Recycling equipment for recycling waste paper

By designing a cylinder-driven impact block vibration mesh plate and scraping mechanism in the waste paper recycling equipment, the problems of slow wastewater outflow and difficult inner wall cleaning are solved, achieving efficient operation and convenient cleaning.

CN224143154UActive Publication Date: 2026-04-21YILI YABING PAPER CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YILI YABING PAPER CO LTD
Filing Date
2025-05-07
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

In existing waste paper recycling equipment, wastewater cannot flow out quickly from the perforated plate, resulting in low work efficiency. Furthermore, the inner wall of the device is difficult to clean after use, and waste paper tends to adhere to it.

Method used

The design includes components such as a cylinder, cylinder rod, impact block, and elastic block. The cylinder drives the impact block to vibrate the perforated plate, quickly discharging wastewater. A scraping mechanism is also designed, which uses threaded motion and a scraper to scrape the inner wall to prevent waste paper from adhering.

Benefits of technology

It improves the working efficiency of the device, allows wastewater to flow out quickly, makes the inner wall easy to clean, reduces waste paper adhesion, and simplifies the cleaning process.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224143154U_ABST
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Abstract

The utility model belongs to the field of recycling equipment, and particularly relates to waste paper recycling equipment which comprises a recycling equipment body, a mesh plate is fixedly connected in the recycling equipment body, an air cylinder is fixedly installed on the outer side of the recycling equipment body, and an air cylinder rod is arranged at the left end of the air cylinder. And the air cylinder rod is slidably connected with the recycling equipment body, the left end of the air cylinder rod is fixedly connected with an impact block, and the interior of the recycling equipment body is fixedly connected with a mounting strip. According to the scheme, the air cylinder, the air cylinder rod, the impact block, the mounting strip, the sliding groove, the guide block and other components are designed, the air cylinder is started, the air cylinder drives the impact block and other components to move, the impact block moves to impact the elastic block to vibrate, the elastic block vibrates to drive the mesh plate and other components to vibrate, then waste water on the mesh plate rapidly flows out, and the working efficiency of the device can be improved.
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Description

Technical Field

[0001] This solution belongs to the field of recycling equipment, specifically involving a recycling device for the reuse of waste paper. Background Technology

[0002] Waste paper recycling equipment is a key link in realizing resource recycling. This equipment processes and recycles waste paper, effectively reducing resource waste and environmental pollution, and achieving waste paper recycling. According to utility model patent CN219709927U, a waste paperboard recycling device is proposed, including a recycling bin and two support plates. A sealing cover is movably inserted into the top of the recycling bin, and a mounting bracket is fixedly connected to the center of the top of the sealing cover. A first motor is fixedly connected to the center of the top of the mounting bracket, and the output end of the first motor passes through the top of the sealing cover and is equipped with a crushing structure. The recycling bin is rotatably connected between the two support plates, one of which has a mounting plate fixedly connected to it. A second motor is installed on the top of the mounting plate to drive the recycling bin to rotate. A perforated plate is fixedly connected to the bottom of the recycling bin, and a waste liquid discharge structure is provided on the bottom outer side of the recycling bin. Compared with traditional processing methods, this utility model eliminates the need to transfer the waste paperboard after soaking, simplifying the workflow and preventing wastewater from flowing everywhere, effectively improving work efficiency. However, this patent has the following shortcomings: when the device is in use, the wastewater on the mesh plate cannot flow out quickly, which makes it difficult to improve the working efficiency of the device; and after the device is used, there is no scraping mechanism, so the inner wall of the recycling equipment body cannot be scraped, and waste paper may adhere to the inner wall of the recycling equipment body, making the inner wall of the device difficult to clean. Therefore, the existing technology needs to be improved. Utility Model Content

[0003] The purpose of this solution is to provide a waste paper recycling device to solve the problems that when the device is in use, the wastewater on the mesh plate cannot flow out quickly, which makes it difficult to improve the working efficiency of the device. Moreover, after the device is used, there is no scraping mechanism, so the inner wall of the main body of the recycling device cannot be scraped, and waste paper may adhere to the inner wall of the main body of the recycling device, making it difficult to clean the inner wall of the device.

