Rubber belt processing device

By combining the cutting, adsorption, lifting and adjusting components, the problem of untimely handling of rubber belts in rubber belt processing devices is solved, realizing automated cutting and conveying of rubber belts, improving the conveyor belt's efficiency and saving manpower.

CN223971829UActive Publication Date: 2026-03-06TAIZHOU OAK KING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520356286.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-03-06
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

The existing rubber belt processing equipment does not transport the rubber belts in a timely manner after cutting, resulting in the accumulation of rubber belts at the rear end of the conveyor belt, which affects the normal operation and conveying efficiency of the conveyor belt.

Method used

The design employs a combination of cutting, adsorption, lifting, and adjusting components. Through the coordinated action of an electric telescopic rod and a rocker arm, it achieves automated cutting, adsorption, conveying, and lifting of the rubber belt, ensuring that the rubber belt is evenly distributed on the conveyor and avoiding accumulation.

Benefits of technology

It realizes the mechanized and automated cutting and conveying of rubber belts, improves the conveyor belt conveying efficiency, saves human resources, avoids damage and accumulation of rubber belts, and ensures the normal operation of the conveyor.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

A rubber belt processing device is used for solving the problems that when some rubber belt processing devices mentioned in the background technology convey rubber belts to the rear end of a conveying belt, the rubber belts are often not carried away in time, so that the rubber belts are accumulated at the rear end of the conveying belt, normal operation of the conveying belt is affected, and the conveying belt is damaged. And the conveying efficiency of the conveying belt on the cut rubber belt is poor. Comprising a bottom plate, and a conveyor is arranged on the bottom plate; the cutting assembly is movably arranged on the bottom plate and located at one end of the conveyor; the adsorption assembly comprises a rocker arm and an adsorption pipe, the adsorption pipe is located on the side, facing the conveyor, of the cutting assembly, and the adsorption pipe is located above the conveyor; a working frame is arranged on the bottom plate, and the lifting assembly is arranged above the conveyor; and the adjusting assembly is in sliding connection with the working frame, is arranged above the lifting assembly and is connected with the lifting assembly.
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Description

Technical Field

[0001] This utility model relates to the field of rubber belt processing technology, and in particular to a rubber belt processing device. Background Technology

[0002] A rubber band is a strip made of rubber, plastic or other elastic materials. It has high elasticity and extensibility and can apply force in multiple directions to provide a firm fixation.

[0003] In the prior art, such as the utility model patent document with authorization announcement number CN218255446U and titled "A cutting device for rubber belt production", a cutting device for rubber belt production is disclosed. The device includes a mounting base and a conveyor belt disposed on the mounting base, and a stabilizing cutting mechanism is disposed on the mounting base.

[0004] The aforementioned prior art uses a stabilizing cutting mechanism to cut the rubber belt on the transmission belt, and then transports the rubber belt by starting the conveyor belt. However, when transporting the rubber belt to the rear end of the conveyor belt, there are often situations where the rubber belt is not moved away in time, so the rubber belt will accumulate at the rear end of the conveyor belt, thereby affecting the normal operation of the conveyor belt and resulting in poor conveying efficiency of the cut rubber belt. Utility Model Content

[0005] To address the shortcomings of existing technologies, this utility model provides a rubber belt processing device. This device solves the problem mentioned in the background art where some rubber belt processing devices cut rubber belts on a transmission belt using a stable cutting mechanism, and then transport the rubber belts by starting a conveyor belt. However, when transporting the rubber belts to the rear end of the conveyor belt, the rubber belts often fail to be removed in time, causing them to accumulate at the rear end of the conveyor belt. This affects the normal operation of the conveyor belt and results in poor conveying efficiency of the cut rubber belts.

[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution:

[0007] A rubber belt processing device includes: a base plate on which a conveyor is disposed;

[0008] A cutting assembly is movably mounted on a base plate and located at one end of a conveyor. The end of the cutting assembly closer to the conveyor is the front end of the conveyor, and the end of the conveyor furthest from the cutting assembly is the rear end of the conveyor. The cutting assembly is used to cut a rubber belt that is manually placed into the cutting assembly from one side, causing the rubber belt to detach from the cutting assembly. The conveyor is used to transport the rubber belt cut off by the cutting assembly from the front end of the conveyor to the rear end of the conveyor.

