Waste plastic processing, recycling and regenerating device
By designing a waste plastic processing, recycling, and regeneration device, efficient crushing, cleaning, and conveying of waste plastics have been achieved, solving the problem of insufficient waste plastic recycling, improving the cleaning effect and the cleanliness of recycling, and reducing environmental pollution.
Patent Information
- Application Number
- CN202423298345.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing technologies do not adequately recycle waste plastics, resulting in significant environmental pollution and making effective recycling difficult.
A waste plastic processing, recycling and regeneration device was designed, including a recycling bin, a crushing device, a washing device and a conveying device. The controller coordinates the crushing motor, the stirring motor and the conveying motor to realize the crushing, washing and conveying of waste plastic, ensuring efficient washing effect and stable operation.
It improves the cleaning effect of waste plastics, ensures the removal of dirt and impurities from the plastic surface, achieves a high degree of cleanliness, meets the requirements of subsequent recycling and processing, and reduces environmental pollution.
Smart Images

Figure CN223507485U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of waste plastic processing and recycling technology, and discloses a waste plastic processing, recycling and regeneration device. Background Technology
[0002] With the widespread use of plastic products in modern industry and daily life, the amount of plastic waste generated has shown a continuous and rapid growth trend. Hundreds of millions of tons of waste plastic are generated globally every year, but only a small portion of them are effectively recycled. Most waste plastic is randomly discarded in landfills, open-air dumps, or directly discharged into the natural environment.
[0003] Large quantities of waste plastic bottles and bags accumulate in landfills, not only consuming valuable land resources but also potentially leaching harmful substances over time, polluting soil and groundwater. Waste plastics flowing into oceans, rivers, and other aquatic environments decompose into tiny plastic particles, posing a serious threat to aquatic life. These particles may be ingested by fish and other organisms, and subsequently transmitted through the food chain, ultimately affecting the balance of the entire ecosystem and even threatening human health. Therefore, a waste plastic processing, recycling, and regeneration device is proposed. Utility Model Content
[0004] The present invention aims to solve the technical problem of insufficient recycling of waste plastics by providing a waste plastic processing, recycling and regeneration device.
[0005] The technical solution adopted by this utility model to solve its technical problem is as follows: a waste plastic processing and recycling device, including a recycling bin, a feed inlet, a washing tank, a support, a crushing device, a washing device, a conveying device, and a controller. The feed inlet is located at the top of the recycling bin and is connected internally and externally. The support is claw-shaped and is located below the recycling bin and to the side of the washing tank, respectively, and is fixedly connected to the outer bottom surface of the recycling bin and the side surface of the washing tank. The recycling bin is located diagonally above the washing tank and is fixedly connected to the washing tank via the support, and the recycling bin and the washing tank are interconnected. The crushing device is located on the recycling bin and is connected to the recycling bin. The washing device is located on the washing tank and is connected to the washing tank. The conveying device is located on the washing tank and is connected to the washing tank. The controller is located on the recycling bin and is electrically connected to the crushing device, the washing device, and the conveying device.
[0006] Waste plastic enters the recycling bin through a feed inlet located at the top and connected to the inside. Then, a crushing device connected to the recycling bin starts working under the control of the controller to crush the incoming waste plastic. The crushed plastic falls into a washing tank connected to the bin. At this time, the washing device starts and thoroughly cleans the waste plastic through the operation of the corresponding components. After washing, the cleaned waste plastic is transported out by a conveying device connected to the washing tank under the coordination of the controller.
[0007] Furthermore, the pulverizing device includes a pulverizing motor, two pulverizing rollers, and several pulverizing teeth. The output shaft of the pulverizing motor is horizontally positioned, and the pulverizing motor is located on the side of the recycling bin, fixedly connected to the outer wall of the recycling bin, and electrically connected to the controller. The two pulverizing rollers are horizontally positioned, with their axes parallel to the output shaft of the pulverizing motor. The two pulverizing rollers are located inside the recycling bin and are rotatably connected to the inner wall of the recycling bin via a rotating shaft, with their rotation axes coinciding with their own axes. One pulverizing roller is fixedly connected to the output shaft of the pulverizing motor, and the two pulverizing rollers are interconnected via gear transmission. Several pulverizing teeth are evenly distributed on the surface of the two pulverizing rollers and are fixedly connected to the surface of the two pulverizing rollers.