[0004] To achieve the above objectives, this utility model provides a waste paper recycling device, comprising a main body, a perforated plate fixedly connected inside the main body, a cylinder fixedly mounted on the outside of the main body, a cylinder rod at the left end of the cylinder, the cylinder rod being slidably connected to the main body, an impact block fixedly connected to the left end of the cylinder rod, an installation strip fixedly connected inside the main body, the installation strip having a sliding groove inside, a connecting sleeve fixedly connected to the lower end of the perforated plate, an elastic block fixedly connected inside the connecting sleeve, and a scraping mechanism inside the main body. By activating the cylinder, the cylinder drives the impact block and other components to move, causing the impact block to vibrate against the elastic block. The vibration of the elastic block causes the perforated plate and other components to vibrate, thereby causing wastewater on the perforated plate to flow out rapidly, thus improving the working efficiency of the device.

[0005] The principle of this solution is as follows: When the device is in use, the cylinder is activated, which drives the cylinder rod to move. The movement of the cylinder rod causes the impact block to move, which in turn causes the guide block to move. The guide block slides in the sliding groove, and the impact block strikes the elastic block, which in turn causes the elastic block to vibrate. The vibration of the elastic block causes the connecting sleeve to vibrate, which in turn causes the perforated plate to vibrate, thereby causing the wastewater on the perforated plate to flow out quickly, thus improving the working efficiency of the device.

[0006] After the device is used, turn the handle. The turn of the handle drives the rotating rod to rotate, which in turn drives the first bevel gear to rotate. The first bevel gear then drives the second bevel gear to rotate. The rotation of the second bevel gear causes a threaded motion with the threaded sleeve, resulting in relative displacement of the threaded sleeve. The movement of the threaded sleeve causes the sliding block and scraper to move. The scraper then contacts the inner wall of the main body of the recycling equipment. Then, turn the stirring rod on the device. The rotation of the stirring rod drives the connecting seat to rotate, which in turn drives the threaded sleeve and other components to rotate. The rotation of the threaded sleeve drives the scraper to rotate, and the scraper scrapes against the inner wall of the main body of the recycling equipment, thus preventing waste paper from adhering to the inner wall of the main body of the recycling equipment and making the inner wall of the device easy to clean.

[0007] The technical advantages of this solution are as follows: By designing components such as a cylinder, cylinder rod, impact block, mounting strip, sliding groove, and guide block, the cylinder is activated, driving the impact block and other components to move. The impact block vibrates against the elastic block, and the vibration of the elastic block causes the perforated plate and other components to vibrate, thereby allowing wastewater on the perforated plate to flow out quickly, thus improving the working efficiency of the device. By designing components such as a connecting seat, rotating rod, handle, first bearing, first bevel gear, and second bevel gear, the screw is rotated, and the screw and threaded sleeve undergo threaded movement. The movement of the threaded sleeve causes the scraper and other components to move. The scraper moves and contacts the inner wall of the main body of the recycling equipment, and then rotates to scrape the inner wall of the main body of the recycling equipment, thereby preventing waste paper from adhering to the inner wall of the main body of the recycling equipment, making the inner wall of the device easy to clean.

[0008] Furthermore, a guide block is slidably connected inside the sliding groove, and the guide block is fixedly connected to the impact block. By designing the guide block, the cylinder rod can be guided.

