Annular boot washing machine

The ring-shaped wash boot machine addresses the limitations of existing machines by enabling continuous boot loading, washing, and unloading with internal and external cleaning mechanisms, ensuring thorough and efficient cleaning of boot exteriors and interiors.

CN223095507UActive Publication Date: 2025-07-15SHANDONG YUNENG ELECTRIC CO LTD
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Patent Information

Application Number
CN202421655164.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-14
Publication Date
2025-07-15
Estimated Expiration
2034-07-14

AI Technical Summary

Technical Problem

The existing boot washing machines cannot achieve the working mode of putting, washing and picking as they are available, and the cleaning effect is not good, especially the outer surface and soles of the boots are difficult to thoroughly clean.

Method used

A ring-shaped boot washing machine is designed, adopting an annular rotary layout, combining the boot hanging device, an outer cleaning device and a boot sole cleaning device. The vertical water pipe spray, the side water spray pipe and the top water spray pipe are combined with the brush roller to achieve all-round cleaning. The drive mechanism is used to realize the boots are placed, washed and taken as they are allowed, and the valve switch design is automatically controlled.

Benefits of technology

It realizes all-round cleaning of the boots, improves cleaning efficiency and effect, avoids water spraying on staff, and simplifies the pick-up and placement process of the boots.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an annular boot washing machine which comprises a cabinet body, a partition plate which is horizontally arranged and can receive washing sewage is arranged in the cabinet body, and the cabinet body is divided into an upper washing chamber and a lower equipment storage chamber by the partition plate; a boot hanging device, an outer cleaning device used for cleaning the outer surfaces of boots and a boot sole cleaning device arranged on the top face of the cabinet body and used for cleaning boot soles are arranged in the upper cleaning chamber, and the boot hanging device can hang the boots circumferentially and drive the boots to horizontally rotate to enter and exit from the cabinet body through a driving mechanism arranged in the lower equipment storage chamber. Boots horizontally rotate to pass through the outer cleaning device and the boot sole cleaning device to clean boot vamps and boot soles; by means of the annular rotary type layout design, the cleaning mode that boots are placed, washed and taken at any time can be achieved, the rotary type layout mode is combined, a first valve switch adopts the working mode that the first valve switch is automatically turned on during washing and automatically turned off after washing, shutdown is not needed during taking and placing, and water cannot be sprayed to workers.
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Description

Technical Field

[0001] The utility model relates to the technical field of boot washing equipment, in particular to a ring-shaped boot washing machine. Background Art

[0002] Mine workers work underground for a long time, which causes a large amount of dust such as coal ash and rock powder to accumulate inside and outside their work boots. In order to ensure the cleanliness and hygiene of the work boots, they need to be cleaned regularly.

[0003] The conventional cleaning method is manual cleaning, which is labor-intensive and has low cleaning efficiency. At present, in order to meet the cleaning needs, a series of shoe washing machines have also appeared. The structural form is roughly as described in patent application number 202410127452X. Patent application number 202410127452X includes: a chassis, at least two sliding doors, multiple mining shoe support rods, multiple first rotating nozzles, multiple second rotating nozzles, a water pump and a controller. The front of the chassis is provided with a window hole and the window hole is slidably connected with a sliding door; the bottom ends of the multiple mining shoe support rods are all fixed at an acute angle on the inner back of the chassis; the multiple first rotating nozzles are respectively rotatably connected to the top ends of the multiple mining shoe support rods; and the multiple second rotating nozzles are rotatably connected to the inner top surface of the chassis at intervals. The utility model uses a mining shoe support rod with a bottom end fixed at an acute angle on the inner rear surface of a chassis, which can facilitate the placement and removal of the mining shoe; and then uses a plurality of first rotating nozzles fixed on the top of the mining shoe support rod and connected with the corresponding water supply channel, which can efficiently clean the inside of the mining shoe, avoid dust attachments from accumulating inside the mining shoe, and improve the cleaning efficiency and cleaning effect of the mining shoe.

