Recycling equipment for plastic woven bags

Through the combination of anti-floating components and stirring components, the problem of plastic woven bag fragments floating on the water surface and dry stains is solved, and efficient cleaning of plastic woven bags is achieved, improving cleaning efficiency and effect.

CN120503342AInactive Publication Date: 2025-08-19ANHUI JUYI NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202510785597.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-12
Publication Date
2025-08-19
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the recycling process of plastic woven bags, the broken fragments are easily floating on the water due to their low density and light weight, which makes them unable to completely immerse in the cleaning liquid, affecting the soaking effect, and some of the fragments are exposed to the air for a long time, causing the stain to dry and knot, reducing the cleaning efficiency.

Method used

Anti-floating components and stirring components are adopted, including Z-shaped plates, cylinders, circular plates, vertical rods, balls and arc blocks. The vertical rods are driven downward to move the vertical rods, and the debris are immersed in the liquid, and combined with ball vibration and bubble disturbance, the debris are fully stirred and cleaned.

Benefits of technology

Effectively prevent debris from floating, ensure that all debris are completely immersed, improve cleaning efficiency, enhance the uniformity of detergent distribution, accelerate stain removal, and significantly improve the cleaning effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses recycling equipment for plastic woven bags, and belongs to the field of recycling equipment, the recycling equipment comprises a cleaning cylinder, and a bottom plate is fixedly mounted in an inner cavity of the cleaning cylinder; the device further comprises an anti-floating assembly, the anti-floating assembly comprises a Z-shaped plate fixedly installed on one side of the cleaning barrel, an air cylinder is fixedly installed on the Z-shaped plate, a top seat is fixedly installed at the output end of the air cylinder, a circular plate matched with the cleaning barrel is arranged on the lower side of the top seat, a motor is fixedly installed at the top of the top seat, and the motor is fixedly connected with the air cylinder. The output end of the motor and the top of the circular plate are fixedly installed, through holes are evenly formed in the circular plate, and vertical rods are evenly and fixedly installed at the bottom of the circular plate. According to the plastic woven fragment cleaning device, floating plastic woven fragments can be pressed into water, the plastic woven fragments are stirred and cleaned while being fully immersed, the problem that stains are dry and hard due to the fact that local fragments are exposed in air for a long time is solved, and the cleaning effect is remarkably improved.
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Description

Technical Field

[0001] The present invention relates to the field of recycling equipment, and more particularly to a recycling equipment for plastic woven bags. Background Art

[0002] In the recycling process of plastic products, plastic woven bags, as a common packaging material, are widely used in agriculture, industry, logistics and other fields. They are used in large quantities and have a high discard rate. They have become an important part of the waste plastic recycling system. With the enhancement of environmental awareness and the promotion of resource recycling policies, the recycling and reproduction of plastic woven bags has gradually become the focus of industry development.

[0003] In the recycling process of plastic woven bags, cleaning is one of the key steps that affects the quality of recycled products. Since the recycled woven bags are usually contaminated with impurities such as dirt, dust, and oil, they must be thoroughly cleaned after crushing to remove surface pollutants and ensure the quality of subsequent granulation or reprocessing. However, in order to improve the cleaning effect, it is usually necessary to soak and soften the crushed plastic fragments for a certain period of time to loosen the attached stains, and then perform mechanical stirring and cleaning.

[0004] However, in actual operation, since the main component of plastic woven bags is polypropylene, which has a low density, the broken fragments are small in size and light in weight, and are very easy to float on the water surface, resulting in the inability to be completely immersed in the cleaning liquid. This phenomenon makes it difficult for some fragments to fully contact with the detergent, seriously affecting the soaking effect. At the same time, since some fragments are exposed to the air for a long time, the stains on the surface of the fragments will dry and solidify again, further increasing the difficulty of subsequent cleaning, thereby reducing the overall cleaning efficiency. Summary of the Invention

[0005] In response to the problems existing in the prior art, the purpose of the present invention is to provide a recycling device for plastic woven bags, which can press floating plastic woven fragments into water, fully immerse them, and simultaneously stir and clean them, avoiding the problem of stains drying due to long-term exposure of local fragments to the air, and significantly improving the cleaning effect.