[0009] An adsorption assembly is provided on top of the cutting assembly. A first electric telescopic rod is provided below the conveyor. The telescopic end of the first electric telescopic rod is connected to the bottom of the cutting assembly. The cutting assembly moves toward or away from the conveyor. The adsorption assembly includes a rocker arm and an adsorption tube that passes through the rocker arm from top to bottom. The adsorption tube is located on the side of the cutting assembly facing the conveyor and is located above the conveyor. When the rubber belt passes through the cutting assembly, the adsorption tube is used to adsorb the rubber belt. The rocker arm swings to drive the rubber belt to fall onto the conveyor.

[0010] The lifting assembly includes a working frame on the base plate, which is located at the rear end of the conveyor, with the rear body of the conveyor situated within the working frame. A third electric telescopic rod is fixedly installed at the top of the working frame. The lifting assembly is positioned above the conveyor, with the telescopic end of the third electric telescopic rod pointing vertically downwards and connected to the lifting assembly. The lifting assembly includes a first working plate, a second working plate located below and in contact with the first working plate, and a third working plate located below the second working plate. A plurality of piercing nails are fixedly installed on the bottom surface of the first working plate, each piercing nail passing through the second and third working plates. A second electric telescopic rod is installed on the top surface of the first working plate, with its telescopic end slidingly passing through the first and second working plates and fixedly connected to the third working plate. The third electric telescopic rod is used to drive the lifting assembly to lift the rubber belt.

[0011] An adjustment component is slidably connected to the working frame. The adjustment component is located above and connected to the lifting component. The telescopic end of the third electric telescopic rod is vertically downward and fixedly connected to the adjustment component. The adjustment component is used to drive the lifting component to move, and the direction of movement of the lifting component is parallel to the direction of the conveyor belt.

[0012] Working principle:

[0013] In use, the rubber belt is manually placed into the cutting assembly from the side away from the conveyor. The rubber belt passes through the cutting assembly from one side and comes out from the side of the cutting assembly facing the conveyor. When it reaches a certain length, the cutting assembly cuts the rubber belt.

[0014] At the same time, the adsorption tube adsorbs the end of the rubber belt facing the conveyor, and then the first electric telescopic rod is activated. The telescopic end of the first electric telescopic rod drives the cutting component and the adsorption component to move together toward the conveyor. That is, the movement of the first electric telescopic rod drives the rubber belt to move toward the conveyor and is conveyed to the top of the conveyor. Then the adsorption tube stops adsorbing, and the rubber belt falls to the front end of the conveyor.

[0015] Then start the conveyor, which will move the entire rubber belt from the front end to the rear end of the conveyor.

[0016] Then the third electric telescopic rod is activated. The telescopic end of the third electric telescopic rod drives the lifting component to move downward, so that the piercing nail pierces into the rubber belt. Then the third electric telescopic rod is activated again to lift the rubber belt.

[0017] Then the adjustment component is activated, which drives the lifting component and the rubber belt to move towards the rear end of the conveyor, and moves the rubber belt away from the conveyor.

[0018] Then, the second electric telescopic rod is activated. The telescopic end of the second electric telescopic rod moves vertically downward, causing the third working plate to move vertically downward and push the rubber belt connected to the piercing nail, so that the rubber belt is detached from the piercing nail and falls to the outside of the conveyor, thus completing one operation. The cycle is repeated until all the rubber belts have been transported.

[0019] Beneficial effects:

[0020] 1. By setting up the cutting component, the rubber belt can be cut to any length. This method is mechanized and automated, and easy to operate.

[0021] 2. By setting up a first electric telescopic rod, a rocker arm, and an adsorption tube, the rocker arm can support the adsorption tube. The adsorption tube is used to adsorb the rubber belt, and the first electric telescopic rod and rocker arm move the rubber belt closer to the conveyor, thereby conveying the rubber belt cut from the cutting component to the conveyor. This method is mechanized and automated, easy to operate, and saves manpower. At the same time, the adsorption and automated movement method does not easily damage the rubber belt, ensuring that each rubber belt is in a consistent state and can be evenly distributed at the front end of the conveyor. This avoids the rubber belt from curling or tilting when it is conveyed to the conveyor, which would prevent the piercing nail from penetrating the entire rubber belt when the lifting component lifts it, causing the rubber belt to fall off the lifting component.

