Rubber product waste cleaning and recycling treatment machine

By designing a machine for cleaning and recycling rubber waste, the machine utilizes the rotation and up-and-down movement of a vibrating bottom ring combined with high-pressure water flow to automatically clean rubber waste, solving the problem of high labor intensity associated with manual cleaning and achieving efficient and safe cleaning results.

CN122008443APending Publication Date: 2026-05-12东莞市润银实业有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
东莞市润银实业有限公司
Filing Date
2026-04-07
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

In existing technologies, the cleaning of rubber waste mainly relies on manual brushing, which results in high labor intensity, damage to the health of workers, and difficulty in meeting the needs of large-scale production.

Method used

A machine for cleaning and recycling rubber product waste has been designed, comprising a cleaning container, a vibrating bottom ring, and a drive component. Automatic cleaning is achieved through the rotation and up-and-down movement of the vibrating bottom ring, combined with high-pressure water flow to rinse the rubber waste from multiple angles, and the pollutants are detached under the action of water flow and friction.

Benefits of technology

It has achieved automated cleaning of rubber waste, reduced manual intervention, avoided joint strain and hand swelling, improved cleaning efficiency, and met the needs of large-scale production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of rubber product recycling, in particular to a rubber product waste cleaning and recycling treatment machine which comprises a cleaning container. The cleaning ring penetrates up and down to form a cleaning channel; a plurality of water spraying assemblies are arranged at the top of the vibration bottom ring; the driving component is used for driving the vibration bottom ring to rotate around the center axis of the cleaning ring and synchronously driving the vibration bottom ring to move up and down in the height direction of the cleaning channel in the rotating process. Rubber waste to be cleaned is put into the cleaning channel, then the driving component is started to drive the vibration bottom ring to rotate around the center axis of the cleaning ring, and meanwhile the vibration bottom ring is driven to reciprocate up and down in the height direction of the cleaning channel, so that the rubber waste rolls and displaces in the cleaning channel; the water spraying assembly sprays high-pressure water flow into the cleaning channel in the movement process of the vibration bottom ring, rubber waste is washed at multiple angles, pollutants such as soil fall off under the action of water flow impact and waste mutual friction, and manual participation is not needed in the whole cleaning process.
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Description

Technical Field

[0001] This invention relates to the field of rubber product recycling technology, specifically to a machine for cleaning and recycling rubber product waste. Background Technology

[0002] Rubber products refer to various industrial and daily necessities made from natural rubber and synthetic rubber as the main raw materials through processes such as mixing, calendering, and vulcanization. With the continuous growth of global consumption of rubber products, a large amount of waste will inevitably be generated during their production and use.

[0003] Rubber waste can be processed into recycled rubber, which is used to produce low-grade rubber products (such as rubber flooring, sports mats, and recycled rubber granules). However, before recycling, rubber waste is usually covered with contaminants such as dirt. If it is not cleaned, the performance of the recycled rubber products will decline, such as insufficient strength and poor aging resistance.

[0004] Currently, most rubber waste cleaning is done manually, requiring workers to repeatedly scrub the waste with brushes. This prolonged scrubbing easily leads to wrist strain and hand swelling, which over time reduces work efficiency and increases the risk of workplace injuries. Furthermore, the high labor intensity makes it difficult to meet the production demands of large-scale rubber waste recycling. Therefore, this invention aims to provide a rubber product waste cleaning and recycling machine capable of automatically cleaning rubber waste. Summary of the Invention

[0005] (a) Technical problems to be solved

[0006] To address the shortcomings of existing technologies, this invention provides a machine for cleaning and recycling rubber waste, which can automatically clean rubber waste to solve the problem of high labor intensity in manual cleaning of rubber waste in existing technologies.

[0007] (II) Technical Solution

[0008] To achieve the above objectives, the present invention provides a rubber product waste cleaning and recycling machine, comprising a cleaning container; a cleaning ring fixed inside the cleaning container, the cleaning ring being vertically connected to form a cleaning channel; a vibrating bottom ring for selectively shielding or opening the bottom of the cleaning channel, and movable up and down along the height direction of the cleaning channel, the top of the vibrating bottom ring being circumferentially spaced with multiple water spray components, the water spray components being connected to an external water source; and a driving component for driving the vibrating bottom ring to rotate around the central axis of the cleaning ring, and synchronously driving the vibrating bottom ring to move up and down along the height direction of the cleaning channel during the rotation.