[0008] During operation, the controller first starts the crushing motor, which then drives a crushing roller fixed to it to rotate. Since the two crushing rollers are driven by gears, the other crushing roller also rotates synchronously. As the two crushing rollers rotate, several crushing teeth evenly distributed on their surfaces begin to crush the waste plastics that have entered the recycling bin, gradually breaking the waste plastics into smaller particles for subsequent cleaning and other processing and recycling processes.
[0009] Furthermore, several crushing teeth are welded and fixed to the surfaces of the two crushing rollers.
[0010] During the crushing process of waste plastics, the crushing teeth need to be in constant and intense contact with the waste plastics, squeezed and torn, and will be subjected to great impact and friction. Welding and fixing can ensure that the crushing teeth can still be firmly attached to the surface of the crushing roller under long-term and high-intensity working conditions, and will not easily loosen or fall off, thus ensuring that the crushing can continue to operate stably and maintain good crushing performance.
[0011] Furthermore, the cleaning device includes a stirring motor, a first auger, a retrieval motor, a retrieval roller, several retrieval rods, scrapers, a collection box, and four support legs. The stirring motor's output shaft is horizontally aligned, and the motor is positioned below the cleaning tank side, fixedly connected to the outer wall of the cleaning tank, and electrically connected to a controller. The first auger is horizontally aligned, located inside the cleaning tank, and rotatably connected to the inner wall of the tank via a rotating shaft, its rotation axis coinciding with its own axis. The auger is fixedly connected to the stirring motor's output shaft. The retrieval motor's output shaft is horizontally aligned, perpendicular to the stirring motor's output shaft, and positioned above the cleaning tank side, fixedly connected to the outer wall of the cleaning tank, and electrically connected to the controller. The retrieval roller is horizontally aligned, coinciding with the retrieval motor's output shaft, located inside the cleaning tank, and rotatably connected to the inner wall of the tank via a rotating shaft, its rotation axis coinciding with its own axis. The retrieval roller is fixedly connected to the retrieval motor's output shaft. Several retrieval rods are evenly distributed on the surface of the retrieval roller, and are fixedly connected to the surface of the retrieval roller. The scraper is fence-shaped, inclined, and positioned above the cleaning tank and above the side of the retrieval roller. The scraper works in conjunction with the retrieval rods and is fixedly connected to the cleaning tank. A collection box is located on the side of the cleaning tank, diagonally below the scraper, and is fixedly connected to the outer wall of the cleaning tank. Four support legs are located below the cleaning tank and are fixedly connected to the bottom surface of the cleaning tank.
[0012] During operation, the controller first starts the stirring motor, which drives the first auger to rotate in the cleaning tank, stirring the crushed waste plastic in the tank to ensure thorough contact and mixing with the cleaning liquid. This achieves a comprehensive cleaning of the waste plastic, removing surface dirt and other impurities. Next, the controller starts the scooping motor, which drives the scooping roller to rotate, causing the scooping rods evenly distributed on its surface to rotate as well. This scoops up impurities floating on the surface from the cleaning liquid. When the scooping rods rotate to the scraper, the inclined, grid-like scraper works in conjunction with the scooping rods to scrape the impurities off the rods and drop them into a collection box located diagonally below the scraper for collection and storage. This timely removal of impurities that have detached from the waste plastic during the cleaning process and are floating on the liquid surface prevents impurities from re-adhering to the already cleaned plastic, further ensuring the cleanliness of the waste plastic and improving the effectiveness of the entire cleaning process, minimizing the impurity content of the finally collected waste plastic.
