Digital tire recycling service system

By designing an automated tire recycling service system, the problem of manual loading and unloading of workers during tire renovation is solved, and the tires are automatically cleaned, polished and patterned scraped, improving the renovation efficiency and intelligence.

CN120269865AInactive Publication Date: 2025-07-08SHANGHAI RONGCHANG INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202510705882.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-29
Publication Date
2025-07-08
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the renovation of existing tires, staff need to manually load and unload and convey the materials, resulting in high working strength and low efficiency, making it difficult to efficiently clean and polish waste tires.

Method used

A digital tire recycling service system was designed, and the tire loading, cleaning, internal and external polishing and pattern scraping were automated using electric telescopic rods, servo motors and sliding mechanisms. The holes were identified and sorted through the camera to achieve automated operation of the entire process.

Benefits of technology

It reduces the work intensity of staff, improves cleaning and grinding efficiency, and realizes automated and intelligent processing of tire refurbishment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a digital tire recycling service system, and relates to the technical field of tire retreading, the digital tire recycling service system comprises a base, the top of the base is fixedly connected with a feeding hopper, and the top of the base is fixedly connected with a cleaning cylinder; the tire retreading device has the beneficial effects that through mutual cooperation of a feeding hopper, a feeding groove, an inclined hopper, a first electric telescopic rod, a first connecting block and a baffle, tires needing to be retreaded can be conveniently stored; therefore, the tires can be conveniently moved and fed subsequently through mutual cooperation of a threaded rod, a first sliding block, a first servo motor, a first mounting rod, a second electric telescopic rod, a first mounting disc, a third electric telescopic rod and a first arc-shaped block, and then the tires are gradually cleaned through a cleaning cylinder, a first grinding box and a second grinding box; according to the tire polishing device, the inner ring of the tire is polished, and then the outer tire of the tire is polished, so that workers do not need to discharge and feed the tire manually when each step is completed, and the working intensity of the workers is reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of tire refurbishment, and particularly to a digital tire recycling service system. Background Art

[0002] At present, with the continuous development of China's economy, the development scale of automobiles, trucks, etc. is also constantly expanding, resulting in a sharp increase in the replacement volume of tires, and further leading to a large proportion increase in the amount of discarded waste tires. Due to the strong heat resistance, mechanical resistance and degradation resistance of waste tires, they will not naturally decompose for decades, and are known as "black pollution" in the industry. Especially because they are not easily degradable and produce a large amount of soot and carbon monoxide after burning, seriously polluting the air.

[0003] At present, tire refurbishment is the main way for developed countries to recycle waste tires. At present, before refurbishing tires, it is necessary to first clean and grind the tires, and also repair the tires with holes to prevent the tires from bursting after refurbishment. When performing these several processes, workers need to manually load and unload and convey the tires, increasing the working intensity of the workers and reducing the efficiency of cleaning and grinding. For this reason, we propose a digital tire recycling service system Summary of the Invention

[0004] Aiming at the deficiencies of the prior art, the present invention provides a digital tire recycling service system, which solves the problems raised in the above background art.

[0005] To achieve the above objectives, the present invention is realized through the following technical solutions: A digital tire recycling service system includes a base, a feeding hopper fixedly connected to the top of the base, a cleaning cylinder fixedly connected to the top of the base, a first grinding box fixedly connected to the top of the base, a second grinding box fixedly connected to the top of the base, two corresponding placement racks fixedly connected to the top of the base, a first sliding groove opened inside the base, a sliding mechanism provided inside the first sliding groove, a first mounting rod inserted and fixedly connected to one side of the sliding mechanism, a second electric telescopic rod fixedly installed inside the first mounting rod, a first mounting plate fixedly connected to the output end of the second electric telescopic rod, two corresponding third electric telescopic rods fixedly installed inside the first mounting plate, and a first arc-shaped block fixedly connected to the output end of the third electric telescopic rod.

[0006] Optionally, the sliding mechanism includes a threaded rod and a first slider, the threaded rod is rotatably connected to the inside of the first slide groove through a bearing, the first slider is slidably connected to the inside of the first slide groove, the threaded rod passes through the first slider and is threadedly connected to the first slider, a first servo motor is fixedly installed inside the base, the output end of the first servo motor is fixedly connected to the threaded rod, the first mounting rod is inserted into one side of the first slider, and the first mounting rod can be driven to move by the sliding mechanism, thereby facilitating the movement of the tire.