[0009] Optionally, the cleaning ring includes an inner ring and an outer ring, the outer ring is fixedly connected to the inner wall of the cleaning container, and the inner ring and the outer ring are fixedly connected by two connecting rods, the connecting rods being located at the top of the cleaning ring.

[0010] Optionally, a drainage groove is provided on the side wall of the inner ring, and the cross-section of the drainage groove is trapezoidal.

[0011] Optionally, it also includes a cover plate for selectively concealing or opening the top of the cleaning channel.

[0012] Optionally, the driving mechanism includes a waterproof motor, a driving plate, a driving rod, a driving wheel, and a protruding plate. The waterproof motor is fixedly installed at the bottom of the inner cavity of the cleaning container, and the output end of the waterproof motor is connected to the driving plate via a telescopic assembly. Both ends of the driving plate are fixedly connected to the vibrating bottom ring. Several protruding plates are evenly spaced along the circumferential bottom of the inner cavity of the cleaning container. The driving wheel is rotatably installed at the bottom end of the driving rod. There are two driving rods, which are symmetrically fixed at opposite ends of the bottom of the driving plate. When the driving plate is driven to rotate by the waterproof motor, the driving plate drives the driving rod and the driving wheel to rotate circumferentially along the bottom of the inner cavity of the cleaning container. During this process, the driving wheel and the protruding plate roll together to generate periodic undulating vibration.

[0013] Optionally, the telescopic assembly includes a moving rod and a limiting block; the top of the output end of the waterproof motor has an axially formed telescopic groove, the moving rod is slidably fitted into the telescopic groove along the axial direction, the limiting block is fixedly disposed on the outer circumferential surface of the moving rod, a limiting groove is formed on the inner wall of the telescopic groove, and the limiting block is slidably fitted into the limiting groove; the limiting block and the limiting groove limit each other to restrict the moving rod from axially disengaging from the telescopic groove, and at the same time restrict the moving rod from circumferentially rotating relative to the telescopic groove.

[0014] Optionally, the bottom of the inner cavity of the cleaning container is provided with a disassembly groove corresponding to the position of each of the protruding plates, and each of the protruding plates is detachably installed in the disassembly groove by fasteners, and the top of the drive rod is threadedly connected to the drive plate.

[0015] Optionally, the water spray assembly includes a nozzle, a high-pressure water pump, a first rigid pipe, a second rigid pipe, and a flexible hose. Several nozzles are evenly spaced along the top circumference of the vibrating bottom ring. A first water channel is formed inside the vibrating bottom ring, and a second water channel is formed inside the drive plate. The first water channel communicates with each nozzle, and the first water channel communicates with the second water channel. A water inlet is formed at the top of the drive plate, and a sealed bearing is fixedly installed at the water inlet. The first rigid pipe is coaxially fixed with the inner ring of the sealed bearing. The bottom end of the first rigid pipe communicates with the first water channel. The two ends of the flexible hose are respectively connected to the top end of the first rigid pipe and one end of the second rigid pipe. The other end of the second rigid pipe is connected to an external water source through the high-pressure water pump.

[0016] Optionally, an L-shaped fixing plate is fixedly provided on the outer peripheral surface of the cleaning container. The fixing plate includes a vertical section and a horizontal section. The vertical section is fitted and fixed to the outer peripheral surface of the cleaning container, and the horizontal section extends radially outward from the top of the vertical section. One end of the rigid pipe II passes through the horizontal section and extends vertically downward. The horizontal section provides support and positioning for the rigid pipe II to limit its axial and radial displacement.

