Waste tire recycling machine
By using sealed bearings and a sealed structure in the waste tire recycling machine, combined with an electric telescopic rod and gear combination, the problem of cable loosening caused by the movement of the motor in a water environment is solved, achieving waterproof protection of the motor and improving cleaning efficiency.
Patent Information
- Application Number
- CN202422805265.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-11-18
AI Technical Summary
In existing waste tire recycling machines, the electric hydraulic cylinder drives the forward and reverse motor to move back and forth in the housing, which can cause the cable to loosen, easily leading to motor burnout, leakage, and moisture, thus reducing its service life.
Design a waste tire recycling machine that uses sealed bearings and a sealed structure to ensure that the motor and cables are kept away from water. The brush is moved and cleaned by a combination of electric telescopic rods and gears, thus preventing the motor from moving in the water environment.
It effectively prevents the motor from being damaged by moisture, improves the service life and cleaning efficiency of the equipment, and ensures the cleaning effect.
Smart Images

Figure CN223532794U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of waste tire recycling technology, specifically a waste tire recycling machine. Background Technology
[0002] Tires are circular, elastic rubber products that are mounted on various vehicles or machinery and roll on the ground. They are usually mounted on metal rims, support the vehicle body, buffer external impacts, make contact with the road surface, and ensure the vehicle's driving performance. After tires are subjected to high loads such as friction or compression for a long time, their service life will gradually decrease, and they will need to be replaced regularly. Therefore, waste tires need to be recycled. This provides a waste tire recycling machine.
[0003] For example, a waste tire recycling cleaning device with announcement number "CN221736776U" uses a spray nozzle to flush and clean the inner ring of the tire, solving the technical problem that existing cleaning devices cannot simultaneously clean the inside and outside of waste tires, thus affecting cleaning efficiency. However, in the above-mentioned device, during tire cleaning, an electric hydraulic cylinder drives a reciprocating motor to move back and forth within the housing. This can cause the cables connected to the motor to loosen. Since moisture exists inside the housing, this can easily lead to the motor burning out, leaking electricity, or becoming damp, thus reducing its service life. Utility Model Content
[0004] The purpose of this utility model is to solve the problem that the reciprocating movement of the forward and reverse motor in the housing caused by the electric hydraulic cylinder can lead to loosening of the cable connected to the forward and reverse motor. Due to the moisture inside the housing, the forward and reverse motor is prone to burnout, leakage, and dampness, which reduces its service life. Therefore, a waste tire recycling machine is proposed.
[0005] To achieve the above objectives, this utility model provides the following technical solution:
[0006] Design a waste tire recycling machine, including a shell and a mesh plate. The lower end of the inner wall of the shell is fixedly connected to the mesh plate. The upper end of the inner wall of the shell is provided with a waste tire recycling adjustment structure. The middle of the upper end of the outer wall of the shell is provided with a waste tire recycling cleaning structure. Two cylinders are fixedly connected to the upper end of the outer wall of the mesh plate. A water outlet is provided at the lower right end of the shell. A box door is installed in the middle of the shell, and a glass window is installed in the middle of the box door.
[0007] Preferably, the waste tire recycling and cleaning structure includes a motor, a first gear is fixedly connected to the end of the motor output shaft, the outer wall of the first gear is meshed with two second gears, a first vertical tube is fixedly connected to the inner wall of the second gear, and a first circular plate is fixedly connected to the lower end of the outer wall of the first vertical tube.
[0008] Preferably, the outer wall of the motor is fixedly connected to the housing via a bracket, and the first gear rotating shaft is rotatably connected to the housing via a sealed bearing.
[0009] Preferably, the second gear rotating shaft is rotatably connected to the outer casing via a sealed bearing, and the outer wall of the first vertical tube is rotatably connected to the outer casing via a sealed bearing.
[0010] Preferably, the waste tire recycling adjustment structure includes an electric telescopic rod, the output end of which is fixedly connected to a plate, the inner wall of which is rotatably connected to two second vertical pipes, the upper end of the outer wall of the second vertical pipe is fixedly connected to a second circular plate, the upper end of the outer wall of the second circular plate is fixedly connected to a plurality of sliding rods, the outer wall of the sliding rods is slidably connected to a first circular plate, and the upper end of the inner wall of the second vertical pipe is sealed to the first vertical pipe.
[0011] Preferably, the lower end of the second vertical tube is fixedly connected to the brush, and the bottoms of the two electric telescopic rods are fixedly connected to the outer casing.