[0007] Optionally, a second plug-in slot is provided inside the first slider, a first plug-in slot is provided inside the first mounting rod, a plug-in block is plugged into the first plug-in slot, one end of the plug-in block is plugged into the second plug-in slot, two corresponding fixing bolts are provided inside the plug-in block, the fixing bolts pass through the first mounting rod and are threadedly connected to the first slider, and the first plug-in slot, the second plug-in slot, the plug-in block and the fixing bolt cooperate with each other, thereby facilitating the assembly and disassembly of the first mounting rod, and facilitating its inspection and replacement, thereby improving the practicality of the digital tire recycling service system.

[0008] Optionally, a loading trough is provided inside the loading hopper, an inclined bucket is provided inside the loading hopper and on one side of the loading trough, two corresponding first electric telescopic rods are fixedly installed inside the loading hopper, the output ends of the first electric telescopic rods are fixedly connected to the first connecting blocks, and a baffle is fixedly connected between the two first connecting blocks. Through the mutual cooperation of the loading trough, the inclined bucket, the first electric telescopic rod, the first connecting block and the baffle, the tires that need to be refurbished can be stored conveniently, thereby facilitating automatic loading of the tires.

[0009] Optionally, two corresponding fourth electric telescopic rods are fixedly installed inside the cleaning cylinder, and a cleaning brush is fixedly connected to the output end of the fourth electric telescopic rod, a water spray pipe is fixedly connected to the inside of the cleaning cylinder, a nozzle is fixedly connected to the inside of the water spray pipe, a connecting pipe is fixedly connected to the inside of the water spray pipe, a water pump is provided on the outside of the connecting pipe, the connecting pipe passes through the cleaning cylinder and extends into a water tank, a plurality of filter holes are provided inside the cleaning cylinder, a first water collecting bucket is provided inside the cleaning cylinder and on one side of the filter holes, and a sewage discharge bucket is fixedly connected to the inside of the first water collecting bucket.

[0010] Optionally, two corresponding second mounting rods are fixedly connected to the top of the first grinding box. A fifth electric telescopic rod is fixedly installed inside the second mounting rod, and a second arc-shaped block is fixedly connected to the output end of the fifth electric telescopic rod. A third mounting rod is fixedly connected to the top of the first grinding box. A first rotating disk is rotatably connected to one side of the third mounting rod. The output end of the first rotating disk is fixedly connected to a sixth electric telescopic rod, and the output end of the sixth electric telescopic rod is fixedly connected to a second mounting disk. Two corresponding seventh electric telescopic rods are fixedly connected inside the second mounting disk, and a first grinding block is fixedly connected to the output end of the seventh electric telescopic rod. A second servo motor is fixedly connected inside the third mounting rod, and the output end of the second servo motor is fixedly connected to the first rotating disk.

[0011] Optionally, a third chute is provided inside the second grinding box. An eighth electric telescopic rod is fixedly installed inside the third chute, and a third slider is fixedly connected to the output end of the eighth electric telescopic rod. A scraper is fixedly connected to one side of the third slider. Two corresponding ninth electric telescopic rods are fixedly installed inside the second grinding box, and a support arc plate is fixedly connected to the output end of the ninth electric telescopic rod. A second rotating disk is rotatably connected inside the second grinding box. A tenth electric telescopic rod is fixedly installed on one side of the second rotating disk, and the output end of the tenth electric telescopic rod is fixedly connected to a third mounting disk. Two corresponding eleventh electric telescopic rods are fixedly installed inside the third mounting disk, and a fourth arc-shaped block is fixedly connected to the output end of the eleventh electric telescopic rod. A third servo motor is fixedly installed inside the second grinding box, and the output end of the third servo motor is fixedly connected to the second rotating disk. Through the mutual cooperation of the third chute, the eighth electric telescopic rod, the third slider, the scraper, the ninth electric telescopic rod, the support arc plate, the second rotating disk, the tenth electric telescopic rod, the third servo motor, the third mounting disk, the eleventh electric telescopic rod, and the fourth arc-shaped block, the rubber on the outer side of the tire can be removed, facilitating subsequent processing and refurbishment.

[0012] Optionally, a blanking chute is provided inside the second grinding box. A collecting hopper is provided on the top of the base and on one side of the second grinding box, and the collecting hopper cooperates with the blanking chute.