[0004] The usage steps of the boot washing machine disclosed in patent application number 202410127452X are roughly as follows: open the sliding door and hang the boots one by one on multiple mining boot support rods, then close the sliding door, and wash the boots inside and outside through multiple first rotating nozzles and multiple second rotating nozzles. After cleaning, open the sliding door and remove the boots one by one.

[0005] The boot washing machine disclosed in patent application number 202410127452X has the following disadvantages: ① During cleaning, the boots can only be placed, washed and taken at the same time, and the working mode of placing, washing and taking at any time cannot be realized, and the machine needs to be stopped when taking and placing, otherwise the water will spray on the staff. Therefore, it is inconvenient to use and the cleaning mode is limited; ② The outer surface of the boots is difficult to clean only by rinsing with water, and the existing method cannot clean the sole of the boot. Therefore, on the whole, there is still a lot of room for improvement in the cleaning effect.

[0006] Based on the above technical problems, the utility model proposes a ring-shaped shoe washing machine, which can effectively make up for the shortcomings of the existing technology and has prospects for promotion and application. Summary of the invention

[0007] The utility model aims at solving the deficiencies of the prior art and provides a ring-shaped shoe washing machine.

[0008] The utility model is realized through the following technical scheme, which provides a boot washing machine, including a cabinet, a partition board which is horizontally arranged and can receive washing sewage is arranged in the cabinet, and the partition board divides the cabinet into an upper washing room and a lower equipment storage room; a boot hanging device, an external cleaning device for cleaning the outer surface of the boots, and a boot sole cleaning device arranged on the top surface of the cabinet for cleaning the soles of the boots are arranged in the upper washing room, the boot hanging device can hang the boots in a circle and drive the boots to rotate horizontally in and out of the cabinet through a driving mechanism arranged in the lower equipment storage room, and the boots rotate horizontally through the external cleaning device The invention relates to a boot hanging device and a boot sole cleaning device for cleaning the boot surface and the boot sole; the boot hanging device comprises a turntable with a water chamber inside, and a plurality of support mechanisms for hanging boots are arranged on the turntable along its circumference, each support mechanism comprises a horizontal water pipe connected to the turntable and communicated with its water chamber, a vertical water pipe is connected to the end of each horizontal water pipe, the boots are hung upside down on the vertical water pipe, a first valve switch is installed on each horizontal water pipe, and a valve opening component for toggling the first valve switch to open and a valve closing component for toggling the first valve switch to close are installed on the partition.

[0009] Preferably, a toggle gear is fixedly installed on the valve stem of each first valve switch, and the valve opening assembly includes an outer arc-shaped rack arranged on the outside of the toggle gear and capable of meshing with the toggle gear. The outer arc-shaped rack is fixedly installed on the support block, and the lower end of the support block is fixed to the partition.

[0010] Preferably, the valve closing assembly includes an inner arc-shaped rack disposed on the inner side of the toggle gear and capable of meshing with the toggle gear, the inner arc-shaped rack being fixedly mounted on the support block, and the lower end of the support block being fixed to the partition. After the boot is hung upside down on the vertical water pipe, the rotation of the turntable causes the boot to enter the cabinet, and when the toggle gear on the first valve switch contacts the outer arc-shaped rack, the meshing of the two causes the toggle gear to rotate and open the first valve switch, and when the boot passes through the outer cleaning device and the boot sole cleaning device to clean the boot surface and the boot sole, the toggle gear on the first valve switch contacts the inner arc-shaped rack, and the meshing of the two causes the toggle gear to rotate in the opposite direction to close the first valve switch, and then the boot is rotated out of the cabinet and can be removed.

[0011] Preferably, in order to improve the stability of the boot hanging device during rotation, two sets of supporting mechanisms for supporting the transverse water pipes are symmetrically installed on the partition, and each set of supporting mechanisms includes a base fixedly installed on the partition, a groove wheel rotatably connected to the upper end of the base, and a guide rod fixedly connected to the transverse water pipe and capable of sliding along the V-groove of the groove wheel.