[0013] Furthermore, the conveying device includes a conveying pipe, a conveying motor, a second auger, and a discharge pipe. The conveying pipe's axis is inclined, and it is positioned to the side of the cleaning tank, fixedly connected to and communicating with the side wall of the cleaning tank. The conveying motor's output shaft is also inclined, its axis coinciding with the conveying pipe's axis. The conveying motor is positioned at the end face of the conveying pipe and fixedly connected to it, and electrically connected to the controller. The second auger's axis is also inclined, coinciding with the conveying motor's output shaft. The second auger is positioned inside the conveying pipe and rotatably connected to the conveying pipe's end face via a rotating shaft, its rotation axis coinciding with its own axis. The second auger is fixedly connected to the conveying motor's output shaft. The conveying pipe is positioned diagonally below the conveying motor, and the discharge pipe penetrates the side wall of the conveying pipe, communicating with both the inside and outside.
[0014] During operation, the controller starts the conveying motor, which in turn drives the second auger fixed to it to rotate synchronously. Under the rotational push of the second auger, the waste plastic at the bottom of the washing tank moves gradually along the inclined conveying pipe and is finally output through the discharge pipe that runs through the side wall of the conveying pipe and connects the inside and outside, so that the waste plastic can smoothly enter the subsequent further processing stage.
[0015] Furthermore, the conveying motor is bolted to the end face of the conveying pipe via a flange.
[0016] Bolted connections are secured by multiple bolts evenly distributed on the flange, providing a stable and reliable connection force during the operation of the conveying motor. This ensures the conveying motor is firmly fixed to the end face of the conveying pipe, guaranteeing good coaxiality and stable transmission between the motor output shaft and the second auger inside the conveying pipe. Even under conditions such as prolonged operation of the conveying motor, vibration, and the reaction force from the second auger pushing waste plastic, the connection will not easily loosen, maintaining the normal operation of the conveying device.
[0017] The beneficial effects of this utility model are:
[0018] By using a stirring motor to drive the first auger to fully stir the waste plastic, and a scooping motor to drive the scooping roller and scooping rod in conjunction with a scraper to promptly remove impurities, the cleaning effect of waste plastic is improved. This achieves the goal of removing as much dirt and impurities as possible from the surface of the waste plastic, making it reach a high level of cleanliness to meet the requirements of subsequent recycling processing. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall structure of this waste plastic processing, recycling and regeneration device.
[0020] Explanation of reference numerals in the attached drawings: 1. Recycling bin; 101. Feed inlet; 102. Crushing roller; 103. Crushing teeth; 104. Support; 2. Washing tank; 201. Stirring motor; 202. First auger; 203. Scraper; 204. Scouring roller; 205. Scouring rod; 206. Collection bin; 207. Support leg; 3. Conveying pipe; 301. Conveying motor; 302. Discharge pipe; 303. Second auger; 4. Controller. Detailed Implementation
[0021] The following will describe the concept and technical effects of this utility model clearly and completely with reference to the embodiments, so as to fully understand the purpose, features and effects of this utility model.
[0022] like Figure 1 The device for processing, recycling, and regenerating waste plastics includes a recycling bin 1, a feed inlet 101, a washing tank 2, a support 104, a crushing device, a washing device, a conveying device, and a controller 4. The feed inlet 101 is located at the top of the recycling bin 1 and is open to both the inside and outside. The support 104 is claw-shaped and is located below the recycling bin 1 and to the side of the washing tank 2, respectively. The support 104 is fixedly connected to the outer bottom surface of the recycling bin 1 and the side surface of the washing tank 2. The recycling bin 1 is positioned diagonally above the washing tank 2 and is fixedly connected to the washing tank 2 via the support 104, and the recycling bin 1 and the washing tank 2 are interconnected. The crushing device is mounted on the recycling bin 1 and connected to it. The washing device is mounted on the washing tank 2 and connected to it. The conveying device is mounted on the washing tank 2 and connected to it. The controller 4 is mounted on the recycling bin 1 and is electrically connected to the crushing device, the washing device, and the conveying device.