[0012] The waste tire recycling machine proposed in this utility model has the following advantages: Through the cooperation of the waste tire recycling adjustment structure and the waste tire recycling cleaning structure, two electric telescopic rods are simultaneously activated to move the adjustment plate downwards. This, in turn, causes the second vertical tube to slide downwards on the outer wall of the first vertical tube. The second vertical tube then moves the second circular plate downwards, which in turn causes the sliding rod to slide downwards on the outer wall of the first circular plate. The motor starts, driving the first gear to rotate, which in turn drives two second gears to rotate. The second gears then cause the first vertical tube to rotate within the outer casing via sealed bearings. The rotation of the first vertical tube causes the first circular plate, sliding rod, and second circular plate to rotate. The second circular plate then causes the second vertical tube to rotate within the plate via bearings. Finally, the two electric telescopic rods move the brushes downwards to cover the tire. The motor then drives the two brushes to rotate, cleaning the tire and reducing the amount of mud and impurities adhering to its outer wall, making subsequent tire recycling easier. Simultaneously, during the cleaning process, the motor and electric telescopic rods are fixed in position and kept away from moisture, avoiding the problems of loose cable connections caused by motor movement in existing technologies, which can lead to burnout, leakage, moisture damage, and reduced service life. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of this utility model;
[0014] Figure 2 for Figure 1 A front sectional view;
[0015] Figure 3 for Figure 2 Enlarged view of A in the middle;
[0016] Figure 4 for Figure 2Enlarged view of B in the middle;
[0017] Figure 5 for Figure 2 A magnified view of C.
[0018] In the diagram: 1. Waste tire recycling and cleaning structure, 101. Motor, 102. First gear, 103. Second gear, 104. First vertical pipe, 105. First circular plate; 2. Waste tire recycling adjustment structure, 201. Electric telescopic rod, 202. Plate, 203. Second vertical pipe, 204. Second circular plate, 205. Slide rod, 3. Outer shell, 4. Brush, 5. Mesh plate, 6. Cylinder, 7. Water outlet, 8. Box door. Detailed Implementation
[0019] The present invention will be further described below with reference to the accompanying drawings:
[0020] See attached document Figure 1-5 In this embodiment, a waste tire recycling machine includes a shell 3 and a mesh plate 5. The lower end of the inner wall of the shell 3 is fixedly connected to the mesh plate 5 by screws, which can be disassembled if necessary. The upper end of the inner wall of the shell 3 is provided with a waste tire recycling adjustment structure 2, and the middle part of the upper end of the outer wall of the shell 3 is provided with a waste tire recycling cleaning structure 1. Two cylinders 6 are fixedly connected to the upper end of the outer wall of the mesh plate 5.
[0021] A water outlet 7 is provided at the lower right end of the outer casing 3. A valve is installed in the middle of the water outlet 7. A box door 8 is installed in the middle of the outer casing 3. The box door 8 is fastened to the outer casing 3 by a latch. A sealing gasket is fixed at the connection to prevent water leakage. A glass window 9 is installed in the middle of the box door 8. The outer wall of the motor 101 is fixedly connected to the outer casing 3 by a bracket. The rotating shaft of the first gear 102 is rotatably connected to the outer casing 3 by a sealed bearing. The first gear 102 can rotate inside the outer casing 3 by a sealed bearing. The rotating shaft of the second gear 103 is rotatably connected to the outer casing 3 by a sealed bearing.
[0022] The second gear 103 can rotate inside the housing 3 via a sealed bearing. The outer wall of the first vertical tube 104 is rotatably connected to the housing 3 via a sealed bearing. The first vertical tube 104 can rotate inside the housing 3 via a sealed bearing. The lower end of the second vertical tube 203 is fixedly connected to the brush 4. The inner wall of the brush 4 is machined with multiple through holes for water passage. The bottom of the two electric telescopic rods 201 is fixedly connected to the housing 3.
[0023] See attached document Figure 1-5The waste tire recycling and cleaning structure 1 includes a motor 101, which is a servo motor. A first gear 102 is fixedly connected to the end of the output shaft of the motor 101. The motor 101 can drive the first gear 102 to rotate. The outer wall of the first gear 102 is meshed with two second gears 103. The rotation of the first gear 102 can drive the second gears 103 to rotate. A first vertical tube 104 is fixedly connected to the inner wall of the second gear 103. A first circular plate 105 is fixedly connected to the lower end of the outer wall of the first vertical tube 104.
[0024] See attached document Figure 2-4 The waste tire recycling adjustment structure 2 includes an electric telescopic rod 201. The electric telescopic rod 201 can meet the working needs according to actual requirements. The output end of the electric telescopic rod 201 is fixedly connected to a plate 202. The inner wall of the plate 202 is rotatably connected to two second vertical pipes 203. The second vertical pipes 203 can rotate within the plate 202 through bearings.
[0025] A second circular plate 204 is fixedly connected to the upper end of the outer wall of the second vertical tube 203. A plurality of sliding rods 205 are fixedly connected to the upper end of the outer wall of the second circular plate 204. The outer wall of the sliding rod 205 is slidably connected to the first circular plate 105. The sliding rod 205 can slide inside the first circular plate 105. The upper end of the inner wall of the second vertical tube 203 is sealed to the first vertical tube 104. A sealing ring is fixed at the connection between the second vertical tube 203 and the first vertical tube 104 to ensure relative sealing during the process.