[0022] 3. By setting up a lifting component, an adjusting component, and a third electric telescopic rod, the third electric telescopic rod specifically drives the lifting and adjusting components to descend, allowing the piercing nails on the lifting component to pass through the rubber belt. The third electric telescopic rod specifically drives the lifting and adjusting components to rise, causing the lifting component to lift the rubber belt and the adjusting component to move the rubber belt away from the conveyor. The lifting component can also cause the rubber belt to fall off. The combination of these three mechanisms mechanizes and automates the process of moving the rubber belt away from the conveyor, ultimately achieving the purpose of conveying the rubber belt. This saves manpower, prevents the rubber belt from accumulating at the rear of the conveyor, thus avoiding affecting the normal operation of the conveyor and improving the conveying efficiency of the cut rubber belt. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the structure of an embodiment of the present utility model;

[0024] Figure 2 This is a schematic diagram of the structure of this utility model without the bottom plate;

[0025] Figure 3 for Figure 2 A top-view structural diagram;

[0026] Figure 4 for Figure 2 A schematic diagram of the structure at the rear end of the conveyor.

[0027] In the above figures: base plate 1, working frame 2, conveyor 3, cutting assembly 4, first base plate 401, first slider 402, rocker arm 501, suction tube 502, second base plate 503, electric slider 504, extension block 505, mounting plate 506, first electric telescopic rod 6, lifting assembly 7, first working plate 701, second working plate 702, third working plate 703, second electric telescopic rod 8, fixing frame 9, first slide rail 10, electric slide rail 11, air pump 12, rotating shaft 13, pulley 14, belt 15, motor 16, moving block 17, locking block 18, second slider 19, second slide rail 20, piercing nail 21, third electric telescopic rod 22, fourth electric telescopic rod 23. Detailed Implementation

[0028] The technical solution of this utility model will be further described below with reference to the accompanying drawings and embodiments.

[0029] Example:

[0030] like Figures 1-4 As shown, a rubber belt processing device includes: a base plate 1, on which a conveyor 3 is mounted;

[0031] The cutting assembly 4 has a transmission structure, which is existing technology. This transmission structure can automatically drive the rubber belt through the cutting assembly 4 from the side away from the conveyor 3 to the side of the cutting assembly 4 closer to the conveyor 3. The cutting assembly 4 is movably mounted on the base plate 1 and is located at one end of the conveyor 3. The end of the cutting assembly 4 closer to the conveyor 3 is the front end of the conveyor 3, and the end of the conveyor 3 away from the cutting assembly 4 is the rear end of the conveyor 3. The cutting assembly 4 is used to cut the rubber belt that is manually placed into the cutting assembly 4 from one side, so that the rubber belt is detached from the cutting assembly 4. The conveyor 3 is used to transport the rubber belt cut from the cutting assembly 4 from the front end of the conveyor 3 to the rear end of the conveyor 3.

[0032] An adsorption assembly is provided on top of the cutting assembly 4. A first electric telescopic rod 6 is provided below the conveyor 3. The telescopic end of the first electric telescopic rod 6 is connected to the bottom of the cutting assembly 4. The cutting assembly 4 moves toward or away from the conveyor 3. The adsorption assembly includes a rocker arm 501 and an adsorption tube 502 passing through the rocker arm 501 from top to bottom. The adsorption tube 502 is located on the side of the cutting assembly 4 facing the conveyor 3 and is located above the conveyor 3. When the rubber belt passes through the cutting assembly 4, the adsorption tube 502 is used to adsorb the rubber belt. The rocker arm 501 swings to drive the rubber belt onto the conveyor 3. Since the rocker arm 501 moves with the telescopic end of the first electric telescopic rod 6 to drive the rubber belt closer to or away from the conveyor 3, the rocker arm 501 has the conditions to swing, so that the swing of the rocker arm 501 can drive the rubber belt to cover the front end of the conveyor 3.