[0009] Furthermore, the scraping mechanism includes a connecting seat, which is fixedly connected inside the main body of the recycling equipment. A rotating rod is rotatably connected inside the connecting seat. A handle is fixedly connected to the upper end of the rotating rod, and a first bevel gear is fixedly connected to the lower end of the rotating rod. A second bevel gear meshes with the outer side of the first bevel gear. A screw is rotatably connected inside the connecting seat, and the screw is fixedly connected to the second bevel gear. A threaded sleeve is threadedly connected to the outer side of the screw. A guide groove is provided inside the connecting seat, and the connecting seat and the threaded sleeve are slidably connected. A scraper is fixedly connected to the threaded sleeve, and the scraper contacts the main body of the recycling equipment. By rotating the screw, the screw and the threaded sleeve undergo threaded movement. The movement of the threaded sleeve drives the scraper and other components to move. The scraper moves and contacts the inner wall of the main body of the recycling equipment. Then, the scraper rotates to scrape the inner wall of the main body of the recycling equipment, thereby preventing waste paper from adhering to the inner wall of the main body of the recycling equipment, making the inner wall of the device easy to clean.

[0010] Furthermore, a first bearing is fixedly sleeved inside the connecting seat, and a rotating rod is fixedly sleeved inside the inner ring of the first bearing. By designing the first bearing, the rotating rod can be supported to rotate.

[0011] Furthermore, a second bearing is fixedly sleeved inside the connecting seat, and a screw is fixedly sleeved inside the inner ring of the second bearing. By designing the second bearing, the screw can be supported to rotate.

[0012] Furthermore, there are two guide grooves, which are symmetrically distributed inside the connecting seat. By designing the guide grooves, the sliding block can slide within the guide grooves.

[0013] Furthermore, a sliding block is slidably connected inside the guide groove, and the sliding block is fixedly connected to the threaded sleeve. By designing the sliding block, the threaded sleeve can be connected. Attached Figure Description

[0014] Figure 1 This is a perspective view of the overall structure of an embodiment of the present utility model;

[0015] Figure 2 This is an embodiment of the present utility model. Figure 1 Partial sectional perspective view of the structure;

[0016] Figure 3 This is an embodiment of the present utility model. Figure 1 Front view and sectional view;

[0017] Figure 4This is an embodiment of the present utility model. Figure 2 Enlarged view of the perforated plate;

[0018] Figure 5 This is an embodiment of the present utility model. Figure 3 Enlarged view of point A.

[0019] The following detailed description illustrates the specific implementation method:

[0020] The reference numerals in the accompanying drawings of the instruction manual include: 1. Main body of the recycling equipment; 2. Mesh plate; 3. Cylinder; 4. Cylinder rod; 5. Impact block; 6. Mounting strip; 7. Sliding groove; 8. Guide block; 9. Connecting sleeve; 10. Elastic block; 11. Scraping mechanism; 11. Connecting seat; 111. Rotating rod; 112. Handle; 113. First bearing; 114. First bevel gear; 115. Second bevel gear; 116. Second bearing; 117. Screw; 118. Threaded sleeve; 119. Guide groove; 1110. Sliding block; 1111. Scraper; 1112. Detailed Implementation

[0021] The basic implementation examples are as follows: Figure 1 — Figure 5 As shown, this embodiment provides a waste paper recycling device, including a recycling device body 1. A perforated plate 2 is fixedly connected inside the recycling device body 1. A cylinder 3 is fixedly installed on the outside of the recycling device body 1. A cylinder rod 4 is provided at the left end of the cylinder 3 and is slidably connected to the recycling device body 1. An impact block 5 is fixedly connected to the left end of the cylinder rod 4. An installation strip 6 is fixedly connected inside the recycling device body 1. A sliding groove 7 is opened inside the installation strip 6. A guide block 8 is slidably connected inside the sliding groove 7 and is fixedly connected to the impact block 5. By designing the guide block 8, the cylinder rod 4 can be guided. A connecting sleeve 9 is fixedly connected to the lower end of the perforated plate 2. An elastic block 10 is fixedly connected inside the connecting sleeve 9. A scraping mechanism 11 is provided inside the recycling device body 1. By activating the cylinder 3, the cylinder 3 drives the impact block 5 and other components to move. The impact block 5 moves and vibrates the elastic block 10. The vibration of the elastic block 10 drives the perforated plate 2 and other components to vibrate, thereby causing the wastewater on the perforated plate 2 to flow out quickly, which can improve the working efficiency of the device.

