Novel shoe washing rotating cage

By improving the structural design of the shoe washing drum, and adopting a rationally arranged column and rib structure and rotating nozzle assembly, the problems of poor shoe washing effect and safety hazards in shoe washing machines have been solved, achieving all-round cleaning of the inner and outer surfaces of shoes and improving safety.

CN224251346UActive Publication Date: 2026-05-19JIESHUANG TECHNOLOGY (SHIJIAZHUANG) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIESHUANG TECHNOLOGY (SHIJIAZHUANG) CO LTD
Filing Date
2025-07-03
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The existing shoe washing machine has an unreasonable drum design, resulting in poor washing effect, incomplete cleaning of the inside of the shoes, easy damage to the shoes, and potential safety hazards.

Method used

A novel shoe washing drum has been designed, featuring a rationally arranged column and rib structure, equipped with a protective net and rotating nozzle assembly to ensure that shoes do not fall off or become tangled during rotation, while thoroughly cleaning the inner and outer surfaces of the shoes.

Benefits of technology

It improves shoe cleaning effectiveness, prevents shoe damage, enhances safety, and ensures that both the inner and outer surfaces of the shoes are effectively cleaned.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a novel shoe washing rotary cage, which belongs to the technical field of shoe washing machines, and comprises a rotary cage frame, a shoe support frame, a rotary nozzle assembly and a protective net, the rotary cage frame is a barrel body with a cage-shaped side surface, and comprises two oppositely arranged rotary discs and a cage body fixed between the two rotary discs; one end of the cage door is hinged with the turntable, and the other end of the cage door is locked with or separated from the turntable through a rotating cage door lock; a mounting plate is fixed to the side face of the middle of the cage body, the shoe supporting frame is arranged on the mounting plate and located in the rotating cage frame, the shoe supporting frame extends towards the front end of the rotating cage frame, and the outline of the shoe supporting frame conforms to the vamp outline of a shoe. The rotating nozzle assembly is mounted on the mounting plate and adjacent to the shoe supporting frame, the water inlet end of the rotating nozzle assembly is located outside the rotating cage frame, and the water spraying end of the rotating nozzle assembly extends into the rotating cage frame; the protecting net is fixed to the outer side face of the middle of the cage body and extends from the rear end of the mounting plate to the front end of the rotating cage frame. The scheme is good in cleaning effect, few in potential safety hazard and suitable for being popularized and applied to the high-pressure spray-washing shoe washing machine.
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Description

Technical Field

[0001] This utility model belongs to the technical field of shoe washing machine, and relates to a shoe washing machine accessory, especially a novel shoe washing drum. Background Technology

[0002] Shoes made of textiles and fabrics, such as sneakers and athletic shoes, are difficult to clean after getting stained, and it is time-consuming and laborious. With the popularization of automated home appliances, shoe washing machines have gradually been launched and updated, entering the field of vision of young people. Young people are starting to choose shoe washing machines to replace manual cleaning of shoes.

[0003] Existing shoe washing machine technologies mainly include converting brush-type washing machines into shoe washing machines, ultrasonic shoe washing machines, and high-pressure spray shoe washing machines. Among these, high-pressure spray washing allows for rapid cleaning of shoes. The working principle of a high-pressure shoe washing machine is as follows: shoes are placed in a rotating drum inside the washing tank. A motor drives the drum to rotate, and nozzles evenly distributed around the inner wall of the washing tank spray high-pressure water jets or mists onto the shoe surface inside the rotating drum, thus cleaning the shoe surface. Most existing rotating drums are constructed of steel wire or wire mesh, which has the following drawbacks in practical applications:

[0004] 1. The steel bars or wire mesh of the rotating drum are not distributed properly, which affects the washing effect of shoes;

[0005] 2. Shoes are prone to falling off in traditional rotating drums. These shoes can easily get stuck in the rotating drum in the shoe washing trough, which can not only damage the shoes but also damage the motor that drives the drum.

[0006] 3. Shoelaces are prone to coming off during rotation and getting tangled in the rotating drum, resulting in damage;

[0007] 4. The inside of the shoes is difficult to clean, and there are large blind spots inside the shoes, which affects the overall cleaning effect. Utility Model Content

[0008] The purpose of this utility model is to provide a new type of shoe washing drum to solve the technical problems existing in the prior art, such as poor shoe washing effect, incomplete cleaning of the inside of shoes, easy damage to shoes, and affecting the safety of shoe washing machine use.