[0033] The lifting assembly 7 includes a working frame 2 on the base plate 1, which is located at the rear end of the conveyor 3, with the rear body of the conveyor 3 situated within the working frame 2. A third electric telescopic rod 22 is fixedly installed at the top of the working frame 2. The lifting assembly 7 is positioned above the conveyor 3, with the telescopic end of the third electric telescopic rod 22 pointing vertically downwards and connected to the lifting assembly 7. The lifting assembly 7 includes a first working plate 701 and a second working plate 702 located below and in contact with the first working plate 701. The third working plate 703 is located below the second working plate 702. The bottom surface of the first working plate 701 is fixed with a plurality of piercing nails 21. Each piercing nail 21 passes through the second working plate 702 and the third working plate 703. The top surface of the first working plate 701 is provided with a second electric telescopic rod 8. The telescopic end of the second electric telescopic rod 8 slides through the first working plate 701 and the second working plate 702 and is fixedly connected to the third working plate 703. The third electric telescopic rod 22 is used to drive the lifting assembly 7 to lift the rubber belt.

[0034] An adjustment component is slidably connected to the working frame 2. The adjustment component is located above and connected to the lifting component 7. The telescopic end of the third electric telescopic rod 22 is vertically downward and fixedly connected to the adjustment component. The adjustment component is used to drive the lifting component 7 to move, and the direction of movement of the lifting component 7 is parallel to the direction of the conveyor belt of the conveyor 3.

[0035] By setting the cutting component 4, the rubber belt can be cut to any length, and this method is mechanized and automated, making it easy to operate;

[0036] By setting up a first electric telescopic rod 6, a rocker arm 501, and an adsorption tube 502, the rocker arm 501 can support the adsorption tube 502. The rubber belt is adsorbed by the adsorption tube 502, and the first electric telescopic rod 6 and the rocker arm 501 drive the rubber belt closer to the conveyor 3, thereby conveying the rubber belt cut from the cutting component 4 to the conveyor 3. This method is mechanized and automated, easy to operate, and saves manpower. At the same time, the adsorption and automated movement method is less likely to damage the rubber belt, so that each rubber belt is in a consistent state and can be evenly distributed at the front end of the conveyor 3. This avoids the rubber belt from curling or tilting when it is conveyed to the conveyor 3, which would prevent the piercing nail 21 from penetrating the entire rubber belt when the lifting component 7 lifts the rubber belt, causing the rubber belt to fall off the lifting component 7.

[0037] By setting up a lifting component 7, an adjusting component, and a third electric telescopic rod 23, the third electric telescopic rod 23 specifically drives the lifting component 7 and the adjusting component to descend, allowing the piercing nails 21 on the lifting component 7 to pass through the rubber belt. The third electric telescopic rod 23 specifically drives the lifting component 7 and the adjusting component to rise, causing the lifting component 7 to lift the rubber belt, and the adjusting component to move the rubber belt away from the conveyor 3. The lifting component can also cause the rubber belt to fall off. The combination of these three components mechanizes and automates the movement of the rubber belt away from the conveyor 3, ultimately achieving the purpose of conveying the rubber belt. This saves manpower, prevents the rubber belt from accumulating at the rear end of the conveyor 3, thus avoiding affecting the normal operation of the conveyor 3 and improving the conveying efficiency of the conveyor 3 for the cut rubber belt.

[0038] like Figure 3 As shown, a first slide rail 10 is fixedly mounted on the top of the base plate 1. The cutting assembly 4 includes a first base plate 401 and a first slider 402 fixedly mounted on the bottom of the first base plate 401. The telescopic end of the first electric telescopic rod 6 is fixedly connected to the first base plate 401 through a connecting block. The first slider 402 is slidably disposed within the first slide rail 10. The first slide rail 10 and the first slider 402 serve to limit movement, making the cutting assembly 4 and the adsorption assembly more stable during movement.

[0039] like Figures 1-4 As shown, the cutting assembly 4 is equipped with an electric slide rail 11 on its top. The adsorption assembly also includes a second substrate 503 and an electric slider 504 fixed to the bottom of the second substrate 503. The electric slider 504 is slidably disposed within the electric slide rail 11, and the direction of movement of the electric slider 504 is perpendicular to the direction in which the conveyor 3 transports the rubber belt. The electric slide rail 11 and the electric slider 504 enable the adsorption assembly to move in a direction perpendicular to the direction in which the conveyor 3 transports the rubber belt, thereby adjusting the position of the adsorption assembly and better adapting to the adsorption and transport of rubber belts of different specifications.