[0013] Optionally, a camera is fixedly installed inside the second grinding box. A control console is provided on the top of the base. The control console is electrically connected to the first servo motor, the first electric telescopic rod, the second electric telescopic rod, the third electric telescopic rod, the fourth electric telescopic rod, the fifth electric telescopic rod, the second servo motor, the seventh electric telescopic rod, the eighth electric telescopic rod, the ninth electric telescopic rod, the camera, the eleventh electric telescopic rod, the tenth electric telescopic rod, the drive motor, and the third servo motor.

[0014] The present invention provides a digital tire recycling service system, which has the following beneficial effects: 1. The digital tire recycling service system, through the mutual cooperation of the feeding hopper, feeding chute, inclined hopper, first electric telescopic rod, first connecting block, and baffle, facilitates the storage of tires to be retreaded, thus facilitating subsequent movement and feeding of the tires through the mutual cooperation of the threaded rod, first slider, first servo motor, first mounting rod, second electric telescopic rod, first mounting plate, third electric telescopic rod, and first arc block. Then, the tire is gradually cleaned through the cleaning cylinder, first grinding box, and second grinding box, and then the inner ring of the tire is ground, and then the outer tire is ground. There is no need for workers to manually load and unload at the end of each step, reducing the working intensity of the workers.

[0015] 2. The digital tire recycling service system, through the mutual cooperation of the ninth electric telescopic rod and the supporting arc plate, can lift the tire inside the second grinding box, thus facilitating the tenth electric telescopic rod to extend and move the third mounting plate to the inner side of the tire. Then, through a plurality of eleventh electric telescopic rods and fourth arc blocks, the tire can be limited and fixed from the inner side of the tire. Then, the third servo motor drives the second rotating disk, tenth electric telescopic rod, third mounting plate, eleventh electric telescopic rod, and fourth arc block to rotate, thereby driving the tire to rotate. Then, the eighth electric telescopic rod moves the third slider and the scraper, making the scraper contact the outer side of the tire, thereby scraping off the tire pattern, thus facilitating subsequent retreading of the tire. At the same time, the camera can take pictures of the tire after scraping off the tread pattern, and then transmit the data to the console. The console processes the captured data to identify the holes on the tread, and moves the tires with holes and without holes to the corresponding internal parts of the placement racks respectively, facilitating subsequent manual repair or further retreading treatment. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic structural diagram of the present invention; Figure 2 is a schematic structural diagram of the sliding mechanism of the present invention; Figure 3 is a schematic structural diagram of the feeding hopper of the present invention; Figure 4 is a schematic structural diagram of the first fixing mechanism of the present invention; Figure 5 is a schematic internal structure diagram of the cleaning cylinder of the present invention; Figure 6 is a schematic internal structure diagram of the first grinding box of the present invention; Figure 7 is a schematic structural diagram of the lifting mechanism of the present invention; Figure 8Schematic diagram of the internal structure of the second grinding box of the present invention.

[0017] In the figure: 1, base; 2, feeding hopper; 3, cleaning cylinder; 4, first grinding box; 5, second grinding box; 6, placement rack; 7, control console; 8, first chute; 9, threaded rod; 10, first slider; 11, first servo motor; 12, first mounting rod; 13, feeding chute; 14, inclined hopper; 15, first electric telescopic rod; 16, first connecting block; 17, baffle; 19, first insertion slot; 20, second insertion slot; 21, insertion block; 22, second electric telescopic rod; 23, first mounting plate; 24, third electric telescopic rod; 25, first arc-shaped block; 26, fourth electric telescopic rod; 27, cleaning brush; 28, water spray pipe; 29, spray head; 30, connecting pipe; 31, filter hole; 32, first water collecting hopper; 33, sewage hopper; 34, second mounting rod; 35, fifth electric telescopic rod; 36, second arc-shaped block; 37, third mounting rod; 38, first rotating disk; 39, sixth electric telescopic rod; 40, second mounting plate; 41, seventh electric telescopic rod; 42, first grinding block; 43, second servo motor; 44, third chute; 45, eighth electric telescopic rod; 46, third slider; 47, scraper; 48, ninth electric telescopic rod; 49, supporting arc plate; 50, blanking chute; 51, camera; 52, collecting hopper; 53, second rotating disk; 54, tenth electric telescopic rod; 55, third servo motor; 56, third mounting plate; 57, eleventh electric telescopic rod; 58, fourth arc-shaped block. Detailed implementation manners

[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.