[0012] Preferably, the outer cleaning device includes two outer brush rollers arranged on the outer side of the boots, two inner brush rollers arranged on the inner side of the boots, and a plurality of side water spray pipes arranged on the side wall of the cabinet for spraying water on the boots; each outer brush roller and each inner brush roller are driven by a separate micro motor. When the boots pass through the two outer brush rollers and the two inner brush rollers, the attachments on the outer surface of the boots are cleaned by the cooperation of the two outer brush rollers and the two inner brush rollers.

[0013] Preferably, the sole cleaning device includes a plurality of top water spray pipes arranged on the top surface of the cabinet for spraying water on the sole of the boots. When the boots pass through the plurality of top water spray pipes, the attachments on the sole of the boots are cleaned by high-pressure water flushing.

[0014] Preferably, in order to facilitate the discharge of the cleaning sewage, a sewage pipe communicating with the partition is arranged below the partition.

[0015] Preferably, the driving mechanism includes a hollow rotating shaft. The upper end of the hollow rotating shaft is fixed to the turntable, and the cavity of the hollow rotating shaft communicates with the water chamber of the turntable. The lower end of the hollow rotating shaft is connected to the rotating shaft seat through a bearing. The water inlet cavity provided on the rotating shaft seat communicates with the cavity of the hollow rotating shaft, and the water inlet cavity on the rotating shaft seat is connected to the water pump through a pipeline; a large gear is fixed on the outer wall of the hollow rotating shaft, and a small gear meshing with the large gear is installed on the output shaft of the reduction motor. The reduction motor provides power to drive the hollow rotating shaft to rotate, thereby realizing the rotation of the turntable, and correspondingly realizing the rotation of the boot hanging device to drive the boots to rotate in and out of the cabinet. Further, in order to increase the stability, the hollow rotating shaft is connected to the partition through a bearing seat.

[0016] Preferably, the reduction motor, the rotating shaft seat and the water pump are all installed in the lower equipment storage room.

[0017] Preferably, in order to facilitate control, a second valve switch is installed on each vertical water pipe. When an individual support mechanism is not in use temporarily, the corresponding second valve switch can be temporarily closed.

[0018] Preferably, the plurality of side water spray pipes and the plurality of top water spray pipes are all supplied with water by a water pump.

[0019] The beneficial effects of the present utility model are as follows:

[0020] 1. The annular rotary layout design can realize the cleaning mode of putting, washing and taking the boots at any time. Combined with the rotary layout mode, the first valve switch adopts the working mode of automatically opening during cleaning and automatically closing after cleaning. There is no need to stop the machine when taking and putting, and the water will not be sprayed on the staff.

[0021] 2. The inside of the boots can be cleaned by spraying water through the vertical water pipe, the outer surface of the boots can be cleaned by the cooperation of the side water spray pipe, the outer brush roller and the inner brush roller, and the sole of the boots can be cleaned by the top water spray pipe, so as to achieve a full range of cleaning of the inside and outside of the boots and improve the cleaning effect.

[0022] 3. The design without push-pull doors makes it convenient to take the boots in and out.

[0023] 4. This application only performs cleaning, so that cleaning and drying are carried out separately. The drying takes a long time, and the separate design can effectively improve the cleaning efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is the front sectional view of the utility model;

[0025] Figure 2 is Figure 1 the partial enlarged structural schematic diagram at A in

[0026] Figure 3 is Figure 1 the partial enlarged structural schematic diagram at B in

[0027] Figure 4 is the top view of the utility model;

[0028] Figure 5 is Figure 4 the partial enlarged structural schematic diagram at C in

[0029] Figure 6 is Figure 4 the partial enlarged structural schematic diagram at D in

[0030] Figure 7 is the working state schematic diagram when hanging the boots of the utility model;

[0031] As shown in the figure:

