Shoe washing machine with box type shoe washing device

By integrating a box-type shoe washing device into the washing machine, the problems of time-consuming and laborious traditional washing methods and shoe deformation are solved, realizing automated and convenient shoe cleaning, saving space and resources.

CN223646810UActive 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
CN202423259923.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-12-09
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

In existing technologies, shoe cleaning is time-consuming and laborious, and traditional washing machines cannot clean shoes and clothes at the same time. They also easily cause shoes to deform, take up space, and increase economic burden.

Method used

Design a shoe washing machine with a box-type shoe washing device, including a shoe washing box, shoe rack, shoe support, shoe brush and water supply structure, which can automatically clean shoes in the washing machine, maintain the shape and material of the shoes, and integrate shoe washing function into the washing machine.

Benefits of technology

It enables automated shoe cleaning, prevents shoe deformation, saves space and time, reduces water waste, and improves ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a shoe washing machine with a box type shoe washing device, which comprises a washing machine main body, the lower part of the washing machine main body is provided with an accommodating cavity, a shoe washing box capable of being pulled out from the accommodating cavity is arranged in the accommodating cavity, the shoe washing box is provided with a shoe washing cavity and a cavity door, and a pair of water diversion discs is arranged in the shoe washing cavity. A shoe rack and a shoe brush are rotationally connected between the pair of water distribution discs, water distribution cavities are formed in the water distribution discs, shoe stretchers and first flow channels enabling the water distribution cavities in the two water distribution discs to be communicated are arranged on the shoe rack, and first water spraying channels which are communicated with the first flow channels and can spray water into shoes are arranged on the shoe stretchers. The shoe washing box is further connected with a driving mechanism capable of driving the shoe brush and the shoe rack to rotate and a water supply structure capable of supplying water to the water distribution cavity, the shoe washing box is arranged in the washing machine body, so that shoe washing is optimized specially, it is ensured that shoes can be cleaned in the environment more suitable for the shapes and materials of the shoes, and the shoe washing efficiency is improved. Therefore, clothes are prevented from being polluted.
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Description

Technical Field

[0001] This utility model relates to the field of clothing cleaning equipment technology, and in particular to a shoe washing machine with a box-type shoe washing device. Background Technology

[0002] As people's living standards improve and their health awareness increases, the requirements for personal hygiene are becoming increasingly stringent. Shoes, as an indispensable part of daily life, inevitably accumulate dust, mud, and other stains after a period of use. These stains not only affect the appearance of the shoes but can also become a breeding ground for bacteria. Therefore, regular shoe cleaning has become very important.

[0003] Traditional shoe cleaning methods mostly involve manual washing or using specialized shoe washing machines. However, manual shoe washing is time-consuming and laborious, and it is difficult to clean shoes thoroughly; while existing shoe washing machines are usually bulky and have limited functions, failing to meet users' needs to wash clothes and other items at the same time, increasing the space occupied in the home and the financial burden on users.

[0004] Furthermore, while regular household washing machines are effective at cleaning clothes, they are not suitable for directly washing shoes. This is because shoes have a complex structure, requiring careful cleaning both inside and out, and the washing process in a regular washing machine may cause problems such as deformation or damage to the shoe's upper material.

[0005] This utility model is based on the above-mentioned circumstances. Utility Model Content

[0006] This invention overcomes the shortcomings of the prior art and provides a shoe washing machine with a box-type shoe washing device.

[0007] This utility model is achieved through the following technical solution:

[0008] A shoe washing machine with a box-type shoe washing device includes a washing machine body. The lower part of the washing machine body is provided with a receiving cavity. The receiving cavity is provided with a shoe washing box that can be pulled out from the receiving cavity. The shoe washing box has a shoe washing chamber open on the upper side and a door for covering the shoe washing chamber. The shoe washing chamber is provided with a pair of water distribution trays rotatably connected to the shoe washing box. The pair of water distribution trays are rotatably connected to a shoe rack for placing shoes and a shoe brush for brushing the outside of shoes. The water distribution trays are provided with water distribution chambers. The shoe rack is provided with a shoe support that can extend into the shoes and a first flow channel that connects the water distribution chambers in the two water distribution trays. The shoe support is provided with a first water spray channel that communicates with the first flow channel and can spray water into the shoes. The shoe washing box is also connected to a drive mechanism that can drive the shoe brush and shoe rack to rotate and a water supply structure that can supply water to the water distribution chambers.