[0023] Waste plastic enters the recycling bin 1 through the feed inlet 101, which is located at the top of the recycling bin and is connected to the inside. Then, the crushing device connected to the recycling bin 1 starts working under the control of the controller 4 to crush the incoming waste plastic. The crushed plastic falls into the washing tank 2 connected to it. At this time, the washing device starts and thoroughly cleans the waste plastic through the operation of the corresponding components. After the washing is completed, the cleaned waste plastic is transported out by the conveying device connected to the washing tank 2 under the coordination of the controller 4.
[0024] The pulverizing device includes a pulverizing motor, two pulverizing rollers 102, and a plurality of pulverizing teeth 103. The output shaft of the pulverizing motor is horizontally oriented, and the pulverizing motor is located to the side of the recycling bin 1, fixedly connected to the outer wall of the recycling bin 1, and electrically connected to the controller 4. The two pulverizing rollers 102 are horizontally oriented, their axes parallel to the output shaft of the pulverizing motor. The two pulverizing rollers 102 are located inside the recycling bin 1, and are rotatably connected to the inner wall of the recycling bin 1 via a rotating shaft, with their rotation axes coinciding with their own axes. One pulverizing roller 102 is fixedly connected to the output shaft of the pulverizing motor, and the two pulverizing rollers 102 are interconnected via gear transmission. A plurality of pulverizing teeth 103 are evenly distributed on the surface of the two pulverizing rollers 102, and are fixedly connected to the surface of the two pulverizing rollers 102.
[0025] During operation, the controller 4 first starts the crushing motor. The crushing motor starts running, and its output shaft drives a crushing roller 102 fixed to it to rotate. Since the two crushing rollers 102 are driven by gears, the other crushing roller 102 also rotates synchronously. As the two crushing rollers 102 rotate, a number of crushing teeth 103 evenly distributed on their surfaces begin to crush the waste plastic that enters the recycling bin 1, gradually breaking the waste plastic into smaller particles for subsequent cleaning and other processing and recycling processes.
[0026] Several crushing teeth 103 are welded and fixed to the surfaces of two crushing rollers 102.
[0027] During the crushing process of waste plastics, the crushing teeth 103 need to continuously come into strong contact with, squeeze and tear the waste plastics, and will be subjected to great impact and friction. Welding and fixing can ensure that the crushing teeth 103 can still be firmly attached to the surface of the crushing roller 102 under long-term and high-intensity working conditions, and will not easily loosen or fall off, thus ensuring that the crushing can continue to operate stably and maintain good crushing performance.
[0028] The cleaning device includes a stirring motor 201, a first auger 202, a retrieval motor, a retrieval roller 204, several retrieval rods 205, a scraper 203, a collection box 206, and four support legs 207. The output shaft of the stirring motor 201 is horizontally oriented and is located below the side of the cleaning tank 2. The stirring motor 201 is fixedly connected to the outer wall of the cleaning tank 2 and electrically connected to the controller 4. The first auger 202 is horizontally oriented and is located inside the cleaning tank 2. The first auger 202 is rotatably connected to the inner wall of the cleaning tank 2 via a rotating shaft, and its rotation axis coincides with its own axis. The first auger 202 is fixedly connected to the output shaft of the stirring motor 201. The output shaft of the retrieval motor is horizontally oriented and perpendicular to the output shaft of the stirring motor 201. The retrieval motor is located above the side of the cleaning tank 2 and is fixedly connected to the outer wall of the cleaning tank 2. The retrieval motor is electrically connected to the controller 4. The retrieval roller 204 is horizontally oriented, its axis coinciding with the output shaft of the retrieval motor. The retrieval roller 204 is housed inside the cleaning tank 2 and rotatably connected to the inner wall of the cleaning tank 2 via a rotating shaft, its rotation axis coinciding with its own axis. The retrieval roller 204 is fixedly connected to the output shaft of the retrieval motor. Several retrieval rods 205 are evenly distributed on the surface of the retrieval roller 204 and fixedly connected to its surface. The scraper 203 is fence-shaped and inclined, positioned above the cleaning tank 2 and above and to the side of the retrieval roller 204. The scraper 203 cooperates with the retrieval rods 205 and is fixedly connected to the cleaning tank 2. A collection box 206 is located to the side of the cleaning tank 2, diagonally below the scraper 203, and fixedly connected to the outer wall of the cleaning tank 2. Four support legs 207 are installed below the cleaning tank 2, and the four support legs 207 are fixedly connected to the bottom surface of the cleaning tank 2.