[0017] Optionally, the cleaning container is constructed as a cylindrical structure, the bottom wall of the cleaning container is constructed as a conical structure, the bottom wall of the cleaning container is constructed as a cone inclined towards the center, and a water outlet communicating with the outside is provided at the center of the bottom wall of the cleaning container; a water storage container is provided below the cleaning container, and a filter screen is detachably installed at the top opening of the water storage container.

[0018] (III) Beneficial Effects

[0019] Compared with the prior art, the present invention provides a machine for cleaning and recycling rubber product waste, which has the following advantages:

[0020] 1. This invention involves placing the rubber waste to be cleaned into a cleaning channel, then activating a drive component to rotate the vibrating bottom ring around the central axis of the cleaning ring. Simultaneously, the vibrating bottom ring is driven to move up and down along the height of the cleaning channel, causing the rubber waste to tumble and shift within the cleaning channel. During the movement of the vibrating bottom ring, a water spray component sprays high-pressure water into the cleaning channel, rinsing the rubber waste from multiple angles. Contaminants such as mud are dislodged under the impact of the water flow and the friction between the waste materials. The entire cleaning process requires no manual intervention.

[0021] 2. This invention provides a drainage channel to guide the wastewater and loosened mud and sand after cleaning to be discharged quickly to the outside of the inner ring.

[0022] 3. The present invention uses a fixing plate to prevent one end of the rigid pipe from becoming loose, worn or leaking due to repeated displacement. Attached Figure Description

[0023] Figure 1 A three-dimensional structural schematic diagram of the present invention is shown;

[0024] Figure 2 A three-dimensional cross-sectional structural schematic diagram of the present invention is shown;

[0025] Figure 3 A partial three-dimensional cross-sectional structural schematic diagram of the present invention is shown;

[0026] Figure 4 It shows Figure 3 Another schematic diagram of the axial side structure;

[0027] Figure 5 A three-dimensional cross-sectional schematic diagram of the vibration base ring and drive plate is shown;

[0028] Figure 6 It shows Figure 5 A magnified structural diagram at point A.

[0029] In the diagram: 1. Cleaning container; 2. Cleaning ring; 3. Inner ring; 4. Outer ring; 5. Cleaning channel; 6. Vibrating bottom ring; 7. Connecting rod; 8. Drainage outlet; 9. Cover plate; 10. Waterproof motor; 11. Drive plate; 12. Drive rod; 13. Drive wheel; 14. Protruding plate; 15. Moving rod; 16. Limiting block; 17. Telescopic groove; 18. Limiting groove; 19. Disassembly groove; 20. Nozzle; 21. High-pressure water pump; 22. Rigid pipe one; 23. Rigid pipe two; 24. Flexible hose; 25. Water passage trough one; 26. Water passage trough two; 27. Water inlet; 28. Sealed bearing; 29. ​​Fixing plate; 30. Water outlet; 31. Water storage container; 32. Filter screen. Detailed Implementation

[0030] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0031] Example: Please refer to Figures 1 to 6According to an embodiment of the present invention, a technical solution is provided: a rubber product waste cleaning and recycling machine, including a cleaning container 1; a cleaning ring 2, fixed inside the cleaning container 1, the cleaning ring 2 forming a cleaning channel 5 through the top and bottom; a vibrating bottom ring 6, used to selectively cover or open the bottom of the cleaning channel 5, and can move up and down along the height direction of the cleaning channel 5, the top of the vibrating bottom ring 6 is provided with multiple water spray components spaced apart, the water spray components are connected to an external water source; and a driving component, used to drive the vibrating bottom ring 6 to rotate around the central axis of the cleaning ring 2, and synchronously drive the vibrating bottom ring 6 to move up and down along the height direction of the cleaning channel 5 during the rotation.

[0032] The rubber waste cleaning and recycling machine with the above structure firstly places the rubber waste to be cleaned into the cleaning channel 5 from the top of the cleaning ring 2, where it is received by the vibrating bottom ring 6. Then, the drive component is activated to rotate the vibrating bottom ring 6 around the central axis of the cleaning ring 2, and at the same time, the vibrating bottom ring 6 is driven to move up and down along the height direction of the cleaning channel 5, causing the rubber waste to tumble and shift within the cleaning channel 5. During the movement of the vibrating bottom ring 6, the water spray component sprays high-pressure water into the cleaning channel 5, washing the rubber waste from multiple angles. Contaminants such as dirt are dislodged under the impact of the water flow and the friction between the waste materials. The entire cleaning process does not require manual intervention, effectively avoiding joint strain and hand swelling caused by manual brushing.