[0019] Please refer to Figures 1 to 8 , the present invention provides a technical solution: a digital tire recycling service system, including a base 1, a feeding hopper 2 fixedly connected to the top of the base 1, a cleaning cylinder 3 fixedly connected to the top of the base 1, a first grinding box 4 fixedly connected to the top of the base 1, a second grinding box 5 fixedly connected to the top of the base 1, two corresponding placement racks 6 fixedly connected to the top of the base 1, a first chute 8 opened inside the base 1, a sliding mechanism provided inside the first chute 8, a first mounting rod 12 fixedly connected to one side of the sliding mechanism in an inserted manner, a second electric telescopic rod 22 fixedly installed inside the first mounting rod 12, a first mounting plate 23 fixedly connected to the output end of the second electric telescopic rod 22, and two corresponding third electric telescopic rods 24 fixedly installed inside the first mounting plate 23, and a first arc-shaped block 25 fixedly connected to the output end of the third electric telescopic rod 24; The sliding mechanism includes a threaded rod 9 and a first slider 10. The threaded rod 9 is rotatably connected to the inside of the first chute 8 through a bearing. The first slider 10 is slidably connected to the inside of the first chute 8. The threaded rod 9 passes through the first slider 10 and is threadedly connected thereto. A first servo motor 11 is fixedly installed inside the base 1. The output end of the first servo motor 11 is fixedly connected to the threaded rod 9. A first mounting rod 12 is inserted into one side of the first slider 10. The sliding mechanism can drive the first mounting rod 12 to move, so as to facilitate the movement of the tire. When in use, start the first servo motor 11 to drive the threaded rod 9 to rotate, then drive the first slider 10 to slide inside the first chute 8, and then drive the first mounting rod 12 to move through the insertion block 21. At the same time, drive the moving wheel at the bottom of the first mounting rod 12 to move inside the moving groove opened inside the base 1, so as to assist the first mounting rod 12 to move on the top of the base 1; A second insertion groove 20 is opened inside the first slider 10. A first insertion groove 19 is opened inside the first mounting rod 12. An insertion block 21 is inserted into the first insertion groove 19. One end of the insertion block 21 is inserted into the second insertion groove 20. Two corresponding fixing bolts are arranged inside the insertion block 21. The fixing bolts pass through the first mounting rod 12 and are threadedly connected to the first slider 10. Through the mutual cooperation of the first insertion groove 19, the second insertion groove 20, the insertion block 21 and the fixing bolts, it is convenient to install and disassemble the first mounting rod 12, facilitate its maintenance and replacement, and improve the practicability of the digital tire recycling service system; A feeding chute 13 is opened inside the feeding hopper 2. An inclined hopper 14 is opened inside the feeding hopper 2 and on one side of the feeding chute 13. Two corresponding first electric telescopic rods 15 are fixedly installed inside the feeding hopper 2. The output ends of the first electric telescopic rods 15 are fixedly connected to a first connecting block 16. A baffle 17 is fixedly connected between the two first connecting blocks 16. Through the mutual cooperation of the feeding chute 13, the inclined hopper 14, the first electric telescopic rods 15, the first connecting block 16 and the baffle 17, it is convenient to store the tires to be retreaded, so as to facilitate the automatic feeding of the tires; Inside the cleaning cylinder 3, two corresponding fourth electric telescopic rods 26 are fixedly installed. The output end of the fourth electric telescopic rod 26 is fixedly connected to a cleaning brush 27. Inside the cleaning cylinder 3, a water spray pipe 28 is fixedly connected. Inside the water spray pipe 28, a spray head 29 is fixedly connected. Inside the water spray pipe 28, a connecting pipe 30 is fixedly connected. A water pump is arranged on the outer side of the connecting pipe 30. The connecting pipe 30 penetrates through the cleaning cylinder 3 and extends into the water tank. A plurality of filter holes 31 are opened inside the cleaning cylinder 3. Inside the cleaning cylinder 3 and on one side of the filter holes 31, a first water collecting hopper 32 is opened. Inside the first water collecting hopper 32, a sewage hopper 33 is fixedly connected. The clean water in the water tank is conveyed to the inside of the water spray pipe 28 through the connecting pipe 30 and then sprayed out through the spray head 29 to clean the surface of the tire. At the same time, extend the fourth electric telescopic rod 26 to make the cleaning brush 27 contact the surface of the tire. At the