[0029] During operation, controller 4 first starts the stirring motor 201, which drives the first auger 202 to rotate in the cleaning tank 2, stirring the crushed waste plastic in the cleaning tank 2 so that it can fully contact and mix with the cleaning liquid in the cleaning tank 2, achieving a more comprehensive cleaning of the waste plastic and removing surface dirt and other impurities. Then, controller 4 starts the retrieval motor, which drives the retrieval roller 204 to rotate, causing the retrieval rods 205, which are evenly distributed on its surface, to rotate as well, retrieval impurities floating on the surface from the cleaning liquid. When the waste plastic reaches scraper 203, the inclined, grid-like scraper 203 works in conjunction with the retrieval rod 205 to scrape the impurities off the retrieval rod 205 and allow them to fall down the scraper 203 into the collection box 206 located diagonally below the scraper 203 for collection and storage. This promptly removes impurities that have detached from the waste plastic during the cleaning process and are floating on the liquid surface, preventing impurities from re-adhering to the already cleaned plastic. This further ensures the cleanliness of the waste plastic, helps improve the effectiveness of the entire cleaning process, and minimizes the impurity content of the finally collected waste plastic.
[0030] The conveying device includes a conveying pipe 3, a conveying motor 301, a second auger 303, and a discharge pipe 302. The conveying pipe 3 is inclined along its axis and is located on the side of the cleaning tank 2. The conveying pipe 3 is fixedly connected to and communicates with the side wall of the cleaning tank 2. The output shaft of the conveying motor 301 is also inclined, with its axis coinciding with the axis of the conveying pipe 3. The conveying motor 301 is located on the end face of the conveying pipe 3 and is fixedly connected to the end face of the conveying pipe 3. The conveying motor 301 is electrically connected to the controller 4. The second auger 303 is also inclined, with its axis coinciding with the output shaft of the conveying motor 301. The second auger 303 is located inside the conveying pipe 3 and is rotatably connected to the end face of the conveying pipe 3 via a rotating shaft. Its rotation axis coincides with its own axis. The second auger 303 is fixedly connected to the output shaft of the conveying motor 301. The conveying pipe 3 is located diagonally below the conveying motor 301, and the discharge pipe 302 passes through the side wall of the conveying pipe 3 and is connected inside and outside.
[0031] During operation, the controller 4 starts the conveying motor 301, which starts running and drives the second auger 303 fixed to it to rotate synchronously. The waste plastic at the bottom of the washing tank 2 is pushed by the rotation of the second auger 303 and moves gradually along the inclined conveying pipe 3. Finally, it is output outward through the discharge pipe 302 that runs through the side wall of the conveying pipe 3 and connects the inside and outside, so that the waste plastic can smoothly enter the subsequent further processing stage.
[0032] The material conveying motor 301 is bolted to the end face of the material conveying pipe 3 via a flange.
[0033] The bolted connection is secured by multiple bolts evenly distributed on the flange, which provides a stable and reliable connection force during the operation of the conveying motor 301. This ensures that the conveying motor 301 is firmly fixed to the end face of the conveying pipe 3, and that the motor output shaft and the second auger 303 inside the conveying pipe 3 maintain good coaxiality and a stable transmission relationship. Even under conditions such as long-term operation of the conveying motor 301, vibration, and the reaction force from the second auger 303 pushing the waste plastic, the connection will not easily loosen, and the normal operation of the conveying device will be maintained.