[0033] In this embodiment, the cleaning ring 2 includes an inner ring 3 and an outer ring 4. The outer ring 4 is fixedly connected to the inner wall of the cleaning container 1. The inner ring 3 and the outer ring 4 are fixedly connected by two connecting rods 7, which are located at the top of the cleaning ring 2. This arrangement prevents the cleaning ring 2 from deforming or displacing during the high-frequency up-and-down movement and rotation of the vibrating bottom ring 6.

[0034] In this embodiment, a drainage groove 8 is provided on the side wall of the inner ring 3. The cross-section of the drainage groove 8 is trapezoidal. With this design, the trapezoidal drainage groove 8 is wider at the top and narrower at the bottom, which can effectively guide the sewage and detached mud and sand after cleaning to be discharged quickly to the outside of the inner ring 3, preventing dirt from accumulating and clogging at the drainage groove 8, ensuring smooth drainage. At the same time, the trapezoidal structure has better structural strength than rectangular or circular grooves, and can withstand the impact force generated by the rolling and collision of rubber waste during the cleaning process, avoiding deformation and damage to the edge of the drainage groove 8, and extending the service life of the inner ring 3. In addition, the trapezoidal slope can also reduce the probability of rubber waste getting stuck in the drainage groove 8, making it easier for the rubber waste to roll smoothly in the cleaning channel 5.

[0035] In this embodiment, a cover plate 9 is also included. The cover plate 9 is used to selectively cover or open the top of the cleaning channel 5. This configuration allows the cover plate 9 to cover the top of the cleaning channel 5 during the cleaning process, effectively preventing water and rubber waste from splashing outwards during tumbling, maintaining a clean working environment, avoiding wastewater contamination of surrounding equipment or the ground, and reducing heat loss and water mist diffusion during cleaning. When it is necessary to add or remove rubber waste after cleaning, the cover plate 9 can be opened for operation, facilitating staff monitoring the internal cleaning process or performing maintenance and repairs. Furthermore, the cover plate 9 can also, to a certain extent, prevent external dust from falling into the cleaning channel 5, ensuring a reduced risk of secondary contamination of the cleaned rubber waste.

[0036] In this embodiment, the driving mechanism includes a waterproof motor 10, a driving plate 11, a driving rod 12, a driving wheel 13, and a protruding plate 14. The waterproof motor 10 is fixedly installed at the bottom of the inner cavity of the cleaning container 1. The output end of the waterproof motor 10 is connected to the driving plate 11 via a telescopic assembly. Both ends of the driving plate 11 are fixedly connected to the vibrating bottom ring 6. Several protruding plates 14 are evenly distributed around the bottom of the inner cavity of the cleaning container 1. The driving wheel 13 is rotatably installed at the bottom end of the driving rod 12. There are two driving rods 12, which are symmetrically fixed to opposite ends of the bottom of the driving plate 11. When the drive plate 11 is driven to rotate by the waterproof motor 10, the drive plate 11 drives the drive rod 12 and drive wheel 13 to rotate circumferentially along the bottom of the inner cavity of the cleaning container 1. During this process, the drive wheel 13 and the protruding plate 14 roll together to generate periodic undulating vibration. With this configuration, the drive plate 11 is driven to rotate by the waterproof motor 10, which drives the drive rod 12 and drive wheel 13 to roll circumferentially along the protruding plate 14. The periodic undulating structure of the protruding plate 14 converts the rotational motion into a composite motion of up-and-down reciprocating vibration and rotation of the vibrating bottom ring 6, causing the rubber waste to tumble and displace at multiple angles within the cleaning channel 5. It can be understood that the symmetrical fixing of the drive rod 12 by the drive plate 11 ensures the balance of motion, and the even distribution of the protruding plates 14 ensures the stability of the vibration frequency, avoiding local wear or jamming. At the same time, the rolling cooperation between the drive wheel 13 and the protruding plate 14 reduces frictional resistance and extends the service life of the components.