[0040] like Figure 1 As shown, the adsorption assembly 5 also includes an extension block 505 and a mounting plate 506 fixedly connected to the end of the extension block 505. The extension block 505 is fixedly connected to the top surface of the second substrate 503 and its end extends out of the side of the second substrate 503. A fourth electric telescopic rod 23 is fixedly connected to the bottom end of the mounting plate 506. The telescopic end of the fourth electric telescopic rod 23 is vertically downward and fixed to the rocker arm 501 through a connecting plate. By setting the fourth electric telescopic rod 23, the vertical position of the rocker arm 501 and the adsorption tube 502 can be changed. Therefore, the fourth electric telescopic rod 23 can cooperate with the telescopic end of the third electric telescopic rod 22 to drive the lifting assembly 7 to lift the rocker arm 501 and the adsorption tube 502, thereby avoiding the rocker arm 501 and the adsorption tube 502 from contacting the conveyor 3 and causing damage to the rocker arm 501 and the adsorption tube 502.

[0041] like Figures 1-4 As shown, an air pump 12 is installed on the top of the cutting assembly 4. The air pump 12 has moving parts such as pistons and gears, and can draw in or expel external air through the adsorption tube 502. This is existing technology. The end of the adsorption tube 502 away from the conveyor 3 is connected to the output end of the air pump 12. The air pump 12 is mechanized and automated, making it easy to operate.

[0042] like Figure 1 , Figure 2 and Figure 4 As shown, the adjustment assembly includes a fixed frame 9. The telescopic end of the third electric telescopic rod 22 is fixedly connected to the top of the fixed frame 9. Bearings are fixedly installed at both ends of one side of the fixed frame 9. A rotating shaft 13 is fixedly installed on the inner wall of each of the two bearings. A pulley 14 is fixedly installed on the outer periphery of each of the two rotating shafts 13. A belt 15 is installed between the two pulleys 14. A motor 16 is installed inside the fixed frame 9. One of the rotating shafts 13 passes through the side of the fixed frame 9 and is connected to the output end of the motor 16. A movable block 17 is fixedly installed on the top surface of the first working plate 701. The movable block 17 is located on the belt. Below 15, the movable block 17 is detachably connected to one section of the belt body of the belt 15. The movement of the belt 15 drives the movable block 17 and the lifting component 7 to move. The top surface of the first working plate 701 is fixed with a second slide rail 20. The lower part of the fixed frame 9 is provided with a second slider 19. The second slider 19 is slidably disposed on the second slide rail 20. The second slide rail 20 and the second slider 19 are both existing technologies. Under normal circumstances, the second slider 19 will not fall off the second slide rail 20. Therefore, the lifting component 7 is installed at the bottom of the fixed frame 9 by setting the second slide rail 20 and the second slider 19.

[0043] By setting up a fixed frame 9, a rotating shaft 13, a pulley 14, a belt 15, a motor 16, a moving block 17, a second slide rail 20, and a second slider 19, this method specifically describes the connection between the lifting component 7 and the adjusting component. The starting motor 16 specifically drives the lifting component 7 and the rubber belt to move stably. This method is mechanized and automated, and easy to operate.

[0044] like Figure 1 and Figure 2 As shown, the movable block 17 has a threaded hole at its top, the belt 15 has a through hole, and a locking block 18 is also included. A bolt is threaded onto the locking block 18. When the bolt is screwed into the locking block 18, the through hole on the belt 15, and the threaded hole on the movable block 17, the locking block 18 is connected to the movable block 17. This method specifically describes the connection between the movable block 17 and the locking block 18, facilitating the disassembly and replacement of the lifting assembly 7.

[0045] Working principle:

[0046] The specific steps are as follows:

[0047] The first step is to manually place the rubber belt into the cutting assembly 4 from the side away from the conveyor 3. The cutting assembly 4 then moves the rubber belt through the cutting assembly 4 from one side and out from the side of the cutting assembly 4 towards the conveyor 3. When it reaches a certain length, the cutting assembly 4 cuts the rubber belt.