[0034] Working principle:
[0035] After the waste plastic enters the recycling bin 1 through the feed inlet 101 that connects the inside and outside of the top of the recycling bin 1, the crushing motor is started by the controller 4. The output shaft of the crushing motor drives one crushing roller 102 to rotate. With the help of gear transmission, the other crushing roller 102 rotates synchronously. The crushing teeth 103 distributed on the surface of the two crushing rollers 102 powerfully crush the waste plastic, breaking it into small particles that fall into the washing tank 2 connected to it below.
[0036] Next, the stirring motor 201 and the scooping motor are started by the controller 4. First, the stirring motor 201 drives the first auger 202 to rotate in the cleaning tank 2, so that the crushed waste plastic and the cleaning liquid can be fully mixed to remove dirt and impurities. Then, the scooping motor drives the scooping roller 204 to rotate. The rotation of the scooping roller 204 drives the scooping rod 205 to rotate and pick up the impurities floating on the surface. Then, the scraper 203 is used to scrape the impurities into the collection box 206, further improving the cleanliness of the waste plastic.
[0037] After cleaning is completed, the conveying motor 301 is started by the controller 4. The conveying motor 301 drives the second auger 303 to rotate. The waste plastic at the bottom of the cleaning tank 2 moves along the inclined conveying pipe 3 under the push of the second auger 303, and is finally output out through the discharge pipe 302, so that it can smoothly enter the subsequent further processing stage.
[0038] The above embodiments are only some embodiments of this utility model, not all embodiments. Other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are all within the protection scope of this utility model.
Claims
1. A waste plastic processing, recycling, and regeneration device, characterized in that: The system includes a recycling bin (1), a feed inlet (101), a washing tank (2), a support (104), a crushing device, a washing device, a conveying device, and a controller (4). The feed inlet (101) is located on the top of the recycling bin (1) and is connected to the inside and outside. The support (104) is claw-shaped and is located below the recycling bin (1) and to the side of the washing tank (2). The support (104) is fixedly connected to the outer bottom surface of the recycling bin (1) and the side surface of the washing tank (2). The recycling bin (1) is located diagonally above the washing tank (2). The recycling bin (1) is fixedly connected to the cleaning tank (2) via a bracket (104), and the recycling bin (1) and the cleaning tank (2) are interconnected; the crushing device is installed on the recycling bin (1) and is connected to the recycling bin (1); the cleaning device is installed on the cleaning tank (2) and is connected to the cleaning tank (2); the conveying device is installed on the cleaning tank (2) and is connected to the cleaning tank (2); the controller (4) is installed on the recycling bin (1) and is electrically connected to the crushing device, the cleaning device, and the conveying device.
2. The waste plastic processing, recycling, and regeneration device according to claim 1, characterized in that: The crushing device includes a crushing motor, two crushing rollers (102), and several crushing teeth (103); the output shaft of the crushing motor is arranged horizontally, the crushing motor is located on the side of the recycling box (1), the crushing motor is fixedly connected to the outer wall of the recycling box (1), and the crushing motor is electrically connected to the controller (4); the two crushing rollers (102) are arranged horizontally, their axes are parallel to the output shaft of the crushing motor, the two crushing rollers (102) are located inside the recycling box (1), the two crushing rollers (102) are rotatably connected to the inner wall of the recycling box (1) through a rotating shaft, their rotation axis coincides with their own axis, one crushing roller (102) is fixedly connected to the output shaft of the crushing motor, and the two crushing rollers (102) are connected to each other through gear transmission; several crushing teeth (103) are evenly distributed on the surface of the two crushing rollers (102), and several crushing teeth (103) are fixedly connected to the surface of the two crushing rollers (102).