same time, start the drive motor inside the first mounting rod 12 to drive the second electric telescopic rod 22 and the first mounting plate 23 to rotate through the turntable, thereby driving the tire to rotate, so as to clean the surface of the tire; On the top of the first grinding box 4, two corresponding second mounting rods 34 are fixedly connected. Inside the second mounting rod 34, a fifth electric telescopic rod 35 is fixedly installed. The output end of the fifth electric telescopic rod 35 is fixedly connected to a second arc-shaped block 36. On the top of the first grinding box 4, a third mounting rod 37 is fixedly connected. One side of the third mounting rod 37 is rotatably connected to a first rotating disk 38. The output end of the first rotating disk 38 is fixedly connected to a sixth electric telescopic rod 39. The output end of the sixth electric telescopic rod 39 is fixedly connected to a second mounting plate 40. Inside the second mounting plate 40, two corresponding seventh electric telescopic rods 41 are fixedly connected. The output end of the seventh electric telescopic rod 41 is fixedly connected to a first grinding block 42. Inside the third mounting rod 37, a second servo motor 43 is fixedly connected. The output end of the second servo motor 43 is fixedly connected to the first rotating disk 38. After the tire is cleaned, move the tire to the first grinding box 4 through the sliding mechanism. Then start the two fifth electric telescopic rods 35 to extend, and clamp the outer side of the tire through the two second arc-shaped blocks 36. Then retract the second electric telescopic rod 22 to drive the first mounting plate 23 to reset. Then start the sixth electric telescopic rod 39 to drive the second mounting plate 40 to move to the inner circle of the tire. Then start the two seventh electric telescopic rods 41 to extend, so that the two first grinding blocks 42 contact the inner circle of the tire, thereby preliminarily grinding the inner circle of the tire. After grinding, clamp and fix the tire from the inside through the first mounting plate 23, the third electric telescopic rod 24 and the first arc-shaped block 25 again, and then transport it through the moving mechanism; The interior of the second grinding box 5 is provided with a third sliding groove 44. Inside the third sliding groove 44, an eighth electric telescopic rod 45 is fixedly installed. The output end of the eighth electric telescopic rod 45 is fixedly connected to a third slider 46. One side of the third slider 46 is fixedly connected to a scraping knife 47. Two corresponding ninth electric telescopic rods 48 are fixedly installed inside the second grinding box 5. The output end of the ninth electric telescopic rod 48 is fixedly connected to a supporting arc plate 49. The interior of the second grinding box 5 is rotatably connected to a second rotating disk 53. One side of the second rotating disk 53 is fixedly installed with a tenth electric telescopic rod 54. The output end of the tenth electric telescopic rod 54 is fixedly connected to a third mounting disk 56. Inside the third mounting disk 56, two corresponding eleventh electric telescopic rods 57 are fixedly installed. The output end of the eleventh electric telescopic rod 57 is fixedly connected to a fourth arc-shaped block 58. A third servo motor 55 is fixedly installed inside the second grinding box 5. The output end of the third servo motor 55 is fixedly connected to the second rotating disk 53. Through the mutual cooperation of the third sliding groove 44, the eighth electric telescopic rod 45, the third slider 46, the scraping knife 47, the ninth electric telescopic rod 48, the supporting arc plate 49, the second rotating disk 53, the tenth electric telescopic rod 54, the third servo motor 55, the third mounting disk 56, the eleventh electric telescopic rod 57 and the fourth arc-shaped block 58, the rubber on the outer side of the tire can be removed, facilitating subsequent processing and refurbishment; A material discharging groove 50 is provided inside the second grinding box 5. A collecting hopper 52 is arranged at the top of the base 1 and on one side of the second grinding box 5. The collecting hopper 52 cooperates with the material discharging groove 50; A camera 51 is fixedly installed inside the second grinding box 5. A control console 7 is arranged at the top of the base 1. The control console 7 is electrically connected to the first servo motor 11, the first electric telescopic rod 15, the second electric telescopic rod 22, the third electric telescopic rod 24, the fourth electric telescopic rod 26, the fifth electric telescopic rod 35, the second servo motor 43, the seventh electric telescopic rod 41, the eighth electric telescopic rod 45, the ninth electric telescopic rod 48, the camera 51, the eleventh electric telescopic rod 57, the tenth electric telescopic rod 54, the drive motor and the third servo motor 55.