[0009] As described above, a shoe washing machine with a box-type shoe washing device has two rows of guide wheels inside the receiving cavity for guiding the pushing and pulling of the shoe washing box, and the guide wheels are provided with a first flexible rubber sleeve for shock absorption.

[0010] As described above, a shoe washing machine with a box-type shoe washing device is provided in the receiving cavity, which is a positioning component that positions the shoe washing box in the pushing direction after it is fully pushed into the receiving cavity, and a second flexible rubber sleeve for shock absorption is fitted on the positioning component.

[0011] As described above, a shoe washing machine with a box-type shoe washing device has rollers at the bottom of the shoe washing box, the lower side of the receiving cavity is open, and the rollers abut against the ground.

[0012] As described above, a shoe washing machine with a box-type shoe washing device has a locking structure on the rollers on the front side of the shoe washing box.

[0013] As described above, a shoe washing machine with a box-type shoe washing device includes a drive mechanism comprising a motor for driving the shoe brush shaft to rotate and a transmission gear set disposed between the shoe rack shaft and the shoe brush shaft to drive the shoe rack to rotate.

[0014] As described above, a shoe washing machine with a box-type shoe washing device is provided with a clutch structure between the water distribution tray and the shoe brush shaft, which can lock the water distribution tray on the shoe brush shaft.

[0015] As described above, a shoe washing machine with a box-type shoe washing device includes a water supply structure comprising a water inlet hose rotatably connected to a shoe rack shaft, a water inlet channel on the shoe rack shaft that connects the water inlet hose to a water distribution chamber, the water inlet hose being connected to a liquid outlet on the main body of the washing machine, and a first control valve on the water inlet hose for controlling its on / off state.

[0016] As described above, a shoe washing machine with a box-type shoe washing device is provided, wherein the shoe washing box is also provided with a drain pipe for draining the liquid in the shoe washing chamber. The inlet end of the drain pipe is connected to the shoe washing chamber, and the outlet end is connected to the drain end of the main body of the washing machine. The drain pipe is also provided with a second control valve for controlling its on / off state.

[0017] As described above, a shoe washing machine with a box-type shoe washing device is provided in the main body of the washing machine for generating hot air. The main body of the washing machine is also provided with an air inlet hose for discharging hot air into the shoe washing chamber and an air outlet hose for the air in the shoe washing chamber to flow out. The air inlet hose is provided with a third control valve for controlling its on / off state, and the air outlet hose is provided with a fourth control valve for controlling its on / off state.

[0018] Compared with the prior art, the present invention has the following advantages:

[0019] This design optimizes shoe cleaning by incorporating a shoe-washing compartment within the washing machine. This ensures shoes are cleaned in an environment better suited to their shape and material, eliminating the need to place them in the washing machine's main chamber and preventing clothing contamination. Shoe racks and shoe trees within the compartment hold the shoes in place, maintaining their original shape during cleaning and preventing deformation issues that traditional washing machines can cause. A shoe brush directly contacts and scrubs the outer surface of the shoes, and the rotating rack ensures a more even and thorough cleaning. Furthermore, the first water spray channel effectively directs water flow into the shoes for cleaning. Integrating the shoe-washing function into the washing machine eliminates the need for additional equipment, saving space and time. The combined drive mechanism and water supply system automate the entire process, reducing manual operation and enhancing ease of use. The shoe-washing compartment operates independently of the main washing machine and allows for water volume adjustment based on the number of shoes, preventing unnecessary water waste. Attached Figure Description