[0006] To solve the above problems, the present invention adopts the following technical solutions.

[0007] A recycling device for plastic woven bags comprises a cleaning cylinder, wherein a bottom plate is fixedly mounted on the inner cavity of the cleaning cylinder;

[0008] Also includes:

[0009] An anti-floating component includes a Z-shaped plate fixedly mounted on one side of the cleaning cylinder, a cylinder fixedly mounted on the Z-shaped plate, a top seat fixedly mounted on the output end of the cylinder, a circular plate adapted to the cleaning cylinder provided on the lower side of the top seat, a motor fixedly mounted on the top of the top seat, the output end of the motor fixedly mounted on the top of the circular plate, through holes evenly opened on the circular plate, vertical rods evenly fixedly mounted on the bottom of the circular plate, and a vibration component provided on the top of the circular plate.

[0010] Furthermore, the vibration assembly includes circular tubes evenly arranged on the upper side of the circular plate, a cylinder is slidably installed in the top end of each group of the circular tubes, a reset spring is fixedly installed between each group of the cylinders and the bottom wall of the inner cavity of the adjacent circular tube, a T-shaped rod is fixedly installed on one side of each group of the cylinders, each group of the T-shaped rods is fixedly installed to the bottom of the top seat, a ball is roamingly installed on the bottom of each group of the circular tubes, each group of the ball is arranged in contact with the top of the circular plate, and an arc block is evenly fixedly installed on the top of the circular plate.

[0011] Furthermore, an L-shaped tube is fixedly installed on one side wall of each group of the circular tubes, and an air suction hole is opened on the other side of each group of the circular tubes. The top of the cleaning cylinder is evenly provided with a socket compatible with the L-shaped tube, and the side wall of the cleaning cylinder is evenly provided with air blowing holes, and the two ends of each group of the air blowing holes are respectively connected to the adjacent sockets and the inner cavity of the cleaning cylinder.

[0012] Furthermore, a circular frame is rotatably installed on the top of the circular plate, and the top of the circular frame is fixedly installed on the bottom end of each group of the T-shaped rods. An air storage cavity is provided in the inner cavity of the circular plate, and exhaust holes are evenly provided at the bottom of the circular plate near the position of each group of vertical rods. A circular ring opening is provided at the bottom of the circular frame, and a through opening is evenly provided on the top of the circular plate. Each group of through openings is respectively connected to the circular ring opening and the inner cavity of the air storage cavity.

[0013] Furthermore, a fixing rod is fixedly installed on the top of the Z-shaped plate, and the fixing rod is slidably installed with the top seat. A top plate is fixedly installed on the top of the fixing rod, and an elastic airbag is fixedly installed on the bottom of the top plate. The bottom of the elastic airbag is contacted with the top of the top seat, and a fixing tube is fixedly installed on the rear wall of the circular frame, and the other end of the fixing tube is fixedly installed with the bottom air outlet end of the elastic airbag.

[0014] Furthermore, a movable opening adapted to the fixing tube is provided on the top seat, and the portion where the fixing tube is connected to the bottom air outlet end of the elastic airbag is retractable.

[0015] Furthermore, a rotating plate is rotatably mounted on the bottom of the base plate, and matching leakage holes are evenly opened on the base plate and the rotating plate, and the cleaning cylinder and the leakage holes on the rotating plate are staggered.

[0016] Furthermore, a rotating rod is fixedly installed on the bottom of the rotating plate, and the rotating rod is rotatably installed with the cleaning cylinder.

[0017] Furthermore, a rubber ring is fixedly installed in the inner cavity of each group of the jacks, and the distance between the rubber ring and the bottom wall of the inner cavity of the jack is greater than the distance the round tube moves upward.