[0032] 1. Cabinet body, 2. Sewage pipe, 3. Lower equipment storage room, 4. Reducing motor, 5. Water pump, 6. Outer brush roller, 7. Inner brush roller, 8. Top water spray pipe, 9. Boots, 10. Vertical water pipe, 11. Second valve switch, 12. Upper cleaning room, 13. Partition board, 14. Micro motor, 15. Rotating shaft seat, 16. Water inlet cavity, 17. Hollow rotating shaft, 18. Large gear, 19. Small gear, 20. Turntable, 21. Horizontal water pipe, 22. First valve switch, 23. Dialing gear, 24. Inner arc rack, 25. Support block, 26. Base, 27. Grooved wheel, 28. Guide rod, 29. Side water spray pipe, 30. Outer arc rack. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0033] To clearly illustrate the technical features of this solution, the following is an elaboration of this solution through specific embodiments.

[0034] As shown Figures 1-7 in the figure, the utility model includes a cabinet body 1. Inside the cabinet body 1, there is a horizontally arranged partition board 13 that can receive cleaning sewage. The partition board 13 divides the cabinet body 1 into an upper cleaning chamber 12 and a lower equipment storage chamber 3. In the upper cleaning chamber 12, there are a boot hanging device, an external cleaning device for cleaning the outer surface of the boots 9, and a boot sole cleaning device arranged on the top surface of the cabinet body 1 for cleaning the boot soles. The boot hanging device can hang the boots 9 in a circle and drive the boots 9 to rotate horizontally in and out of the cabinet body 1 through a driving mechanism arranged in the lower equipment storage chamber 3. The boots 9 rotate horizontally through the external cleaning device and the boot sole cleaning device to clean the boot surface and the boot sole. The boot hanging device includes a turntable 20 with a water chamber inside. Along the circumference of the turntable 20, multiple groups of support mechanisms for hanging the boots 9 are arranged. Each group of support mechanisms includes a horizontal water pipe 21 connected to the turntable 20 and communicating with its water chamber. At the end of each horizontal water pipe 21, a vertical water pipe 10 is connected. The boots 9 are hung upside down on the vertical water pipes 10. A first valve switch 22 is installed on each horizontal water pipe 21. On the partition board 13, there is a valve opening component for toggling the first valve switch 22 to open and a valve closing component for toggling the first valve switch 22 to close.

[0035] In this embodiment, a toggling gear 23 is fixedly installed on the valve stem of each first valve switch 22. As Figure 6 shown in the figure, the valve opening component includes an outer arc-shaped rack 30 arranged outside the toggling gear 23 and capable of meshing with the toggling gear 23. The outer arc-shaped rack 30 is fixedly installed on a support block 25. The lower end of the support block 25 is fixed to the partition board 13. As Figure 5 shown in the figure, the valve closing component includes an inner arc-shaped rack 24 arranged inside the toggling gear 23 and meshing with the toggling gear 23. The inner arc-shaped rack 24 is fixedly installed on the support block 25. The lower end of the support block 25 is fixed to the partition board 13. After the boots 9 are hung upside down on the vertical water pipes 10, the rotation of the turntable 20 will cause the boots 9 to enter the cabinet body 1. When the toggling gear 23 on the first valve switch 22 contacts the outer arc-shaped rack 30, the toggling gear 23 rotates to open the first valve switch 22 due to their meshing. After the boots 9 pass through the external cleaning device and the boot sole cleaning device to clean the boot surface and the boot sole, the toggling gear 23 on the first valve switch 22 will contact the inner arc-shaped rack 24, and the toggling gear 23 rotates in the reverse direction to close the first valve switch 22 due to their meshing. Then the boots 9 rotate out of the cabinet body 1, and they can be taken off.

[0036] In this embodiment, in order to improve the stability of the boot hanging device during rotation, two groups of support mechanisms for supporting the horizontal water pipes 21 are symmetrically installed on the partition board 13. As Figure 3As shown, each set of support mechanisms includes a base 26 fixedly installed on the partition 13. A sheave 27 is rotatably connected to the upper end of the base 26. A guide rod 28 that can slide along the V-shaped groove of the sheave 27 is fixedly connected to the horizontal water pipe 21.