[0026] Working principle:
[0027] Waste tire recycling and adjustment work:
[0028] When it is necessary to recycle and clean waste tires, open the box door 8 and place the tires onto the cylinder 6 one by one. Then close the box door 8. A sealing gasket is fixed at the connection between the box door 8 and the outer shell 3 to ensure relative airtightness and prevent water leakage. Then connect the power cords of the two electric telescopic rods 201 to the control board at the same time, and connect the external power supply of the two electric telescopic rods 201. The two electric telescopic rods 201 start at the same time, driving the plate 202 to move downward. Then, the plate 202 drives the second vertical tube 203 to slide downward on the outer wall of the first vertical tube 104. A sealing ring is fixed at the connection between the second vertical tube 203 and the first vertical tube 104 to ensure relative airtightness. During this process, the second vertical tube 203 will drive the second circular plate 204 to move downward. Then, the second circular plate 204 drives the slide rod 205 to slide downward on the outer wall of the first circular plate 104. The downward movement of the second vertical tube 203 drives the brush 4 to move downward and cover the tire. This movement can adjust the position of the brush 4 to facilitate the subsequent cleaning of the tire.
[0029] Waste tire recycling and cleaning work:
[0030] After the brush 4 covers the tire, the two first vertical pipes 104 are connected to an external water tank, and an external water pump is used to draw water into the first vertical pipes 104. The water is then transported through the first vertical pipes 104 to the second vertical pipes 203 and sprayed onto the tire through multiple through holes machined into the inner wall of the nozzle 4. At the same time, the external power supply of the motor 101 is turned on, and the motor 101 starts to drive the first gear 102 to rotate. In turn, the rotation of the first gear 102 drives the two second gears 103 to rotate. The rotation of the second gears 103 drives the first vertical pipe 104 to pass through the sealed casing 3. The bearing rotates, and the first vertical tube 104 rotates, driving the first circular plate 105, the slide rod 205, and the second circular plate 204 to rotate. The second circular plate 204 drives the second vertical tube 203 to rotate within the plate 202 via the bearing. The second vertical tube 203 drives the brush 4 to rotate. This movement allows the brush 4 and the sprayed water to clean the tire, reducing mud and impurities on the tire surface and making it easier for the tire to be recycled later. The cleaning wastewater will flow through the mesh plate 6 to the lower end of the outer shell 3, and the valve in the middle of the outlet 7 can be opened to drain the water.
[0031] Although the present invention has been illustrated and described with reference to preferred embodiments, those skilled in the art should understand that various changes in form and detail are possible within the scope of the claims.
Claims
1. A waste tire recycling machine, comprising a shell (3) and a mesh plate (5), wherein the lower end of the inner wall of the shell (3) is fixedly connected to the mesh plate (5), characterized in that: The upper end of the inner wall of the outer shell (3) is provided with a waste tire recycling adjustment structure (2), the middle part of the upper end of the outer wall of the outer shell (3) is provided with a waste tire recycling cleaning structure (1), the upper end of the outer wall of the mesh plate (5) is fixedly connected with two cylinders (6), the lower right end of the outer shell (3) is provided with a water outlet (7), the middle part of the outer shell (3) is provided with a box door (8), and the middle part of the box door (8) is provided with a glass window (9).
2. The waste tire recycling machine according to claim 1, characterized in that: The waste tire recycling and cleaning structure (1) includes a motor (101), the output shaft end of the motor (101) is fixedly connected to a first gear (102), the outer wall of the first gear (102) is meshed with two second gears (103), the inner wall of the second gear (103) is fixedly connected to a first vertical tube (104), and the lower end of the outer wall of the first vertical tube (104) is fixedly connected to a first circular plate (105).
3. The waste tire recycling machine according to claim 2, characterized in that: The outer wall of the motor (101) is fixedly connected to the outer shell (3) through a bracket, and the rotating shaft of the first gear (102) is rotatably connected to the outer shell (3) through a sealed bearing.
4. The waste tire recycling machine according to claim 2, characterized in that: The rotating shaft of the second gear (103) is rotatably connected to the outer shell (3) through a sealed bearing, and the outer wall of the first vertical tube (104) is rotatably connected to the outer shell (3) through a sealed bearing.
5. The waste tire recycling machine according to claim 2, characterized in that: The waste tire recycling adjustment structure (2) includes an electric telescopic rod (201), the output end of which is fixedly connected to a plate (202). The inner wall of the plate (202) is rotatably connected to two second vertical pipes (203). The upper end of the outer wall of the second vertical pipe (203) is fixedly connected to a second circular plate (204). The upper end of the outer wall of the second circular plate (204) is fixedly connected to multiple sliding rods (205). The outer wall of the sliding rods (205) is slidably connected to the first circular plate (105). The upper end of the inner wall of the second vertical pipe (203) is sealed to the first vertical pipe (104).
6. The waste tire recycling machine according to claim 5, characterized in that: The lower end of the second vertical tube (203) is fixedly connected to the brush (4), and the bottom of the two electric telescopic rods (201) is fixedly connected to the outer shell (3).
Citation Information
Patent Citations
Cleaning device for waste tire recycling
CN221736776U