[0018] Furthermore, each group of the return springs is in a compressed state in its initial state, and the height of the arc block is less than half of the height of the ball.

[0019] Compared with the prior art, the present invention has the following beneficial effects:

[0020] (1) This solution uses a circular plate to drive the vertical rods downward, which can squeeze the floating plastic woven bag fragments downward and immerse them in the cleaning liquid. By setting up multiple groups of vertical rods, the mutual entanglement and accumulation of the fragments can be destroyed to prevent them from forming large floating objects. At the same time, it can penetrate the fragment layer to prevent the fragments from floating on the surface or accumulating around the tank wall, avoiding the problem of stains drying caused by local fragments being exposed to the air for a long time. The circular plate and each group of vertical rods are driven by a motor to rotate, and the vertical rods can be rotated to stir and clean the fragments in the cleaning liquid, thereby preliminarily achieving the dispersion and stirring of the fragments, and allowing the plastic woven bag fragments to be more fully in contact with the cleaning liquid, thereby effectively improving the overall cleaning efficiency.

[0021] (2) This solution uses the combination of the ball and the arc block under the action of the reset spring. During the rotation of the circular plate, the ball will reciprocate and hit the top of the circular plate and generate vibration. The shock wave will be transmitted to each group of vertical rods. The combination of vibration and rotation can generate stronger turbulence in the cleaning liquid, improve the fluidity of the liquid, and enable the detergent to be more evenly distributed throughout the cleaning process. At the same time, by strengthening the disturbance inside the liquid, the diffusion rate of dirt and chemicals dissolved in the water can be accelerated, thereby improving the overall cleaning efficiency.

[0022] (3) This solution uses the cooperation of the ball and the arc block to make the circular tube move up and down during the rotation of the circular plate. The circular tube absorbs external gas through the suction hole and blows air into the cleaning liquid through the blowing hole. The gas enters the cleaning liquid and forms bubbles that float upward. When the bubbles rise, they will cause slight collisions and friction on the plastic woven bag fragments, helping to loosen the stains attached to their surface. This is especially effective for some stubborn stains that are difficult to remove by static immersion. At the same time, combined with stirring, this combination can not only further enhance physical disturbance, but also make each plastic fragment subject to forces from multiple directions, so as to more effectively remove surface stains. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 This is a schematic diagram of the overall structure of the front side of the present invention;

[0024] Figure 2 is a cross-sectional view of the cleaning cylinder of the present invention;

[0025] Figure 3 It is an overall cross-sectional view of the present invention;

[0026] Figure 4 For the present invention Figure 3 A magnified view of the structure of the middle part A;

[0027] Figure 5 For the present invention Figure 3 A magnified view of the structure of the middle B section;

[0028] Figure 6 It is a bottom sectional view of the cleaning cylinder of the present invention.

[0029] Description of the numbers in the figure:

[0030] 1. Cleaning cylinder; 2. Bottom plate; 3. Z-shaped plate; 4. Cylinder; 5. Top seat; 6. Round plate; 7. Motor; 8. Through hole; 9. Vertical rod; 10. T-shaped rod; 11. Cylinder; 12. Round tube; 13. Return spring; 14. Ball bearing; 15. Arc block; 16. L-shaped tube; 17. Suction hole; 18. Insertion hole; 19. Blowing hole; 20. Round frame; 21. Air storage chamber; 22. Circular ring; 23. Through hole; 24. Exhaust hole; 25. Fixed rod; 26. Top plate; 27. Elastic airbag; 28. Rubber ring; 29. Fixed tube; 30. Movable opening; 31. Rotating plate; 32. Leakage hole; 33. Rotating rod. DETAILED DESCRIPTION

[0031] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention; it is obvious that the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0032] See also Figures 1 to 6 , a plastic woven bag recycling device, comprising a cleaning cylinder 1, the inner cavity of which is fixedly mounted a bottom plate 2;