[0037] In this embodiment, for convenient control, a second valve switch 11 is installed on each vertical water pipe 10. When an individual support mechanism is not in use temporarily, the corresponding second valve switch 11 can be temporarily closed.

[0038] In this embodiment, the external cleaning device includes two outer brush rollers 6 arranged on the outer side of the boot 9, two inner brush rollers 7 arranged on the inner side of the boot 9, and a plurality of side water spray pipes 29 arranged on the side wall of the cabinet 1 for spraying water onto the boot 9. Each outer brush roller 6 and each inner brush roller 7 are driven by a separate micro motor 14. When the boot 9 passes through the two outer brush rollers 6 and the two inner brush rollers 7, the attachments on the outer surface of the boot 9 are cleaned off by the cooperation of the two outer brush rollers 6 and the two inner brush rollers 7.

[0039] In this embodiment, the sole cleaning device of the boot includes a plurality of top water spray pipes 8 arranged on the top surface of the cabinet 1 for spraying water onto the sole of the boot. When the boot 9 passes through the plurality of top water spray pipes 8, the attachments on the sole of the boot are cleaned off by high-pressure water flushing.

[0040] In this embodiment, for convenient discharge of the cleaning sewage, a sewage pipe 2 communicating with the partition 13 is arranged below the partition 13.

[0041] In this embodiment, as Figure 2 shown, the driving mechanism includes a hollow rotating shaft 17. The upper end of the hollow rotating shaft 17 is fixed to the turntable 20 and the cavity of the hollow rotating shaft 17 communicates with the water chamber of the turntable 20. The lower end of the hollow rotating shaft 17 is connected to the rotating shaft seat 15 through a bearing. The water inlet cavity 16 provided on the rotating shaft seat 15 communicates with the cavity of the hollow rotating shaft 17. The water inlet cavity 16 on the rotating shaft seat 15 is connected to the water pump 5 through a pipeline. A large gear 18 is fixed on the outer wall of the hollow rotating shaft 17. A small gear 19 meshing with the large gear 18 is installed on the output shaft of the reduction motor 4. The reduction motor 4 provides power to drive the hollow rotating shaft 17 to rotate, thereby realizing the rotation of the turntable 20, and correspondingly realizing the rotation of the boot hanging device to drive the boot 9 to rotate in and out of the cabinet 1. Further, for increased stability, the hollow rotating shaft 17 is connected to the partition 13 through a bearing seat.

[0042] In this embodiment, the reduction motor 4, the rotating shaft seat 15, and the water pump 5 are all installed in the lower equipment storage room 3.

[0043] In this embodiment, the plurality of side water spray pipes 29 and the plurality of top water spray pipes 8 are all supplied with water by the water pump 5.

[0044] The boot washing method of the above-mentioned annular boot washing machine includes the following operating steps:

[0045] (1) Start the reduction motor 4, and the turntable 20 drives multiple groups of support mechanisms to rotate slowly. As the turntable 20 rotates, the boots 9 are successively hung upside down on the vertical water pipes 10 one by one;

[0046] (2) Start the water pump 5, and multiple side water spray pipes 29 and multiple top water spray pipes 8 start to spray water. Start the outer brush roller 6 and the inner brush roller 7;

[0047] (3) As the turntable 20 rotates, when the first valve switch 22 on each horizontal water pipe 21 passes through the outer arc-shaped rack 30, the first valve switch 22 opens, and a stream of water is sprayed out through the vertical water pipe 10 to wash and clean the inside of the boot 9;

[0048] (4) The boots 9 are further cleaned on the boot surface and the boot sole by the outer cleaning device and the boot sole cleaning device;

[0049] (5) As the turntable 20 rotates, when the first valve switch 22 on each horizontal water pipe 21 passes through the inner arc-shaped rack 24, the first valve switch 22 closes, and the vertical water pipe 10 stops spraying water;

[0050] (6) The boots 9 are rotated out of the cabinet body 1, and the boots 9 are taken off.