[0020] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, wherein:

[0021] Figure 1 This is a schematic diagram of the structure of this utility model;

[0022] Figure 2 This is a schematic diagram of the pull-out receiving cavity of the shoe washing box of this utility model;

[0023] Figure 3 This is a schematic diagram of the structure of the shoe washing box of this utility model after removing the cavity door;

[0024] Figure 4 This is a schematic diagram of the structure of the shoe rack and shoe brush connected to the water distribution plate of this utility model;

[0025] Figure 5 This is a cross-sectional schematic diagram of the shoe rack and shoe brush of this utility model connected to the water distribution plate. Detailed Implementation

[0026] The present invention will be further described below with reference to the accompanying drawings:

[0027] like Figures 1 to 5The illustrated shoe washing machine includes a main body 1. The lower part of the main body 1 has a receiving cavity 11. A shoe washing box 2, which can be pulled out from the receiving cavity 11, is provided inside the receiving cavity 11. The shoe washing box 2 has an upper open shoe washing chamber 21 and a door 22 for covering the shoe washing chamber 21. A pair of water distribution trays 31, rotatably connected to the shoe washing box 2, are provided inside the shoe washing chamber 21. A shoe rack 41 for placing shoes and a door 22 for... The shoe brush 42 is used to clean the outside of the shoes. The water distribution plate 31 is provided with a water distribution cavity 311. The shoe rack 41 is provided with a shoe support 411 that can extend into the shoes and a first flow channel 412 that connects the water distribution cavities 311 in the two water distribution plates 31. The shoe support 411 is provided with a first spray channel 413 that communicates with the first flow channel 412 and can spray water into the shoes. The shoe washing box 2 is also connected to a drive mechanism 5 that can drive the shoe brush 42 and the shoe rack 41 to rotate and a water supply structure 6 that can supply water to the water distribution cavity 311.

[0028] This design optimizes shoe cleaning by incorporating a shoe washing chamber 2 within the main body of the washing machine. This ensures shoes can be cleaned in an environment more suited to their shape and material, eliminating the need to place them in the washing chamber and preventing contamination of clothing. The shoe rack 41 and shoe support 411 within the washing chamber 21 secure the shoes, maintaining their original shape during cleaning and preventing deformation issues that traditional washing machines may cause. The shoe brush 42 directly contacts and scrubs the outer surface of the shoes, working in conjunction with the rotating shoe rack 41 for a more even and thorough cleaning. Furthermore, the design of the first water spray channel 413 effectively directs water flow into the interior of the shoes for cleaning. Integrating the shoe washing function into the washing machine eliminates the need for additional equipment, saving space and time. The combination of the drive mechanism 5 and water supply structure 6 automates the entire shoe washing process, reducing manual operation and improving ease of use. The shoe washing chamber 2 operates independently of the main washing machine and can adjust the water volume according to the number of shoes, avoiding unnecessary water waste.

[0029] In some embodiments, the washing machine described above may be a top-loading washing machine or a front-loading washing machine.

[0030] In some embodiments, the shoe washing chamber 2 is further provided with a water spray pipe 65 capable of spraying water onto the outside of the shoes, and the water spray pipe 65 is connected to the water inlet hose 61. The water spray pipe 65 surrounds the shoe rack 41 and the shoe brush 42 along the inner wall of the shoe washing chamber 21.

[0031] In some embodiments, the receiving cavity 11 is provided with two rows of guide wheels 71 for guiding the pushing and pulling of the shoe washing box 2. Each guide wheel 71 is provided with a first flexible rubber sleeve 72 for shock absorption. The receiving cavity 11 is provided with a positioning member 73 for positioning the shoe washing box 2 in the pushing direction after it is fully pushed into the receiving cavity 11. A second flexible rubber sleeve 74 for shock absorption is fitted onto the positioning member 73. The bottom of the shoe washing box 2 is provided with rollers 75. The lower side of the receiving cavity 11 is open, and the rollers 75 abut against the ground. A locking structure 76 is provided on the front rollers 75 of the shoe washing box 2. The positioning member 73 can also be a rolling wheel, and the locking structure 76 is a conventional locking mechanism used on the rollers, which will not be described in detail here.