[0033] Also includes:

[0034] The anti-floating component includes a Z-shaped plate 3 fixedly mounted on one side of the cleaning cylinder 1, a cylinder 4 fixedly mounted on the Z-shaped plate 3, a top seat 5 fixedly mounted on the output end of the cylinder 4, a circular plate 6 compatible with the cleaning cylinder 1 is provided on the lower side of the top seat 5, a motor 7 is fixedly mounted on the top of the top seat 5, the output end of the motor 7 is fixedly mounted on the top of the circular plate 6, through holes 8 are evenly opened on the circular plate 6, vertical rods 9 are evenly fixedly mounted on the bottom of the circular plate 6, and a vibration component is provided on the top of the circular plate 6.

[0035] The vibration assembly includes circular tubes 12 evenly arranged on the upper side of the circular plate 6, and a cylinder 11 is slidably installed in the top of each group of circular tubes 12. A reset spring 13 is fixedly installed between each group of cylinders 11 and the bottom wall of the inner cavity of the adjacent circular tube 12. A T-shaped rod 10 is fixedly installed on one side of each group of cylinders 11, and each group of T-shaped rods 10 is fixedly installed to the bottom of the top seat 5. A ball 14 is rollingly installed on the bottom of each group of circular tubes 12, and each group of ball 14 is arranged to contact the top of the circular plate 6. An arc block 15 is evenly fixedly installed on the top of the circular plate 6.

[0036] First, put an appropriate amount of detergent into the cleaning barrel 1. Sometimes alkaline or acidic solutions are added to help remove specific types of stains and water. Then, the recycled and crushed plastic woven bag fragments are put into the cleaning barrel 1. Due to the low density of the plastic woven bag, the crushed fragments are small in size and light in weight. Some of the plastic woven bag fragments will float on the water surface and cannot be immersed in the cleaning liquid. At this time, the cylinder 4 is turned on, and the output end of the cylinder 4 is controlled to contract to drive the top seat 5 to move downward. While the top seat 5 moves downward, the output shaft of the motor 7 will drive the circular plate 6 to move downward synchronously. The circular plate 6 will drive the groups of vertical rods 9 at its bottom to move downward synchronously. The circular plate 6 will drive the vertical rods 9 to gradually immerse themselves in the cleaning liquid in the cleaning barrel 1. The circular plate 6 moves downward and enters the cleaning barrel 1. The bottom of the circular plate 6 will first contact the plastic woven bag fragments floating on the liquid surface in the cleaning barrel 1. The circular plate 6 continues to move downward to squeeze these floating plastic woven bag fragments downward and immerse them in the cleaning liquid. When these floating plastic woven bag fragments are completely immersed in the cleaning liquid, The cleaning liquid of cleaning drum 1 is cleaned by the cleaning agent 7, and the cleaning agent 7 of cleaning drum 1 is cleaned by the cleaning agent 7. The cleaning agent 7 of cleaning drum 1 is cleaned by the cleaning agent 7. The cleaning agent 7 of cleaning drum 1 is cleaned by the cleaning agent 7. The cleaning agent 7 of cleaning drum 1 is cleaned by the cleaning agent 7. The cleaning agent 7 of cleaning drum 1 is cleaned by the cleaning agent 7.

[0037] When the circular plate 6 rotates, it will drive the arc block 15 on its top to move synchronously. When the arc surface of the arc block 15 contacts the arc surface of the lower half of the ball 14, the arc block 15 will squeeze the ball 14 to move upward. While the ball 14 moves upward, it slides upward on the outer wall of the cylinder 11 and squeezes the return spring 13. When the arc block 15 is removed from the bottom of the ball 14, under the action of the return spring 13, the return spring 13 returns to its initial state and pushes the circular tube 12 to drive the ball 14 to move downward to its initial position, so that the ball 14 will hit the top of the circular plate 6. At this time, during the rotation of the circular plate 6, the ball 14 will reciprocate and hit the top of the circular plate 6 and generate vibration. The shock wave will be transmitted to each group of vertical rods 9. The combination of vibration and rotation can generate stronger turbulence in the cleaning liquid, improve the fluidity of the liquid, and enable the detergent to be more evenly distributed throughout the cleaning process. At the same time, by enhancing the disturbance inside the liquid, the diffusion rate of dirt and chemicals dissolved in the water can be accelerated, thereby improving the overall cleaning efficiency.