[0009] To achieve the above objectives, the specific technical solution of this utility model is as follows:

[0010] A novel shoe washing drum includes a drum frame, a shoe support frame, a rotating nozzle assembly, and a protective net. The drum frame is a cylindrical body with a cage-like shape on the side, including two oppositely arranged turntables, a cage body fixed between the two turntables, and a cage door that is hinged to the turntables at one end and locked or separated from the turntables at the other end by a drum door lock.

[0011] An mounting plate is fixed on the side of the middle part of the cage. The shoe support frame is set on the mounting plate and located inside the rotating cage frame. The shoe support frame extends to the front end of the rotating cage frame and its outline matches the outline of the shoe upper.

[0012] The rotating nozzle assembly is mounted on the mounting plate and adjacent to the shoe support frame. The water inlet of the rotating nozzle assembly is located outside the rotating cage frame, and the water spraying end extends into the rotating cage frame.

[0013] The protective netting is fixed to the outer side of the middle part of the cage and extends from the rear end of the mounting plate to the front end of the rotating cage frame.

[0014] The cage includes multiple uprights A and ribs A. The multiple uprights A are arranged in parallel and fixed at both ends to two turntables respectively. The multiple ribs A are distributed circumferentially along the side of the rotating cage frame and are respectively connected to the middle of two adjacent uprights A.

[0015] The cage door includes multiple uprights B and ribs B. The multiple uprights B are arranged in parallel, and the multiple ribs B are distributed circumferentially along the side of the rotating cage frame and are respectively connected to the middle of two adjacent uprights B.

[0016] The shoe support frame consists of two sets, located on either side of the rotating nozzle assembly.

[0017] The turntable includes a front turntable and a rear turntable. The front turntable is located on one side of the cage frame in the direction of the shoe tip, and the rear turntable is located on one side of the cage frame in the direction of the heel. A hinge seat is provided on the inner side of the front turntable. One end of the cage door is hinged to the hinge seat. A lock hole is provided on the rear turntable to cooperate with the cage door lock. The other end of the cage door is locked or separated from the rear turntable through the cage door lock and the lock hole.

[0018] The front and rear turntables are respectively provided with a front flange and a rear flange on their outer surfaces, and the front flange and the rear flange are respectively connected to an external shaft drive.

[0019] The rotary nozzle assembly includes a rotary nozzle and a connecting elbow. The rotary nozzle is fixed on the mounting plate and located inside the rotating cage frame. The elbow is located outside the rotating cage frame. One end of the elbow is connected to the rotary nozzle, and the other end is connected to an external water supply pipeline.

[0020] The mesh size of the protective net is 5-30mm, and the front end of the protective net extends beyond the front end of the shoe support frame.

[0021] The beneficial effects of this utility model are as follows: By providing a novel shoe washing drum, the rational layout of the columns and ribs effectively prevents shoes from being thrown out during the rotation of the drum frame while ensuring the cleaning effect on the outer surface of the shoes. The addition of a protective net effectively prevents shoelaces from getting tangled in the drum after they come out, improving the safety of the shoes during the washing process. Furthermore, this utility model also incorporates a shoe support frame with a rotating nozzle assembly. This provides sufficient support for the shoe surface, preventing deformation, while the rotating nozzle assembly thoroughly cleans the inner cavity of the shoe, minimizing dead corners and achieving excellent cleaning results. The technical solution of this application effectively solves the problems of traditional shoe washing machines not cleaning the inside of shoes properly and easily damaging them, eliminating potential safety hazards during use, and is suitable for widespread application in high-pressure spray shoe washing machines. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the main structure of the present invention when a shoe is placed inside;

[0023] Figure 2 for Figure 1 Rear view;

[0024] Figure 3 This is a schematic diagram of the main structure of this utility model;

[0025] Figure 4 for Figure 3 The main view;

[0026] Figure 5 for Figure 3 A magnified view of a portion of point A in the middle.