[0020] In summary, for the digital tire recycling service system, when in use, the staff first vertically arrange multiple tires inside the inclined hopper 14 and use the baffle 17 to block them. Then, through the console 7 for presetting. When loading, start the two first electric telescopic rods 15 to rise, driving the first connecting block 16 and the baffle 17 to rise, thus releasing the limit on the tires, enabling one tire to roll into the interior of the loading chute 13 under the action of inertia. Then, reset the baffle 17 again to block the subsequent tires. Then, start the second electric telescopic rod 22 to extend through the console 7, move the first mounting plate 23 to the inner side of the tire, and then start multiple third electric telescopic rods 24 to extend, making multiple first arc-shaped blocks 25 contact the inner side of the tire, thereby limiting the tire. Then, start the second electric telescopic rod 22 to retract, driving the tire to move to the outside of the loading chute 13. Then, start the first servo motor 11 through the console 7 to drive the threaded rod 9 to rotate, and then drive the first slider 10 to slide inside the first chute 8, and then drive the tire to move through the first mounting rod 12. First, move it to the processing position of the cleaning cylinder 3, and then move the tire into the cleaning cylinder 3 through the second electric telescopic rod 22. Then, start the drive motor through the console 7, drive the second electric telescopic rod 22 to rotate through the turntable, and then drive the tire to rotate. At the same time, convey the cleaning water to the spray pipe 28 through the connecting pipe 30 and spray it onto the outer side of the tire through the spray head 29. At the same time, start two fourth electric telescopic rods 26 to extend through the console 7 to drive two cleaning brushes 27 to contact the outer side of the tire, thereby cleaning the outer side of the tire. Then, drive the tire to move to the outside of the cleaning cylinder 3 through the second electric telescopic rod 22. Subsequently, move the tire through the sliding mechanism and move it to the processing position of the first grinding box 4. Again, move the tire to the top of the first grinding box 4 through the second electric telescopic rod 22. Then, start two fifth electric telescopic rods 35 to drive two second arc-shaped blocks 36 to clamp the outer side of the tire through the console 7. Then, release the limit on the tire by the third electric telescopic rod 24. Then, start the second electric telescopic rod 22 to retract, and then start the sixth electric telescopic rod 39 to extend, move the second mounting plate 40 to the inside of the tire, start the second servo motor 43 to drive the sixth electric telescopic rod 39 and the second mounting plate 40 to rotate through the first rotating plate 38. At the same time, start the seventh electric telescopic rod 41 to extend to contact the inner side of the tire and grind the inner side of the tire. After grinding, limit the tire again through the third chute 44 and the eighth electric telescopic rod 45, and then move it through the sliding mechanism. Then, move the tire into the second grinding box 5. Then, start the ninth electric telescopic rod 48 to extend to lift the tire through the support arc plate 49, and then retract the second electric telescopic rod 22, so as to facilitate the tenth electric telescopic rod 54 to extend to move the third mounting plate 56 to the inner side of the tire, so that the tire can be limited and fixed from the inner side through multiple eleventh electric telescopic rods 57 and fourth arc-shaped blocks 58.Then, the third servo motor 55 drives the second rotating disk 53, the tenth electric telescopic rod 54, the third mounting disk 56, the eleventh electric telescopic rod 57, and the fourth arc-shaped block 58 to rotate, thereby driving the tire to rotate. Then, the eighth electric telescopic rod 45 moves the third slider 46 and the scraper 47 so that the scraper 47 contacts the outer side of the tire, thereby scraping off the tire tread pattern, which facilitates subsequent tire retreading. At the same time, the camera 51 can take pictures of the tire after scraping off the tread pattern, and then transmit the data to the console 7. The console 7 processes the captured data to identify the holes in the tread surface, and moves the tires with holes and without holes to the corresponding interior of the placement rack 6 respectively, which facilitates subsequent manual repair or further retreading treatment.