3. The waste plastic processing, recycling, and regeneration device according to claim 2, characterized in that: Several of the crushing teeth (103) are welded and fixed to the surfaces of the two crushing rollers (102).
4. The waste plastic processing, recycling, and regeneration device according to claim 1, characterized in that: The cleaning device includes a stirring motor (201), a first auger (202), a retrieval motor, a retrieval roller (204), several retrieval rods (205), a scraper (203), a collection box (206), and four support legs (207). The output shaft of the stirring motor (201) is arranged horizontally, and the stirring motor (201) is located below the side of the cleaning tank (2). The stirring motor (201) is fixedly connected to the outer wall of the cleaning tank (2), and the stirring motor (201) is electrically connected to the controller (4). The first auger (202) is arranged horizontally, and the first auger (202) is located below the side of the cleaning tank (2). Inside the cleaning tank (2), the first auger (202) is rotatably connected to the inner wall of the cleaning tank (2) via a rotating shaft, and its rotation axis coincides with its own axis. The first auger (202) is fixedly connected to the output shaft of the stirring motor (201). The output shaft of the retrieval motor is arranged horizontally, and its axis is perpendicular to the output shaft of the stirring motor (201). The retrieval motor is located above the side of the cleaning tank (2), and the retrieval motor is fixedly connected to the outer wall of the cleaning tank (2). The retrieval motor is electrically connected to the controller (4). The axis of the retrieval roller (204) is arranged horizontally, and its axis is perpendicular to the output shaft of the stirring motor (201). The output shaft of the retrieval motor is aligned with the axis of the retrieval roller (204), which is located inside the cleaning tank (2). The retrieval roller (204) is rotatably connected to the inner wall of the cleaning tank (2) via a rotating shaft, and its rotation axis is aligned with its own axis. The retrieval roller (204) is fixedly connected to the output shaft of the retrieval motor. Several retrieval rods (205) are evenly distributed on the surface of the retrieval roller (204), and several retrieval rods (205) are fixedly connected to the surface of the retrieval roller (204). The scraper (203) is fence-shaped and is inclined. The scraper (203) is located in the cleaning tank. (2) Above, the scraper (203) is disposed above the side of the scooping roller (204), the scraper (203) cooperates with a plurality of scooping rods (205), and the scraper (203) is fixedly connected to the cleaning tank (2); the collection box (206) is disposed on the side of the cleaning tank (2), the collection box (206) is disposed diagonally below the scraper (203), and the collection box (206) is fixedly connected to the outer wall of the cleaning tank (2); the four support legs (207) are disposed below the cleaning tank (2), and the four support legs (207) are fixedly connected to the bottom surface of the cleaning tank (2).
5. The waste plastic processing, recycling, and regeneration device according to claim 1, characterized in that: The conveying device includes a conveying pipe (3), a conveying motor (301), a second auger (303), and a discharge pipe (302). The conveying pipe (3) has an inclined axis and is located on the side of the cleaning tank (2). The conveying pipe (3) is fixedly connected to the side wall of the cleaning tank (2) and they are interconnected. The output shaft of the conveying motor (301) has an inclined axis, which coincides with the axis of the conveying pipe (3). The conveying motor (301) is located on the end face of the conveying pipe (3) and is fixedly connected to the end face of the conveying pipe (3). Electrically connected to the controller (4); the second auger (303) is inclined, and its axis coincides with the output shaft axis of the conveying motor (301). The second auger (303) is located inside the conveying pipe (3). The second auger (303) is rotatably connected to the end face of the conveying pipe (3) through a rotating shaft. Its rotation axis coincides with its own axis. The second auger (303) is fixedly connected to the output shaft of the conveying motor (301). The conveying pipe (3) is located obliquely below the conveying motor (301). The discharge pipe (302) penetrates the side wall of the conveying pipe (3) and is connected inside and outside.
6. The waste plastic processing, recycling, and regeneration device according to claim 5, characterized in that: The material conveying motor (301) is bolted to the end face of the material conveying pipe (3) via a flange.