[0022] As attached Figure 3 , Figure 5As shown, the scraping mechanism 11 includes a connecting seat 111. The connecting seat 111 is fixedly connected inside the main body 1 of the recycling equipment. A rotating rod 112 is rotatably connected inside the connecting seat 111. A handle 113 is fixedly connected to the upper end of the rotating rod 112. A first bearing 114 is fixedly sleeved inside the connecting seat 111. The rotating rod 112 is fixedly sleeved inside the inner ring of the first bearing 114. By designing the first bearing 114, the rotating rod 112 can be supported to rotate. A first bevel gear 115 is fixedly connected to the lower end of the rotating rod 112. A second bevel gear 116 meshes with the outer side of the first bevel gear 115. A second bearing 117 is fixedly sleeved inside the connecting seat 111. A screw 118 is fixedly sleeved inside the inner ring of the second bearing 117. By designing the second bearing 117, the screw 118 can be supported to rotate.

[0023] As attached Figure 3 , Figure 5 As shown, a screw 118 is rotatably connected inside the connecting seat 111. The screw 118 is fixedly connected to the second bevel gear 116. A threaded sleeve 119 is threadedly connected to the outside of the screw 118. Two guide grooves 1110 are symmetrically distributed inside the connecting seat 111. By designing the guide grooves 1110, the sliding block 1111 can slide within them. A sliding block 1111 is slidably connected inside the guide grooves 1110. The sliding block 1111 is fixedly connected to the threaded sleeve 119. Block 1111 can be connected to threaded sleeve 119. Connecting seat 111 and threaded sleeve 119 are slidably connected. Scraper 1112 is fixedly connected to threaded sleeve 119. Scraper 1112 contacts the main body 1 of recycling equipment. By rotating screw 118, screw 118 and threaded sleeve 119 undergo threaded movement. The movement of threaded sleeve 119 drives the scraper 1112 and other components to move. Scraper 1112 moves and contacts the inner wall of the main body 1 of recycling equipment. Then, the scraper 1112 is rotated to scrape the inner wall of the main body 1 of recycling equipment, thereby preventing waste paper from adhering to the inner wall of the main body 1 of recycling equipment, making the inner wall of the device easy to clean.

[0024] The specific implementation process of this utility model is as follows: The basic principle of the waste paper recycling equipment has been disclosed in the utility model patent with authorization announcement number CN219709927U;

[0025] When the device is in use, the cylinder 3 is activated, which drives the cylinder rod 4 to move. The movement of the cylinder rod 4 causes the impact block 5 to move, which in turn causes the guide block 8 to move. The guide block 8 slides in the sliding groove 7, and the impact block 5 strikes the elastic block 10, which in turn causes the elastic block 10 to vibrate. The vibration of the elastic block 10 causes the connecting sleeve 9 to vibrate, which in turn causes the mesh plate 2 to vibrate, which in turn causes the wastewater on the mesh plate 2 to flow out quickly, thereby improving the working efficiency of the device.

[0026] After the device is used, turn the handle 113. The rotation of the handle 113 drives the rotating rod 112 to rotate, which in turn drives the first bevel gear 115 to rotate. The rotation of the first bevel gear 115 drives the second bevel gear 116 to rotate. The rotation of the second bevel gear 116 causes threaded movement with the threaded sleeve 119, which in turn causes the threaded sleeve 119 to move relative to the threaded sleeve 119. The movement of the threaded sleeve 119 causes the sliding block 1111 and the scraper 1112 to move. The scraper 1112 moves and contacts the inner wall of the main body 1 of the recycling equipment. Then, turn the stirring rod on the device. The rotation of the stirring rod drives the connecting seat 111 to rotate, which in turn drives the threaded sleeve 119 and other components to rotate. The rotation of the threaded sleeve 119 drives the scraper 1112 to rotate. The rotation of the scraper 1112 scrapes the inner wall of the main body 1 of the recycling equipment, thereby preventing waste paper from adhering to the inner wall of the main body 1 of the recycling equipment, making the inner wall of the device easy to clean.