[0032] Guide wheels 71 ensure precise guidance of the shoe washing box 2 within the receiving cavity 11, making the pushing and pulling action smoother. Rollers 75, located at the bottom of the shoe washing box 2, further reduce friction, making operation easier. The first flexible rubber sleeve 72 and the second flexible rubber sleeve 74 work together to abut against the shoe washing box 2, effectively absorbing vibrations generated during the washing process, providing better shock absorption and reducing noise. Positioning components 73 and locking structures 76 ensure that the shoe washing box 2 is accurately fixed after being fully pushed in, preventing unnecessary movement during machine operation and ensuring the stability and efficiency of the cleaning process. Reducing direct metal-to-metal contact and friction between components helps reduce wear and extend the equipment's service life.

[0033] In one embodiment, the driving mechanism 5 includes a motor 51 that drives the shoe brush 42 shaft to rotate, and a transmission gear set 52 disposed between the shoe rack 41 shaft and the shoe brush 42 shaft to drive the shoe rack 41 to rotate. A clutch structure 53 is provided between the water distribution tray 31 and the shoe brush 42 shaft to lock the water distribution tray 31 onto the shoe brush 42 shaft. During spin-drying, the clutch structure 53 can lock the water distribution tray 31 onto the shoe brush 42 shaft and make it rotate with it. The motor 51 can be a servo motor, which can increase the rotation speed and improve spin-drying efficiency during spin-drying. The clutch structure 53 can be a conventional locking clamp or other clutch structures.

[0034] In one embodiment, the water supply structure 6 includes a water inlet hose 61 rotatably connected to the shaft of the shoe rack 41 via a rotary joint. The shaft of the shoe rack 41 is provided with a water inlet channel 40 that connects the water inlet hose 61 to the water distribution chamber 311. The water inlet hose 61 is connected to the liquid outlet on the main body of the washing machine 1. The water inlet hose 61 is also provided with a first control valve 611 that controls its on / off state.

[0035] In one embodiment, the water inlet hose 61 is equipped with a water pump that increases water pressure, thereby spraying the shoes with greater water pressure, which is more conducive to cleaning the shoes.

[0036] In one embodiment, the shoe washing tank 2 is further provided with a drain pipe 62 for draining the liquid in the shoe washing chamber 21. The inlet end of the drain pipe 62 is connected to the shoe washing chamber 21, and the outlet end is connected to the drain end of the washing machine body 1. The drain pipe 62 is also provided with a second control valve 621 to control its on / off state. This allows for water replacement during the shoe washing process and drainage of the water in the shoe washing chamber 21 after washing.

[0037] In one embodiment, the washing machine body 1 is equipped with a hot air mechanism for generating hot air. The washing machine body 1 also includes an air inlet hose 63 for discharging hot air into the shoe washing chamber 21, and an air outlet hose 64 for allowing air to flow out of the shoe washing chamber 21. The air inlet hose 63 is equipped with a third control valve 631 to control its on / off state, and the air outlet hose 64 is equipped with a fourth control valve 641 to control its on / off state. The hot air mechanism is a conventional drying device in a washing machine, and will not be described in detail here. Hot air is introduced into the shoe washing chamber 21 through the air inlet hose 64 to dry the shoes, thereby reducing the drying time.