[0021] The above are only the preferred specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.

Claims

1. A digital tire recycling service system, comprising a base (1), characterized in that: The top of the base (1) is fixedly connected with a feeding hopper (2), the top of the base (1) is fixedly connected with a cleaning cylinder (3), the top of the base (1) is fixedly connected with a first grinding box (4), the top of the base (1) is fixedly connected with a second grinding box (5), the top of the base (1) is fixedly connected with two corresponding placement racks (6), a first sliding groove (8) is opened inside the base (1), a sliding mechanism is arranged inside the first sliding groove (8), a first mounting rod (12) is inserted and fixedly connected to one side of the sliding mechanism, a second electric telescopic rod (22) is fixedly installed inside the first mounting rod (12), the output end of the second electric telescopic rod (22) is fixedly connected with a first mounting disc (23), and two corresponding third electric telescopic rods (24) are fixedly installed inside the first mounting disc (23). The output end of the third electric telescopic rod (24) is fixedly connected with a first arc-shaped block (25).

2. The digital tire recycling service system according to claim 1, wherein: The sliding mechanism includes a threaded rod (9) and a first slider (10). The threaded rod (9) is rotatably connected to the inside of the first sliding groove (8) through a bearing. The first slider (10) is slidably connected to the inside of the first sliding groove (8). The threaded rod (9) penetrates through the first slider (10) and is threadedly connected to it. A first servo motor (11) is fixedly installed inside the base (1). The output end of the first servo motor (11) is fixedly connected with the threaded rod (9). The first mounting rod (12) is inserted into one side of the first slider (10).

3. The digital tire recycling service system according to claim 2, characterized in that: A second insertion groove (20) is opened inside the first slider (10), a first insertion groove (19) is opened inside the first mounting rod (12), an insertion block (21) is inserted into the first insertion groove (19), one end of the insertion block (21) is inserted into the second insertion groove (20), and two corresponding fixing bolts are arranged inside the insertion block (21). The fixing bolts penetrate through the first mounting rod (12) and are threadedly connected to the first slider (10).

4. The digital tire recycling service system according to claim 1, wherein: A feeding groove (13) is opened inside the feeding hopper (2), an inclined hopper (14) is opened inside the feeding hopper (2) and on one side of the feeding groove (13), two corresponding first electric telescopic rods (15) are fixedly installed inside the feeding hopper (2), the output end of the first electric telescopic rod (15) is fixedly connected with a first connecting block (16), and a baffle (17) is fixedly connected between the two first connecting blocks (16).

5. The digital tire recycling service system according to claim 1, characterized in that: Inside the cleaning cylinder (3), two corresponding fourth electric telescopic rods (26) are fixedly installed. The output end of the fourth electric telescopic rod (26) is fixedly connected to a cleaning brush (27). Inside the cleaning cylinder (3), a water spraying pipe (28) is fixedly connected. Inside the water spraying pipe (28), a spray head (29) is fixedly connected. Inside the water spraying pipe (28), a connecting pipe (30) is fixedly connected. A water pump is arranged on the outer side of the connecting pipe (30). The connecting pipe (30) penetrates through the cleaning cylinder (3) and extends into the water tank. A plurality of filter holes (31) are formed inside the cleaning cylinder (3). Inside the cleaning cylinder (3) and on one side of the filter holes (31), a first water collecting hopper (32) is formed. Inside the first water collecting hopper (32), a sewage hopper (33) is fixedly connected.

6. The digital tire recycling service system according to claim 1, characterized in that: On the top of the first grinding box (4), two corresponding second mounting rods (34) are fixedly connected. Inside the second mounting rod (34), a fifth electric telescopic rod (35) is fixedly installed. The output end of the fifth electric telescopic rod (35) is fixedly connected to a second arc-shaped block (36). On the top of the first grinding box (4), a third mounting rod (37) is fixedly connected. On one side of the third mounting rod (37), a first rotating disk (38) is rotatably connected. The output end of the first rotating disk (38) is fixedly connected to a sixth electric telescopic rod (39). The output end of the sixth electric telescopic rod (39) is fixedly connected to a second mounting disk (40). Inside the second mounting disk (40), two corresponding seventh electric telescopic rods (41) are fixedly connected. The output end of the seventh electric telescopic rod (41) is fixedly connected to a first grinding block (42). Inside the third mounting rod (37), a second servo motor (43) is fixedly connected. The output end of the second servo motor (43) is fixedly connected to the first rotating disk (38).