[0027] This design incorporates components such as cylinder 3, cylinder rod 4, impact block 5, mounting strip 6, sliding groove 7, and guide block 8. Activating cylinder 3 drives impact block 5 to move, causing it to impact elastic block 10 and vibrate. The vibration of elastic block 10 then causes the mesh plate 2 to vibrate, resulting in rapid wastewater flow from the mesh plate 2 and improving the device's efficiency. Furthermore, the design includes components such as connecting seat 111, rotating rod 112, handle 113, first bearing 114, first bevel gear 115, and second bevel gear 116. Rotating screw 118 causes threaded movement between screw 118 and threaded sleeve 119. The movement of threaded sleeve 119 moves scraper 1112, which contacts the inner wall of the main body 1 of the recycling equipment. Rotating scraper 1112 then scrapes the inner wall of the main body 1, preventing waste paper from adhering to the inner wall and facilitating cleaning.

[0028] The above descriptions are merely embodiments of this utility model, and common knowledge regarding specific structures and characteristics is not elaborated upon here. It should be noted that those skilled in the art can make various modifications and improvements without departing from the structure of this utility model, and these should also be considered within the scope of protection of this utility model. These modifications will not affect the effectiveness of the implementation of this utility model or the practicality of the patent. The scope of protection claimed in this application shall be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.

Claims

1. A recycling apparatus for recycling waste paper, comprising a recycling apparatus main body, characterized by: A perforated plate is fixedly connected inside the main body of the recycling equipment. A cylinder is fixedly installed on the outside of the main body of the recycling equipment. A cylinder rod is provided at the left end of the cylinder. The cylinder rod is slidably connected to the main body of the recycling equipment. An impact block is fixedly connected to the left end of the cylinder rod. An installation strip is fixedly connected inside the main body of the recycling equipment. A sliding groove is opened inside the installation strip. A connecting sleeve is fixedly connected to the lower end of the perforated plate. An elastic block is fixedly connected inside the connecting sleeve. A scraping mechanism is provided inside the main body of the recycling equipment.

2. The waste paper recycling device according to claim 1, characterized by: The sliding groove is slidably connected to a guide block, which is fixedly connected to the impact block.

3. The waste paper recycling device of claim 1, wherein: The scraping mechanism includes a connecting seat, which is fixedly connected inside the main body of the recycling equipment. A rotating rod is rotatably connected inside the connecting seat. A handle is fixedly connected to the upper end of the rotating rod, and a first bevel gear is fixedly connected to the lower end of the rotating rod. A second bevel gear meshes with the outer side of the first bevel gear. A screw is rotatably connected inside the connecting seat, and the screw is fixedly connected to the second bevel gear. A threaded sleeve is threadedly connected to the outer side of the screw. A guide groove is provided inside the connecting seat, and the connecting seat and the threaded sleeve are slidably connected. A scraper is fixedly connected to the threaded sleeve, and the scraper contacts the main body of the recycling equipment.

4. The waste paper recycling device according to claim 3, wherein: The connecting seat is internally fitted with a first bearing, and the inner ring of the first bearing is internally fitted with a rotating rod.

5. The waste paper recycling device according to claim 3, wherein: The connecting seat is internally fitted with a second bearing, and the inner ring of the second bearing is internally fitted with a screw.

6. The waste paper recycling device of claim 3, wherein: There are two guide grooves, which are symmetrically distributed inside the connector.

7. The waste paper recycling device of claim 3, wherein: The guide groove is internally slidably connected to a sliding block, which is fixedly connected to a threaded sleeve.

Citation Information

Patent Citations

  • Waste paperboard recycling device

    CN219709927U