[0038] like Figures 3 to 5 As shown, an L-shaped tube 16 is fixedly installed on one side wall of each group of circular tubes 12, and an air suction hole 17 is opened on the other side of each group of circular tubes 12. The top of the cleaning cylinder 1 is evenly provided with a socket 18 adapted to the L-shaped tube 16, and the side wall of the cleaning cylinder 1 is evenly provided with a blowing hole 19. The two ends of each group of blowing holes 19 are respectively connected to the adjacent socket 18 and the inner cavity of the cleaning cylinder 1.

[0039] In the process of controlling the cylinder 4 to drive the top seat 5 and the circular plate 6 to move downward, the top seat 5 will drive the cylinder 11 to move downward synchronously through the T-shaped rod 10, and the cylinder 11 will drive the L-shaped tube 16 to move downward synchronously through the circular tube 12. When the circular plate 6 moves into the cleaning cylinder 1, the bottom end of the L-shaped tube 16 will also move into the socket 18. When the circular plate 6 completely squeezes the plastic woven bag fragments into the cleaning liquid, the bottom end of the L-shaped tube 16 will move to the bottom wall of the inner cavity of the socket 18, and the circular plate 6 drives the arc block 1 During the rotation process, the ball 14 causes the round tube 12 to move up and down on the outer wall of the cylinder 11, and the round tube 12 drives the L-shaped tube 16 to slide up and down in the inner cavity of the socket 18 without being affected. When the round tube 12 moves upward, the gas inside it will be squeezed through the L-shaped tube 16 and discharged into the socket 18. The gas will eventually be discharged into the cleaning liquid in the cleaning cylinder 1 through the blowing hole 19. When the round tube 12 moves downward, the inner cavity of the round tube 12 will be sucked in through the suction hole 17. The external gas is discharged into it for air supply. A one-way valve is installed in both the L-shaped tube 16 and the air suction hole 17 to realize one-way air inlet and outlet, and the gas cannot flow back. At this time, during the reciprocating movement of the circular tube 12, the blowing hole 19 can blow air back and forth into the cleaning liquid in the cleaning cylinder 1. The gas enters the cleaning liquid and forms bubbles that float upward. When the bubbles rise, they will cause slight collisions and friction on the plastic woven bag fragments, helping to loosen the stains attached to their surface, especially for some stubborn stains that are difficult to remove by static immersion. At the same time, these gases can increase the dissolved oxygen content in the cleaning liquid, which is particularly beneficial for some situations where oxidation is required to decompose organic pollutants. At the same time, combined with stirring, the rising path of the bubbles will be disrupted by the stirring action, thereby forming a more complex flow pattern in the entire liquid space. This combination can not only further enhance physical disturbance, but also make each plastic fragment subject to forces from multiple directions, thereby more effectively removing surface stains.

[0040] like Figure 3 、 Figure 4 and Figure 6 As shown, a circular frame 20 is rotatably mounted on the top of the circular plate 6, and the top of the circular frame 20 is fixedly mounted to the bottom end of each group of T-shaped rods 10. An air storage chamber 21 is provided in the inner cavity of the circular plate 6, and exhaust holes 24 are evenly provided at the bottom of the circular plate 6 near each group of vertical rods 9. A circular ring opening 22 is provided at the bottom of the circular frame 20, and a through opening 23 is evenly provided on the top of the circular plate 6. Each group of through openings 23 is respectively connected to the circular ring opening 22 and the inner cavity of the air storage chamber 21.