7. A digital tire recycling service system according to claim 1, characterized in that: A third chute (44) is provided inside the second grinding box (5). An eighth electric telescopic rod (45) is fixedly installed inside the third chute (44). The output end of the eighth electric telescopic rod (45) is fixedly connected to a third slider (46). One side of the third slider (46) is fixedly connected to a scraping knife (47). Two corresponding ninth electric telescopic rods (48) are fixedly installed inside the second grinding box (5). The output end of the ninth electric telescopic rod (48) is fixedly connected to a supporting arc plate (49). A second rotating disk (53) is rotatably connected inside the second grinding box (5). A tenth electric telescopic rod (54) is fixedly installed on one side of the second rotating disk (53). The output end of the tenth electric telescopic rod (54) is fixedly connected to a third mounting disk (56). Two corresponding eleventh electric telescopic rods (57) are fixedly installed inside the third mounting disk (56). The output end of the eleventh electric telescopic rod (57) is fixedly connected to a fourth arc-shaped block (58). A third servo motor (55) is fixedly installed inside the second grinding box (5). The output end of the third servo motor (55) is fixedly connected to the second rotating disk (53).

8. The digital tire recycling service system according to claim 7, wherein: A blanking chute (50) is provided inside the second grinding box (5). A collecting hopper (52) is arranged on the top of the base (1) and on one side of the second grinding box (5). The collecting hopper (52) cooperates with the blanking chute (50).

9. The digital tire recycling service system according to claim 1, characterized in that: A camera (51) is fixedly installed inside the second grinding box (5). A control console (7) is arranged on the top of the base (1). The control console (7) is electrically connected to the first servo motor (11), the first electric telescopic rod (15), the second electric telescopic rod (22), the third electric telescopic rod (24), the fourth electric telescopic rod (26), the fifth electric telescopic rod (35), the second servo motor (43), the seventh electric telescopic rod (41), the eighth electric telescopic rod (45), the ninth electric telescopic rod (48), the camera (51), the eleventh electric telescopic rod (57), the tenth electric telescopic rod (54), and the third servo motor (55).

10. The digital tire recycling service system according to claim 1, characterized in that: This digital tire recycling service system is applied to an operating system, including: a monitoring and detection module, a feeding module, a cleaning module, an internal grinding module, an external grinding module, and a hole detection module. The monitoring and detection module monitors the on-site processing conditions through the monitoring cameras and sensors installed in this digital tire recycling service system, transmits the detection data to the control terminal for recording, and establishes a database on a daily, weekly, and monthly basis. The feeding module clamps and moves the tire into the cleaning cylinder through a sliding mechanism, the second electric telescopic rod (22), the first mounting disk (23), the third electric telescopic rod (24), and the first arc-shaped block (25). After the feeding module feeds the tire into the inside of the cleaning cylinder (3), the cleaning module drives the cleaning brush (27) to contact the tire through the fourth electric telescopic rod (26), and at the same time sprays the cleaning water onto the tire surface through the water spray pipe (28) and the nozzle (29). At the same time, the cleaning time can be preset through the control terminal, so as to remove the tire from the inside of the cleaning cylinder, and then move the tire into the first grinding box (5); For the internal grinding module, after the feeding module feeds the tire into the inside of the first grinding box (4), the fifth electric telescopic rod (35) and the second arc-shaped block (36) are used to clamp the tire fed into the inside of the first grinding box (4). Then, the sixth electric telescopic rod (39) moves the second mounting plate (40) and the first grinding block (42) into the tire. The first grinding block (42) is pushed by the seventh electric telescopic rod (41) to grind the inner ring of the tire. Then, the tire is moved from the inside of the first grinding box (4) by the feeding module, and then the tire is moved into the second grinding box (5); For the external grinding module, when the feeding mechanism moves the tire into the inside of the second grinding box (5), the ninth electric telescopic rod (48) and the support arc plate (49) are used to support the tire. Then, the tenth electric telescopic rod (54), the third mounting plate (56), the eleventh electric telescopic rod (57) and the fourth arc-shaped block (58) are used to limit and fix the tire from the inside. Then, the tread pattern is scraped off by the scraper (47). At the same time, the outside of the tire is photographed by the camera (51), and the data is transmitted to the control terminal, so as to facilitate the analysis of the scraping degree of the tread pattern; For the hole detection module, after the tread pattern is scraped off, the tire tread is photographed by the camera (51) at the same time, and the data is transmitted to the control terminal to analyze whether there are holes in the tire. Then, the tire is discharged into the corresponding placement rack (6) by the feeding mechanism.