Claims

1. A shoe washing machine with a box-type shoe washing device, characterized in that: The washing machine includes a main body (1), and a receiving cavity (11) is provided at the lower part of the main body (1). A shoe washing box (2) that can be pulled out from the receiving cavity (11) is provided in the receiving cavity (11). The shoe washing box (2) has a shoe washing chamber (21) open on the upper side and a door (22) for covering the shoe washing chamber (21). A pair of water distribution trays (31) rotatably connected to the shoe washing box (2) are provided in the shoe washing chamber (21). A shoe rack (41) for placing shoes and a shoe brush (42) for brushing the outside of shoes are rotatably connected between the pair of water distribution trays (31). 2) The water distribution plate (31) is provided with a water distribution cavity (311), the shoe rack (41) is provided with a shoe support (411) that can extend into the shoe and a first flow channel (412) that connects the water distribution cavities (311) in the two water distribution plates (31), the shoe support (411) is provided with a first spray channel (413) that communicates with the first flow channel (412) and can spray water into the shoe, and the shoe washing box (2) is also connected with a drive mechanism (5) that can drive the shoe brush (42) and the shoe rack (41) to rotate and a water supply structure (6) that can supply water to the water distribution cavity (311).

2. A shoe washing machine with a box-type shoe washing device according to claim 1, characterized in that: The cavity (11) is provided with two rows of guide wheels (71) for guiding the push and pull of the shoe washing box (2), and the guide wheels (71) are provided with a first flexible rubber sleeve (72) for shock absorption.

3. A shoe washing machine with a box-type shoe washing device according to claim 2, characterized in that: The receiving cavity (11) is provided with a positioning component (73) that positions the shoe washing box (2) in the pushing direction after it is fully pushed into the receiving cavity (11). A second flexible rubber sleeve (74) for shock absorption is fitted on the positioning component (73).

4. A shoe washing machine with a box-type shoe washing device according to claim 3, characterized in that: The bottom of the shoe washing box (2) is provided with rollers (75), the lower side of the receiving cavity (11) is open, and the rollers (75) abut against the ground.

5. A shoe washing machine with a box-type shoe washing device according to claim 4, characterized in that: The shoe washing box (2) has a locking structure (76) on the front roller (75).

6. A shoe washing machine with a box-type shoe washing device according to any one of claims 1-5, characterized in that: The drive mechanism (5) includes a motor (51) that drives the shoe brush (42) shaft to rotate and a transmission gear set (52) located between the shoe rack (41) shaft and the shoe brush (42) shaft to drive the shoe rack (41) to rotate.

7. A shoe washing machine with a box-type shoe washing device according to claim 6, characterized in that: A clutch structure (53) is provided between the water distribution plate (31) and the shoe brush (42) shaft to lock the water distribution plate (31) onto the shoe brush (42) shaft.

8. A shoe washing machine with a box-type shoe washing device according to claim 6, characterized in that: The water supply structure (6) includes a water inlet hose (61) rotatably connected to the shaft of the shoe rack (41). The shaft of the shoe rack (41) is provided with a water inlet channel (40) that connects the water inlet hose (61) to the water distribution chamber (311). The water inlet hose (61) is connected to the liquid outlet end on the main body (1) of the washing machine. The water inlet hose (61) is also provided with a first control valve (611) that controls its on / off state.

9. A shoe washing machine with a box-type shoe washing device according to claim 6, characterized in that: The shoe washing box (2) is also provided with a drain pipe (62) for draining the liquid in the shoe washing chamber (21). The inlet end of the drain pipe (62) is connected to the shoe washing chamber (21), and the outlet end is connected to the drain end of the washing machine body (1). The drain pipe (62) is also provided with a second control valve (621) for controlling its opening and closing.

10. A shoe washing machine with a box-type shoe washing device according to claim 9, characterized in that: The washing machine body (1) is provided with a hot air mechanism for generating hot air. The washing machine body (1) is also provided with an air inlet hose (63) for discharging hot air into the shoe washing chamber (21) and an air outlet hose (64) for the gas in the shoe washing chamber (21) to flow out. The air inlet hose (63) is provided with a third control valve (631) for controlling its opening and closing, and the air outlet hose (64) is provided with a fourth control valve (641) for controlling its opening and closing.