[0041] A fixing rod 25 is fixedly installed on the top of the Z-shaped plate 3, and the fixing rod 25 is slidably installed with the top seat 5. A top plate 26 is fixedly installed on the top of the fixing rod 25, and an elastic air bag 27 is fixedly installed on the bottom of the top plate 26. The bottom of the elastic air bag 27 is in contact with the top of the top seat 5. A fixing tube 29 is fixedly installed on the rear wall of the circular frame 20, and the other end of the fixing tube 29 is fixedly installed with the bottom air outlet end of the elastic air bag 27.

[0042] The top seat 5 is provided with a movable opening 30 adapted to the fixed tube 29 , and the portion where the fixed tube 29 is connected to the bottom air outlet end of the elastic airbag 27 is retractable.

[0043] In the initial state, the elastic airbag 27 is in a compressed state. When the output end of the cylinder 4 contracts and drives the top seat 5 to move downward, under the action of the elastic airbag 27, the elastic airbag 27 will gradually inhale air through the air inlet end to restore to its initial state. After the elastic airbag 27 restores to its initial state, the top seat 5 will continue to move downward and will move away from the bottom of the elastic airbag 27. At the same time, the downward movement of the top seat 5 will drive the round frame 20 to move downward through the T-shaped rod 10, and the round frame 20 will drive the fixed tube 29 to move downward synchronously. When the top seat 5 drives the fixed tube 29 to move downward and away from the elastic airbag 27, the connection between the fixed tube 29 and the elastic airbag 27 will be stretched accordingly and will not be affected. When the plastic woven bag fragments in the cleaning barrel 1 are stirred and cleaned, the output end of the control cylinder 4 is extended to drive the top seat 5 upward As the cleaning cylinder 1 moves, the top seat 5 drives the circular plate 6 and the vertical rod 9 to gradually move upward and move out of the cleaning cylinder 1. When the top seat 5 moves upward and contacts the bottom of the elastic airbag 27, the top seat 5 continues to move upward to squeeze the elastic airbag 27. The gas in the elastic airbag 27 is discharged into the fixed tube 29 through the air outlet end. The gas in the fixed tube 29 is discharged into the circular frame 20 and discharged into the air storage chamber 21 through the circular ring opening 22 and the through opening 23. The gas will eventually be discharged downward through the exhaust hole 24. The gas discharged from the exhaust hole 24 will be blown downward along the outer wall of the vertical rod 9, so that the debris remaining on the vertical rod 9 can be blown off. At the same time, the motor 7 can be controlled to drive the circular plate 6 to rotate, so that the ball 14 vibrates the circular plate 6, so that the debris remaining on the bottom of the circular plate 6 and the vertical rod 9 can be shaken off, thereby achieving cleaning.

[0044] like Figure 2 and Figure 6 As shown, a rotating plate 31 is rotatably mounted on the bottom of the base plate 2. Matching leakage holes 32 are evenly opened on the base plate 2 and the rotating plate 31. The leakage holes 32 on the cleaning cylinder 1 and the rotating plate 31 are staggered.

[0045] A rotating rod 33 is fixedly mounted on the bottom of the rotating plate 31 , and the rotating rod 33 is rotatably mounted with the cleaning tub 1 .

[0046] When the cleaning liquid in the cleaning cylinder 1 needs to be discharged, the rotating rod 33 is rotated, and the rotating rod 33 drives the rotating plate 31 to rotate, so that the leakage hole 32 on the rotating plate 31 is aligned with the rotating plate 31 on the bottom plate 2, and the cleaning liquid in the cleaning cylinder 1 can be discharged downward through the aligned leakage hole 32.

[0047] like Figure 4 and Figure 5 As shown, a rubber ring 28 is fixedly installed in the inner cavity of each group of jacks 18, and the distance between the rubber ring 28 and the bottom wall of the inner cavity of the jack 18 is greater than the distance the round tube 12 moves upward.