[0048] The second step is to start the fourth electric telescopic rod 23 and the air pump 12 while cutting the rubber belt. The telescopic end of the fourth electric telescopic rod 23 drives the rocker arm 501 to move vertically downward, so that the adsorption tube 502 is close to the rubber belt. The air pump 12 draws in external air, so that the adsorption tube 502 adsorbs the end of the rubber belt facing the conveyor 3.

[0049] The third step is to start the fourth electric telescopic rod 23 and the first electric telescopic rod 6. The telescopic end of the fourth electric telescopic rod 23 lifts the rocker arm 501, and the telescopic end of the first electric telescopic rod 6 drives the cutting component 4 and the adsorption component to move together toward the conveyor 3. That is, the rocker arm 501 drives the rubber belt to move toward the conveyor 3 and conveys the rubber belt to the top of the conveyor 3.

[0050] Fourth step, start the fourth electric telescopic rod 23. The telescopic end of the fourth electric telescopic rod 23 drives the rocker arm 501 to move vertically downward, stop the air pump 12, and the rubber belt falls to the front end of the conveyor 3.

[0051] Fifth step, start the conveyor 3. The conveyor 3 drives the entire rubber belt from the front end of the conveyor 3 to the rear end of the conveyor 3, so that the piercing nail 21 is aligned with the rubber belt vertically.

[0052] Step 6: Activate the third electric telescopic rod 22. The telescopic end of the third electric telescopic rod 22 drives the adjustment component and the lifting component 7 to descend, so that the piercing nail 21 pierces into the rubber belt. Then activate the third electric telescopic rod 22 again. The telescopic end of the third electric telescopic rod 22 raises the adjustment component and the lifting component 7, thereby raising the rubber belt.

[0053] Step 7: Start motor 16. The output end of motor 16 drives the rotating shaft 13 connected to the output end of motor 16 to rotate. The rotation of the rotating shaft 13 drives the pulley 14 and belt 15 to move. The movement of belt 15 drives another rotating shaft 13 and pulley 14 to rotate, thereby driving the moving block 17, locking block 18, second slider 19 and lifting assembly 7 to move, thereby driving the rubber belt to move towards the rear end of the conveyor 3 and making the rubber belt move away from the conveyor 3.

[0054] Step 8: Start the second electric telescopic rod 8. The telescopic end of the second electric telescopic rod 8 moves vertically downward, causing the third working plate 703 to move vertically downward and push the rubber belt connected to the piercing nail 21, so that the rubber belt is detached from the piercing nail 21 and falls to the outside of the conveyor 3, thus completing one operation. Repeat the cycle until all the rubber belts are conveyed.

[0055] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.

Claims

1. A rubber belt processing device, characterized in that: The utility model relates to a rubber strip cutting device, including: The bottom plate (1) is provided with the conveyer (3) on the bottom plate (1); The cutting assembly (4) is movably arranged on the bottom plate (1), and the cutting assembly (4) is located at one end of the conveyer (3), the end of the conveyer (3) close to the cutting assembly (4) is the front end of the conveyer (3), and the end of the conveyer (3) away from the cutting assembly (4) is the rear end of the conveyer (3), and the cutting assembly (4) is used for cutting the rubber strip placed in the cutting assembly (4) from one side of the cutting assembly (4) to make the rubber strip separate from the cutting assembly (4); The conveyer (3) is used for conveying the rubber strip cut from the cutting assembly (4) from the front end of the conveyer (3) to the rear end of the conveyer (3); The suction assembly is arranged on the top of the cutting assembly (4), a first electric telescopic rod (6) is arranged below the conveyer (3), the telescopic end of the first electric telescopic rod (6) is connected with the bottom of the cutting assembly (4), the cutting assembly (4) moves towards or away from the conveyer (3), the suction assembly comprises a rocker arm (501) and a suction pipe (502) penetrating through the rocker arm (501) from top to bottom, the suction pipe (502) is located on the side of the cutting assembly (4) towards the conveyer (3), and the suction pipe (502) is located above the conveyer (3), when the rubber strip penetrates out from the cutting assembly (4), the suction pipe (502) is used for sucking the rubber strip, and the rocker arm (501) swings to drive the rubber strip to fall on the conveyer (3); The lifting assembly (7) is arranged above the conveyer (3), the telescopic end of the third electric telescopic rod (22) is vertically downward and connected with the lifting assembly (7), the lifting assembly (7) comprises a first working plate (701), a second working plate (702) located below the first working plate (701) and attached to the first working plate (701), and a third working plate (703) located below the second working plate (702), the bottom surface of the first working plate (701) is fixedly provided with a plurality of piercing nails (21), each piercing nail (21) penetrates through the second working plate (702) and the third working plate (703), the top surface of the first working plate (701) is provided with a second electric telescopic rod (8), the telescopic end of the second electric telescopic rod (8) slides through the first working plate (701), the second working plate (702) and is fixedly connected with the third working plate (703), and the third electric telescopic rod (22) is used for driving the lifting assembly (7) to lift the rubber strip. An adjusting assembly is slidably connected with the working frame (2), and is arranged above and connected with the lifting assembly (7). The telescopic end of the third electric telescopic rod (22) is vertically downward and connected with the adjusting assembly. The adjusting assembly is used to drive the lifting assembly (7) to move, and the moving direction of the lifting assembly (7) is parallel to the conveying direction of the rubber belt of the conveyor (3).