[0037] In this embodiment, the telescopic assembly includes a moving rod 15 and a limiting block 16. A telescopic groove 17 is axially formed on the top of the output end of the waterproof motor 10. The moving rod 15 is slidably fitted into the telescopic groove 17 along the axial direction. The limiting block 16 is fixedly disposed on the outer circumferential surface of the moving rod 15. A limiting groove 18 is formed on the inner wall of the telescopic groove 17. The limiting block 16 is slidably fitted into the limiting groove 18. The limiting block 16 and the limiting groove 18 limit each other to restrict the moving rod 15 from axially disengaging from the telescopic groove 17, and at the same time restrict the moving rod 15 from circumferentially rotating relative to the telescopic groove 17. With this configuration, the sliding fit between the limiting block 16 and the limiting groove 18 enables torque transmission between the output end of the waterproof motor 10 and the moving rod 15, while allowing the moving rod 15 to slide freely along the axial direction. This accommodates the periodic up-and-down vibration displacement of the drive plate 11 caused by the engagement of the drive wheel 13 and the protruding plate 14, and avoids damage to the output end of the waterproof motor 10 due to excessive axial impact caused by the rigid connection.

[0038] In this embodiment, the bottom of the inner cavity of the cleaning container 1 is provided with a disassembly groove 19 corresponding to the position of each protruding plate 14. Each protruding plate 14 is detachably installed in the disassembly groove 19 by fasteners. The top of the drive rod 12 is threadedly connected to the drive plate 11. With this configuration, when it is necessary to discharge the cleaned rubber waste, firstly, the protruding plate 14 is disassembled to expose the disassembly groove 19. During this process, the drive rod 12 will fall into the disassembly groove 19 due to gravity, and at the same time, it will drive the vibrating bottom ring 6 to move down and separate from the cleaning channel 5. Then, the drive rod 12 is unscrewed from the drive plate 11 and separated. Immediately afterwards, the waterproof motor 10 is started to drive the drive plate 11 to rotate at high speed, and the rubber waste stuck on the top of the vibrating bottom ring 6 is thrown out by centrifugal force to facilitate discharge.

[0039] In this embodiment, the water spray assembly includes a nozzle 20, a high-pressure water pump 21, a rigid pipe 22, a rigid pipe 23, and a flexible hose 24. Several nozzles 20 are evenly spaced along the top circumference of the vibrating bottom ring 6. A water channel 25 is provided inside the vibrating bottom ring 6, and a water channel 26 is provided inside the drive plate 11. The water channel 25 communicates with each nozzle 20, and the water channel 25 communicates with the water channel 26. A water inlet 27 is provided at the top of the drive plate 11, and a sealed bearing 28 is fixedly installed at the water inlet 27. The rigid pipe 22 is coaxially fixed with the inner ring 3 of the sealed bearing 28, and the bottom end of the rigid pipe 22 communicates with the water channel 25. The two ends of the flexible hose 24 are connected to the top of the rigid pipe 22 and one end of the rigid pipe 23, respectively. The other end of the rigid pipe 23 is connected to an external water source via a high-pressure water pump 21. With this configuration, the high-pressure water pump 21 pressurizes the external water source and delivers it to the rigid pipe 22 through the rigid pipe 23 and the flexible hose 24. The water then flows through the water channel 26 and the water channel 25 to the nozzles 20, achieving a uniform spray of high-pressure water along the circumference of the vibrating bottom ring 6, providing comprehensive rinsing of the rubber waste. The sealed bearing 28 maintains a water circuit seal while ensuring that the rotation of the drive plate 11 does not affect the rotational connection between the rigid pipe 22 and the drive plate 11, preventing leakage of cleaning water. It is understood that the flexible hose 24 has a certain amount of flexibility to ensure that it does not affect the normal up-and-down movement of the drive plate 11, thus ensuring continuous water supply.