[0027] The markings in the diagram are as follows: 1. Cage body, 2. Cage door, 3. Front turntable, 4. Rear turntable, 5. Shoe support frame, 6. Rotary nozzle assembly, 61. Rotary nozzle, 62. Elbow, 7. Protective net, 8. Mounting plate, 9. Rotary cage door lock, 10. Column A, 11. Rib A, 12. Column B, 13. Rib B, 14. Hinge seat, 15. Front flange, 16. Rear flange, 17. Shoe. Detailed Implementation

[0028] To better understand the purpose, structure, and function of this utility model, a more detailed description of this utility model is provided below with reference to the accompanying drawings.

[0029] like Figures 1 to 5As shown, this utility model provides a novel shoe washing drum, which includes a drum frame, a shoe support frame 5, a rotating nozzle assembly 61, and a protective net 7. The drum frame is a cylindrical body with a cage-like shape on its sides, comprising two opposing turntables, a cage body 1 fixed between the two turntables, and a cage door 2 that is hinged to the turntables at one end and locked or detached from the turntables at the other end via a drum door lock 9. In use, shoes 17 are placed inside the cavity formed by the cage body 1 and the cage door 2 for washing.

[0030] To optimize the structure of the cage body 1 and cage door 2 and ensure effective cleaning of the outer surface of the shoes 17, the cage body 1 in this embodiment includes multiple uprights A10 and multiple ribs A11. The uprights A10 are arranged parallel to the axial direction of the rotating cage frame and evenly distributed around the circumference of the turntable. Both ends of the uprights A10 are fixed to the two turntables, forming the main body of the rotating cage frame. The multiple ribs A11 are distributed circumferentially along the sides of the rotating cage frame and connected to the middle of adjacent uprights A10. To improve the stability of the rotating cage frame and effectively prevent the shoes 17 from being thrown out of the rotating cage frame during rotation, in this embodiment, two sets of ribs A11 are evenly arranged along the extending direction of the uprights A10.

[0031] Similar to cage body 1, cage door 2 includes multiple uprights B12 and multiple ribs B13. The uprights B12 are arranged parallel to the axial direction of the rotating cage frame and are evenly distributed around the circumference of the turntable. One end of each upright B12 is hinged to the turntable, and the other end is equipped with a rotating cage door lock 9, which locks or separates it from another turntable. The multiple ribs B13 are distributed circumferentially along the side of the rotating cage frame and are respectively connected to the middle of two adjacent uprights B12. Similar to ribs A11, in this embodiment, two sets of ribs B13 are evenly arranged along the extension direction of the uprights B12.

[0032] In order to clean the inside of the shoes, such as Figures 2 to 5As shown, in this embodiment, an mounting plate 8 is fixed on the side of the middle part of the cage 1. The shoe support frame 5 is set on the mounting plate 8 and located inside the rotating cage frame. The shoe support frame 5 extends towards the front end of the rotating cage frame, and its outline matches the outline of the shoe upper of the shoe 17. It is used to support the top surface of the shoe 17 and prevent it from collapsing and deforming under the action of high-pressure water jet. The rotating nozzle 61 assembly 6 includes a rotating nozzle 61 and a connecting elbow 62. The rotating nozzle 61 is fixed on the mounting plate 8 and located inside the rotating cage frame. The elbow 62 is located outside the rotating cage frame. One end of the elbow 62 is connected to the rotating nozzle 61, and the other end is connected to an external water supply pipe. In order to enable the rotating nozzle 61 to rotate automatically under the action of high-pressure water flow to clean the inside of the shoe 17 in all directions, the rotating nozzle 61 in this embodiment is selected as an impact nozzle. At the same time, in order to improve the stability of the shoe 17 during the inner surface cleaning process, there are two sets of shoe support frames 5 in this embodiment, which are located on both sides of the rotating nozzle 61 assembly 6.

[0033] In order to prevent the shoelaces from swinging out too long and getting tangled on the cage body 1, cage door 2 or turntable during the rotation of the cage frame, in this embodiment, the mesh size of the protective net 7 is selected to be 5-30mm. The protective net 7 is fixed on the outer side of the middle part of the cage body 1, extending from the rear end of the mounting plate 8 to the front end of the cage frame and beyond the front end of the shoe support frame 5.