2. The rubber belt processing apparatus according to claim 1, characterized by: The first slide rail (10) is fixedly arranged on the top of the bottom plate (1). The cutting assembly (4) comprises a first base plate (401) and a first sliding block (402) fixedly arranged on the bottom of the first base plate (401). The telescopic end of the first electric telescopic rod (6) is fixedly connected with the first base plate (401) through a connecting block. The first sliding block (402) is slidably arranged in the first slide rail (10).

3. The rubber belt processing apparatus of claim 1, wherein: The top of the cutting assembly (4) is provided with an electric slide rail (11). The adsorption assembly (5) further comprises a second base plate (503) and an electric sliding block (504) fixedly arranged on the bottom of the second base plate (503). The electric sliding block (504) is slidably arranged in the electric slide rail (11). The moving direction of the electric sliding block (504) is perpendicular to the conveying direction of the rubber belt of the conveyor (3).

4. The rubber belt processing apparatus of claim 3, wherein: The adsorption assembly (5) further comprises an extension block (505) and a mounting plate (506) fixedly connected with the end of the extension block (505). The extension block (505) is fixedly connected with the second base plate (503) and the end thereof extends out of the side edge of the second base plate (503). The bottom end of the mounting plate (506) is fixedly connected with the fourth electric telescopic rod (23). The telescopic end of the fourth electric telescopic rod (23) is fixedly connected with the rocker arm (501) through a connecting plate.

5. A rubber belt processing apparatus according to claim 4, characterized by: The top of the cutting assembly (4) is provided with an air pump (12). The end of the adsorption pipe (502) away from the conveyor (3) is connected with the output end of the air pump (12).

6. The rubber belt processing apparatus of claim 1, wherein: The adjusting assembly comprises a fixing frame (9). The telescopic end of the third electric telescopic rod (22) is fixedly connected with the top of the fixing frame (9). The two ends of the side surface of one side of the fixing frame (9) are rotatably provided with rotating shafts (13). The outer peripheries of the two rotating shafts (13) are fixedly provided with belt pulleys (14). The two belt pulleys (14) are provided with a belt (15) therebetween. The inside of the fixing frame (9) is provided with a motor (16). One of the rotating shafts (13) penetrates through the side edge of the fixing frame (9) and is connected with the output end of the motor (16). The top surface of the first working plate (701) is fixedly provided with a moving block (17). The moving block (17) is located below the belt (15). The moving block (17) is detachably connected with one of the belt bodies of the belt (15). The belt (15) moves to drive the moving block (17) and the lifting assembly (7) to move. The top surface of the first working plate (701) is fixedly provided with a second slide rail (20). The lower part of the fixing frame (9) is provided with a second sliding block (19). The second sliding block (19) is slidably arranged on the second slide rail (20).

7. A rubber belt processing apparatus according to claim 6, characterized by: The mobile block (17) is provided with a threaded hole at the top, the belt (15) is provided with a through hole, and the locking block (18) is threadedly connected with a bolt, and when the bolt is screwed into the through hole on the belt (15), the threaded hole on the mobile block (17) and the locking block (18), the locking block is used for being connected with the mobile block (17).