[0048] Each group of return springs 13 is initially in a compressed state, and the height of the arc block 15 is less than half the height of the ball 14 .

[0049] When the L-shaped tube 16 is inserted into the insertion hole 18, the provision of the rubber ring 28 can improve the sealing between the L-shaped tube 16 and the inner wall of the insertion hole 18, preventing the gas discharged from the L-shaped tube 16 from being discharged through the top of the insertion hole 18. The distance between the rubber ring 28 and the bottom wall of the inner cavity of the insertion hole 18 is greater than the distance the circular tube 12 moves upward. When the L-shaped tube 16 is fully inserted into the inner cavity of the insertion hole 18, the circular tube 12 drives the L-shaped tube 16 to move upward, so that the bottom end of the L-shaped tube 16 is always located under the rubber ring 28, thereby achieving a good sealing effect.

[0050] Working principle: First, put an appropriate amount of water and cleaning agent into the cleaning cylinder 1, and then put the recycled and crushed plastic woven bag fragments into the cleaning liquid, control the cylinder 4 to drive the circular plate 6 and the vertical rod 9 to move downward into the cleaning cylinder 1, and the floating fragments can be completely immersed in the cleaning liquid. Control the motor 7 to drive the circular plate 6 to rotate, so that the vertical rod 9 can stir and clean the fragments in the cleaning cylinder 1. While the circular plate 6 rotates, the ball 14 and the arc block 15 cooperate with the force of the reset spring 13 to achieve the reciprocating impact of the ball 14 on the top of the circular plate 6 and generate vibration. The vibration will be transmitted to the vertical rod 9. During the impact process, the circular tube 12 will move up and down reciprocatingly. Through the cooperation of the L-shaped tube 16 and the air suction hole 17, the circular tube 12 will reciprocally absorb the external gas and discharge it into the cleaning liquid through the blowing hole 19. The gas will form bubbles and float upward, which can improve the cleaning effect. After the cleaning is completed, the control cylinder 4 drives the top seat 5 to move upward, and the top seat 5 will squeeze the elastic airbag 27. The gas in the elastic airbag 27 will be discharged into the air storage chamber 21 and blown onto the vertical rod 9 through the exhaust hole 24, which can facilitate the blowing off of the residual debris on the vertical rod 9. When the cleaning liquid in the cleaning cylinder 1 needs to be discharged, the rotating plate 31 is driven to rotate by the rotating rod 33 so that the leakage holes 32 on the upper and lower sides are aligned and connected to achieve the discharge of the cleaning liquid in the cleaning cylinder 1.

[0051] The above are only preferred embodiments of the present invention; however, the scope of protection of the present invention is not limited thereto. Any person skilled in the art who, within the technical scope disclosed by the present invention, makes equivalent substitutions or modifications based on the technical solutions and improved concepts of the present invention shall be covered by the scope of protection of the present invention.

Claims

1. A recycling device for plastic woven bags, comprising a cleaning cylinder (1), wherein a bottom plate (2) is fixedly mounted in the inner cavity of the cleaning cylinder (1); Its characteristics are: Also includes: An anti-floating component comprises a Z-shaped plate (3) fixedly mounted on one side of the cleaning cylinder (1), a cylinder (4) fixedly mounted on the Z-shaped plate (3), a top seat (5) fixedly mounted on the output end of the cylinder (4), a circular plate (6) adapted to the cleaning cylinder (1) provided on the lower side of the top seat (5), a motor (7) fixedly mounted on the top of the top seat (5), the output end of the motor (7) fixedly mounted on the top of the circular plate (6), through holes (8) uniformly opened on the circular plate (6), vertical rods (9) uniformly fixedly mounted on the bottom of the circular plate (6), and a vibration component provided on the top of the circular plate (6).