[0034] Furthermore, in this embodiment, the turntable includes a front turntable 3 and a rear turntable 4. The front turntable 3 is located on the side of the rotating cage frame towards the shoe toe, and the rear turntable 4 is located on the side of the rotating cage frame towards the shoe heel. A hinge seat 14 is provided on the inner side of the front turntable 3, and one end of the cage door 2 is hinged to the hinge seat 14. A lock hole is provided on the rear turntable 4 to cooperate with the rotating cage door lock 9. The other end of the cage door 2 is locked or separated from the rear turntable 4 through the rotating cage door lock 9 and the lock hole. Corresponding to the front turntable 3 and the rear turntable 4, in this embodiment, a front flange 15 and a rear flange 16 are respectively provided on the outer side of the front turntable 3 and the rear turntable 4. The front flange 15 and the rear flange 16 are respectively connected to an external shaft drive. Under the driving action of the external shaft, the rotating cage frame is driven to rotate around the axis of the front flange 15 and the rear flange 16, thereby facilitating the comprehensive cleaning of the shoes 17.

[0035] It is understood that this utility model has been described through some embodiments, and those skilled in the art will recognize that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of this utility model. Furthermore, under the teachings of this utility model, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are within the protection scope of this utility model.

Claims

1. A novel shoe washing drum, characterized in that: It includes a rotating cage frame, a shoe support frame (5), a rotating nozzle (61) assembly (6) and a protective net (7). The rotating cage frame is a cylindrical body with a cage-like shape on the side, including two oppositely arranged turntables, a cage body (1) fixed between the two turntables, and a cage door (2) that is hinged to the turntable at one end and locked or separated from the turntable at the other end by a rotating cage door lock (9). An mounting plate (8) is fixed on the side of the middle part of the cage (1). The shoe support frame (5) is set on the mounting plate (8) and located inside the rotating cage frame. The shoe support frame (5) extends to the front end of the rotating cage frame and its outline matches the outline of the shoe upper (17). The rotating nozzle (61) assembly (6) is mounted on the mounting plate (8) and adjacent to the shoe support frame (5). The water inlet of the rotating nozzle (61) assembly (6) is located outside the rotating cage frame, and the water spraying end extends into the rotating cage frame. The protective net (7) is fixed to the outer side of the middle part of the cage (1) and extends from the rear end of the mounting plate (8) to the front end of the rotating cage frame.

2. The novel shoe washing drum according to claim 1, characterized in that: The cage (1) includes multiple columns A (10) and ribs A (11). The multiple columns A (10) are arranged in parallel and fixed at both ends to two turntables respectively. The multiple ribs A (11) are distributed circumferentially along the side of the cage frame and are respectively connected to the middle of two adjacent columns A (10). The cage door (2) includes multiple uprights B (12) and ribs B (13). The multiple uprights B (12) are arranged in parallel, and the multiple ribs B (13) are distributed circumferentially along the side of the rotating cage frame and are respectively connected to the middle of two adjacent uprights B (12).

3. A novel shoe washing drum according to claim 1, characterized in that: The number of shoe support frames (5) is two sets, located on both sides of the rotating nozzle (61) assembly (6).

4. A novel shoe washing drum according to claim 1, characterized in that: The turntable includes a front turntable (3) and a rear turntable (4). The front turntable (3) is located on one side of the cage frame in the direction of the shoe tip, and the rear turntable (4) is located on one side of the cage frame in the direction of the heel. A hinge seat (14) is provided on the inner side of the front turntable (3). One end of the cage door (2) is hinged to the hinge seat (14). A lock hole is provided on the rear turntable (4) to cooperate with the cage door lock (9). The other end of the cage door (2) is locked or separated from the rear turntable (4) through the cage door lock (9) and the lock hole.

5. A novel shoe washing drum according to claim 4, characterized in that: The front turntable (3) and the rear turntable (4) are respectively provided with a front flange (15) and a rear flange (16) on their outer surfaces, and the front flange (15) and the rear flange (16) are respectively connected to an external shaft drive.

6. A novel shoe washing drum according to claim 1, characterized in that: The rotary nozzle (61) assembly (6) includes a rotary nozzle (61) and a connecting elbow (62). The rotary nozzle (61) is fixed on the mounting plate (8) and located inside the rotating cage frame. The elbow (62) is located outside the rotating cage frame. One end of the elbow (62) is connected to the rotary nozzle (61), and the other end is connected to an external water supply pipeline.

7. A novel shoe washing drum according to claim 1, characterized in that: The mesh size of the protective net (7) is 5-30mm, and the front end of the protective net (7) extends beyond the front end of the shoe support frame (5).