[0040] In this embodiment, an L-shaped fixing plate 29 is fixedly provided on the outer peripheral surface of the cleaning container 1. The fixing plate 29 includes a vertical section and a horizontal section. The vertical section is attached to and fixed on the outer peripheral surface of the cleaning container 1, and the horizontal section extends radially outward from the top of the vertical section. One end of the rigid pipe 23 passes through the horizontal section and extends vertically downward. The horizontal section provides support and positioning for the rigid pipe 23 to limit the displacement of the rigid pipe 23 in the axial and radial directions. This arrangement is to prevent the one end of the rigid pipe 23 from becoming loose, worn, or leaking due to repeated displacement.

[0041] In this embodiment, the cleaning container 1 is constructed as a cylindrical structure, and the bottom wall of the cleaning container 1 is constructed as a conical structure, with the bottom wall of the cleaning container 1 being a cone that slopes towards the center. A water outlet 30 communicating with the outside is opened at the center of the bottom wall of the cleaning container 1. A water storage container 31 is provided below the cleaning container 1, and a filter screen 32 is detachably installed at the top opening of the water storage container 31. With this configuration, the cleaning container 1 adopts a cylindrical structure, and the conical bottom wall slopes towards the center to form a natural flow guide slope. The wastewater and rubber waste after cleaning can automatically converge along the conical surface to the water outlet 30 at the center of the bottom wall under the action of gravity. The water storage container 31 is located directly below the cleaning container 1 and receives the wastewater discharged from the water outlet 30, realizing the centralized recycling of cleaning water, which is convenient for subsequent filtration, purification, recycling, or unified discharge treatment, reducing water waste. The filter screen 32 is detachably installed at the top opening of the water storage container 31, and the filter screen 32 intercepts the rubber waste after cleaning, which is convenient for operators to collect it uniformly afterward.

[0042] It should be noted that all components used in this application are standard parts that can be purchased from the market. The specific connection methods of each part adopt conventional methods such as bolts, rivets and welding that are mature in the prior art. The mechanical parts and electrical equipment adopt conventional models in the prior art. The circuit connection adopts conventional connection methods in the prior art. The electrical equipment is connected to an external safe power source. These will not be described in detail here.

[0043] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A machine for cleaning and recycling rubber product waste, characterized in that, include: Clean the container (1); A cleaning ring (2) is fixed inside the cleaning container (1), and the cleaning ring (2) is connected vertically to form a cleaning channel (5). The vibrating bottom ring (6) is used to selectively cover or open the bottom of the cleaning channel (5) and can move up and down along the height direction of the cleaning channel (5). The top of the vibrating bottom ring (6) is provided with multiple water spray components at intervals, and the water spray components are connected to an external water source. A driving component is used to drive the vibrating bottom ring (6) to rotate around the central axis of the cleaning ring (2), and synchronously drive the vibrating bottom ring (6) to move up and down along the height direction of the cleaning channel (5) during the rotation.

2. The rubber product waste cleaning and recycling machinery according to claim 1, characterized in that: The cleaning ring (2) includes an inner ring (3) and an outer ring (4). The outer ring (4) is fixedly connected to the inner wall of the cleaning container (1). The inner ring (3) and the outer ring (4) are fixedly connected by two connecting rods (7). The connecting rods (7) are located at the top of the cleaning ring (2).

3. The rubber product waste cleaning and recycling machinery according to claim 2, characterized in that: The inner ring (3) has a drainage groove (8) on its side wall, and the cross-section of the drainage groove (8) is trapezoidal.

4. The rubber product waste cleaning and recycling machinery according to claim 2, characterized in that: It also includes a cover plate (9) for selectively covering or opening the top of the cleaning channel (5).

