surfaces of the shoes from the spray head 30 and the spray hole 420.

[0060] S5: During the brushing operation, the rotational power of the shoe brush shaft 5 and the shoe hanging shaft 4 increases and the rotational speed increases. At the same time, the air-liquid generating device 60 delivers a mixture of washing liquid and clean water, which is sprayed through the spray head 30 and the spray hole 420.

[0061] S6: Rinse the shoe brush shaft 5 and shoe hanging shaft 4 maintain the power in S6 to rotate, and the air-liquid generating device 60 only delivers clean water, which is sprayed through the spray head 30 and spray hole 420.

[0062] S7: During the air-drying process, the air-liquid generating device 60 generates pressurized gas, which is sprayed out through the spray head 30 and spray hole 420. At the same time, the clutch shaft 52 is controlled so that the shoe brush shaft 5 drives the transmission disk 20 to rotate as a whole, and the power of the power device is increased to the maximum. The shoes are shaken out of water through high-speed rotation.

[0063] S8: During the drying operation, the air-liquid generating device 60 generates heated gas, which is blown out through the spray head 30 and spray hole 420. At the same time, the exhaust device 12 is turned on to discharge the gas containing water vapor from the frame 1, and the process continues until the shoes are dried.

[0064] S9: Turn off the shoe washing device switch, open the compartment door 10, take out the shoes one by one, and complete the shoe washing operation.

[0065] Furthermore, the shoe washing device also includes a control system to control the above steps and has built-in different shoe washing modes for users. Through the control system, the automatic operation of the drive device, clutch shaft 52, and air-liquid generating device 60 is realized, ultimately achieving intelligent and automated shoe washing. Users only need to follow simple steps to put the shoes into the starting device to complete the entire shoe washing process without complicated manual intervention, which saves labor costs and improves the user experience.

[0066] In summary, the shoe washing device and method of this utility model provide a brand-new solution for professional shoe washing shops and the shoe washing industry. It not only overcomes the various shortcomings of the existing technology, but also brings a more advanced, convenient and efficient shoe washing experience.

Claims

1. A shoe washing and brushing device, characterized in that, Includes a frame (1), a shoe brush shaft (5) that rotates along an axis inside the frame (1), and several shoe hanging shafts (4) arranged around the shoe brush shaft (5). Several shoes are hung on the shoe hanging shafts (4), and the shaft wall of the shoe brush shaft (5) is evenly provided with bristles (50) for brushing shoes. The frame (1) is equipped with a liquid spraying device for spraying liquid onto the inside and outside of the shoes or blowing air. The liquid spraying device includes a distribution plate (3) with a cavity at one end, which is installed in the frame (1). The shoe hanging shaft (4) is a hollow tube, and one end of the shoe hanging shaft (4) is connected to the distribution plate (3). The distribution plate (3) can uniformly deliver liquid or gas into the shoe hanging shaft (4).

2. The shoe washing and brushing device according to claim 1, characterized in that, The shoe hanging shaft (4) includes several shoe rack tubes (40) for supporting the bottom of the shoes. The opposite side of the shoe rack tube (40) is connected to a shoe slip tube (41). The upper end of the shoe slip tube (41) is provided with a shoe support block (42) for inserting into the shoe. The air-liquid device includes several spray holes (420) provided on the surface of the shoe support block (42). The spray holes (420) are connected to the inside of the hollow tube of the shoe hanging shaft (4). At least two shoe rack tubes (40) are provided on one shoe hanging shaft (4).

3. The shoe washing and brushing device according to claim 2, characterized in that, The shoe rack tube (40) is hinged with a sole pressure strip (43) for abutting against the bottom of the shoe. The hinge end of the sole pressure strip (43) forms a hinge plate (430). One side of the hinge plate (430) is provided with a groove (431). The shoe rack tube (40) is provided with a round protrusion (432) that can cooperate with the groove (431).

4. The shoe washing and brushing device according to claim 1, characterized in that, One end of the shoe brush shaft (5) is rotatably installed and passes through the central axis of the distribution plate (3). The shoe brush shaft (5) forms a flow-through hollow tube (51) inside the distribution plate (3). The part of the wall of the flow-through hollow tube (51) inside the cavity of the distribution plate (3) is evenly provided with inlet holes (510). The flow-through hollow tube (51) is connected to a wind-liquid pipe (11). The wind-liquid pipe (11) is connected to a wind-liquid generating device (60).

5. A shoe washing and brushing device according to claim 1, characterized in that, The air-fluid device includes a spray head (30) connected to the distribution plate (3) and capable of spraying fluid to the outside of the shoe.

6. The shoe washing and brushing device according to claim 1, characterized in that, The frame (1) is equipped with an exhaust device (12) for extracting gas to the outside of the frame (1).

7. The shoe washing and brushing device according to claim 1, characterized in that, The other end of the frame (1) is provided with a drive device (2) for rotating the shoe brush shaft (5) and the shoe hanging shaft (4); The drive device (2) includes a power device located at the lower part of the frame (1). A transmission disk (20) is located above the power device. The power device is connected to and drives the shoe brush shaft (5). The shoe brush shaft (5) is located on the central axis of the transmission disk (20). A transmission gear is provided inside the transmission disk (20) that connects the shoe brush shaft (5) and the shoe hanging shaft (4). The rotation direction of the shoe hanging shaft (4) is opposite to that of the shoe brush shaft (5).

8. A shoe washing and brushing device according to claim 7, characterized in that, A clutch shaft (52) is provided between the shoe brush shaft (5) and the transmission disk (20). By controlling the clutch shaft (52), the shoe brush shaft (5) can drive the transmission disk (20) to rotate coaxially.

9. A shoe washing and brushing device according to claim 1, characterized in that, The frame (1) has a door (10) on one side that can be opened or closed.