2. The plastic woven bag recycling equipment according to claim 1, characterized in that: The vibration assembly includes circular tubes (12) uniformly arranged on the upper side of the circular plate (6), a cylinder (11) is slidably installed in the top of each group of the circular tubes (12), a reset spring (13) is fixedly installed between each group of the circular cylinders (11) and the bottom wall of the inner cavity of the adjacent circular tube (12), a T-shaped rod (10) is fixedly installed on one side of each group of the circular cylinders (11), each group of the T-shaped rod (10) is fixedly installed on the bottom of the top seat (5), a ball (14) is rollingly installed on the bottom of each group of the circular tubes (12), each group of the ball (14) is arranged in contact with the top of the circular plate (6), and an arc block (15) is uniformly fixedly installed on the top of the circular plate (6).

3. The plastic woven bag recycling equipment according to claim 2, characterized in that: An L-shaped tube (16) is fixedly mounted on one side wall of each group of the circular tubes (12), and an air suction hole (17) is provided on the other side of each group of the circular tubes (12). Plug holes (18) adapted to the L-shaped tubes (16) are uniformly provided on the top of the cleaning cylinder (1), and air blowing holes (19) are uniformly provided in the side wall of the cleaning cylinder (1). The two ends of each group of the air blowing holes (19) are respectively connected to the adjacent plug holes (18) and the inner cavity of the cleaning cylinder (1).

4. The plastic woven bag recycling equipment according to claim 1, characterized in that: A circular frame (20) is rotatably mounted on the top of the circular plate (6), and the top of the circular frame (20) is fixedly mounted on the bottom end of each group of the T-shaped rods (10). An air storage cavity (21) is provided in the inner cavity of the circular plate (6), and exhaust holes (24) are uniformly provided at the bottom of the circular plate (6) near the position of each group of the vertical rods (9). A circular ring opening (22) is provided at the bottom of the circular frame (20), and a through opening (23) is uniformly provided on the top of the circular plate (6). Each group of the through openings (23) is respectively connected to the circular ring opening (22) and the inner cavity of the air storage cavity (21).

5. The plastic woven bag recycling equipment according to claim 4, characterized in that: A fixing rod (25) is fixedly installed on the top of the Z-shaped plate (3), and the fixing rod (25) is slidably installed with the top seat (5). A top plate (26) is fixedly installed on the top of the fixing rod (25), and an elastic air bag (27) is fixedly installed on the bottom of the top plate (26). The bottom of the elastic air bag (27) is arranged in contact with the top of the top seat (5). A fixing tube (29) is fixedly installed on the rear wall of the circular frame (20), and the other end of the fixing tube (29) is fixedly installed with the bottom air outlet end of the elastic air bag (27).

6. The plastic woven bag recycling equipment according to claim 5, characterized in that: The top seat (5) is provided with a movable opening (30) adapted to the fixed tube (29), and the portion where the fixed tube (29) is connected to the bottom air outlet end of the elastic airbag (27) is retractable.

7. The plastic woven bag recycling equipment according to claim 1, characterized in that: A rotating plate (31) is rotatably mounted on the bottom of the base plate (2), and matching leakage holes (32) are evenly opened on the base plate (2) and the rotating plate (31). The cleaning cylinder (1) and the leakage holes (32) on the rotating plate (31) are staggered.

8. The plastic woven bag recycling equipment according to claim 7, characterized in that: A rotating rod (33) is fixedly mounted on the bottom of the rotating plate (31), and the rotating rod (33) is rotatably mounted on the cleaning cylinder (1).

9. The plastic woven bag recycling equipment according to claim 3, characterized in that: A rubber ring (28) is fixedly installed in the inner cavity of each group of the jacks (18), and the distance between the rubber ring (28) and the bottom wall of the inner cavity of the jacks (18) is greater than the distance the circular tube (12) moves upward.

10. The plastic woven bag recycling equipment according to claim 2, characterized in that: The initial state of each group of reset springs (13) is a compressed state, and the height of the arc block (15) is lower than half the height of the ball (14).