[0051] Of course, the above description is not limited to the above examples. The technical features not described in the present utility model can be achieved by or adopted the prior art, and will not be elaborated here; the above embodiments and drawings are only used to illustrate the technical solutions of the present utility model and are not limitations to the present utility model. The present utility model has been described in detail with reference to the preferred embodiments. Those of ordinary skill in the art should understand that any changes, modifications, additions or substitutions made by those of ordinary skill in the art within the scope of the essence of the present utility model do not depart from the purpose of the present utility model and should also belong to the protection scope of the claims of the present utility model.

Claims

1. A ring-shaped boot washing machine, characterized in that: The utility model comprises a cabinet body, in which a partition which is horizontally arranged and can receive cleaning sewage is arranged, and the partition body divides the cabinet body into an upper cleaning chamber and a lower equipment storage chamber; a boot hanging device, an external cleaning device for cleaning the outer surface of the boots, and a boot sole cleaning device arranged on the top surface of the cabinet body for cleaning the boot soles are arranged in the upper cleaning chamber; the boot hanging device can hang the boots in a circle and drive the boots to rotate horizontally in and out of the cabinet body through a driving mechanism arranged in the lower equipment storage chamber; the boots rotate horizontally and pass through the external cleaning device and the boot sole cleaning device to clean the boot surface and the boot sole; the boot hanging device comprises a turntable with a water chamber inside, and a plurality of groups of supporting mechanisms for hanging boots are arranged on the turntable along its circumference, each group of supporting mechanisms comprises a horizontal water pipe connected to the turntable and connected to its water chamber, a vertical water pipe is connected to the end of each horizontal water pipe, the boots are hung upside down on the vertical water pipe, a first valve switch is installed on each horizontal water pipe, a valve opening component for toggling the first valve switch to open, and a valve closing component for toggling the first valve switch to close are installed on the partition.

2. The annular boot washing machine according to claim 1, wherein: A toggle gear is fixedly installed on the valve stem of each first valve switch, and the valve opening component includes an outer arc-shaped rack arranged on the outside of the toggle gear and capable of meshing with the toggle gear. The outer arc-shaped rack is fixedly installed on the support block, and the lower end of the support block is fixed to the partition.

3. The annular boot washer according to claim 2, wherein: The valve closing assembly comprises an inner arc-shaped rack which is arranged on the inner side of the toggle gear and can mesh with the toggle gear. The inner arc-shaped rack is fixedly mounted on the support block, and the lower end of the support block is fixed to the partition plate.

4. A ring-shaped boot washing machine according to claim 1, characterized in that: Two sets of supporting mechanisms for supporting transverse water pipes are symmetrically installed on the partition, and each set of supporting mechanisms includes a base fixedly installed on the partition, a groove wheel rotatably connected to the upper end of the base, and a guide rod fixed on the transverse water pipe that can slide along the V-groove of the groove wheel.

5. The annular boot washing machine according to claim 3, characterized in that: The external cleaning device includes two outer brush rollers arranged on the outside of the boots, two inner brush rollers arranged on the inside of the boots, and multiple side water spray pipes arranged on the side wall of the cabinet for spraying water on the boots; each outer brush roller and each inner brush roller are driven by a separate micro motor.

6. The annular boot washing machine according to claim 5, wherein: The shoe sole cleaning device comprises a plurality of top surface water spraying pipes arranged on the top surface of the cabinet body and used for spraying water to the shoe soles.

7. The annular boot washer according to claim 1, characterized in that: A sewage pipe connected with the partition is arranged below the partition.

8. The annular boot washing machine according to claim 6, wherein: The driving mechanism includes a hollow rotating shaft, the upper end of the hollow rotating shaft is fixed to the turntable and the cavity of the hollow rotating shaft is connected to the water chamber of the turntable, the lower end of the hollow rotating shaft is connected to the rotating shaft seat through a bearing, the water inlet cavity provided on the rotating shaft seat is connected to the cavity of the hollow rotating shaft, and the water inlet cavity on the rotating shaft seat is connected to the water pump through a pipeline; a large gear is fixed on the outer wall of the hollow rotating shaft, and a small gear meshing with the large gear is installed on the output shaft of the reduction motor.