5. The rubber product waste cleaning and recycling machinery according to claim 1, characterized in that: The driving mechanism includes a waterproof motor (10), a drive plate (11), a drive rod (12), a drive wheel (13), and a protruding plate (14). The waterproof motor (10) is fixedly installed at the bottom of the inner cavity of the cleaning container (1). The output end of the waterproof motor (10) is connected to the drive plate (11) via a telescopic assembly. Both ends of the drive plate (11) are fixedly connected to the vibrating bottom ring (6). Several protruding plates (14) are evenly distributed around the bottom of the inner cavity of the cleaning container (1). The drive wheel... (13) Rotatably mounted on the bottom end of the drive rod (12), the drive rod (12) is configured as two rods, the two drive rods (12) are symmetrically fixed at opposite ends of the bottom of the drive plate (11); when the drive plate (11) is driven to rotate by the waterproof motor (10), the drive plate (11) drives the drive rod (12) and the drive wheel (13) to rotate circumferentially along the bottom of the inner cavity of the cleaning container (1), during this process, the drive wheel (13) and the protruding plate (14) roll to generate periodic undulating vibration.

6. The rubber product waste cleaning and recycling machinery according to claim 5, characterized in that: The telescopic assembly includes a moving rod (15) and a limiting block (16); the top of the output end of the waterproof motor (10) is provided with a telescopic groove (17) axially, the moving rod (15) is slidably fitted in the telescopic groove (17) axially, the limiting block (16) is fixedly installed on the outer circumferential surface of the moving rod (15), and a limiting groove (18) is provided on the inner wall of the telescopic groove (17), the limiting block (16) is slidably fitted in the limiting groove (18); the limiting block (16) and the limiting groove (18) limit each other to restrict the moving rod (15) from axially disengaging from the telescopic groove (17), and at the same time restrict the moving rod (15) from circumferentially rotating relative to the telescopic groove (17).

7. The rubber product waste cleaning and recycling machinery according to claim 5, characterized in that: The bottom of the inner cavity of the cleaning container (1) is provided with a disassembly groove (19) corresponding to the position of each of the protruding plates (14). Each of the protruding plates (14) is detachably installed in the disassembly groove (19) by fasteners. The top of the drive rod (12) is threadedly connected to the drive plate (11).

8. The rubber product waste cleaning and recycling machinery according to claim 7, characterized in that: The water spray assembly includes a nozzle (20), a high-pressure water pump (21), a rigid pipe one (22), a rigid pipe two (23), and a flexible hose (24); several nozzles (20) are evenly spaced along the top circumference of the vibrating bottom ring (6); a water passage groove one (25) is opened in the vibrating bottom ring (6), and a water passage groove two (26) is opened in the drive plate (11); the water passage groove one (25) is connected to each nozzle (20), and the water passage groove one (25) is connected to the water passage groove two (26); The top of the drive plate (11) is provided with a water inlet (27), and a sealed bearing (28) is fixedly installed at the water inlet (27). The first rigid pipe (22) is coaxially fixed with the inner ring (3) of the sealed bearing (28). The bottom end of the first rigid pipe (22) is connected to the first water channel (25). The two ends of the flexible hose (24) are respectively connected to the top end of the first rigid pipe (22) and one end of the second rigid pipe (23). The other end of the second rigid pipe (23) is connected to an external water source through the high-pressure water pump (21).

9. The rubber product waste cleaning and recycling machinery according to claim 8, characterized in that: The cleaning container (1) is fixedly provided with an L-shaped fixing plate (29) on its outer peripheral surface. The fixing plate (29) includes a vertical section and a horizontal section. The vertical section is attached to the outer peripheral surface of the cleaning container (1), and the horizontal section extends radially outward from the top of the vertical section. One end of the rigid tube (23) passes through the horizontal section and extends vertically downward. The horizontal section provides support and positioning for the rigid tube (23) to limit the displacement of the rigid tube (23) in the axial and radial directions.

10. The rubber product waste cleaning and recycling machinery according to claim 8, characterized in that: The cleaning container (1) is constructed as a cylindrical structure, the bottom wall of the cleaning container (1) is constructed as a conical structure, the bottom wall of the cleaning container (1) is constructed as a cone inclined towards the center, and a water outlet (30) communicating with the outside is provided at the center of the bottom wall of the cleaning container (1); a water storage container (31) is provided below the cleaning container (1), and a filter screen (32) is detachably installed at the top opening of the water storage container (31).