Recycling equipment for plastic products

By using clamping and extrusion components to cut and extrude plastic products into the crushing rollers, combined with a pipe deflection air supply and cooling system, the problem of plastic products clogging the feed is solved, crushing efficiency is improved and equipment temperature is reduced.

CN121928702APending Publication Date: 2026-04-28JIANGYIN YUHENG PLASTIC PROD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
JIANGYIN YUHENG PLASTIC PROD CO LTD
Filing Date
2026-01-23
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

In existing technologies, plastic products, due to their high elasticity, are difficult to enter the crushing roller quickly, leading to blockage of the feeding position and affecting crushing efficiency.

Method used

The system uses clamping and extrusion components to cut and extrude plastic products into the crushing rollers. Combined with a pipe deflection air supply and cooling system, it solves the blockage problem and improves crushing efficiency.

Benefits of technology

It effectively solves the problem of plastic products being difficult to enter the crushing roller, improves crushing efficiency, and reduces the equipment temperature by using an air cooling system, thereby reducing the risk of plastic products sticking.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses recycling equipment for plastic products, and relates to the technical field of waste plastic recycling. Comprising a base and further comprises a crushing box arranged above the base and a crushing roller installed in the crushing box. The connecting box is mounted above the crushing box; and the processing mechanism is arranged in the connecting box and comprises a first lifting rod, a clamping assembly installed at the telescopic end of the first lifting rod and a cutter arranged above the crushing rollers, and the first lifting rod and the clamping assembly are used for driving materials to enter the position between the two crushing rollers after being cut by the cutter. The control system is arranged above the base and is used for driving the crushing rollers to rotate; the collecting box is mounted at the bottom of the crushing box. The processing mechanism further comprises a groove, and the fixed end of the first lifting rod is installed in the groove. According to the recycling equipment for the plastic products, the purpose of improving the use efficiency of the equipment is achieved.
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Description

Technical Field

[0001] This invention relates to the field of waste plastic recycling technology, specifically to a recycling and reuse device for plastic products. Background Technology

[0002] Excessive accumulation of waste plastics has a serious impact on the environment. Plastics are not easily degraded, and their decomposition process releases harmful substances, leading to pollution of soil, air, and water. Recycling and reusing plastic waste can reduce the accumulation of these wastes, reduce the risk of environmental pollution, and reduce the demand for new plastics by recycling and reusing plastic waste, thereby saving resources. Therefore, waste plastic recycling is very important.

[0003] A plastic waste recycling device is disclosed in invention patent publication number CN120886392A. By employing an adaptive waste characteristic crushing component and a screening component, the crushing and screening processes can be adaptively adjusted, enabling more precise separation of different types of plastic waste. However, when crushing plastic products, due to the high elasticity of plastic products, it is difficult for them to quickly enter the crushing roller. The entire piece of plastic product tends to bounce above the crushing roller, clogging the feeding position. Summary of the Invention

[0004] To overcome the problem that when crushing plastic products, due to their high elasticity, it is difficult for the plastic products to quickly enter the crushing rollers, and the entire plastic product tends to bounce above the crushing rollers, clogging the feeding position, this invention provides a recycling and reuse device for plastic products, including a base, and further comprising: The crushing box is located above the base, and the crushing rollers are installed inside the crushing box. A connecting box installed above the crushing box; The processing mechanism located inside the connecting box includes a first lifting rod, a clamping assembly installed at the telescopic end of the first lifting rod, and a cutting tool located above the crushing roller. The first lifting rod and the clamping assembly are used to drive the material to enter between the two crushing rollers after being cut by the cutting tool.

[0005] Preferably, it further includes: A control system located above the base is used to drive the crushing roller to rotate. Collection box installed at the bottom of the crushing chamber.

[0006] Preferably, the processing mechanism further includes: A groove is formed inside the connecting box, and the fixed end of the first lifting rod is installed inside the groove; The mounting block is installed inside the connecting box, and an extrusion assembly is provided on the outside of the mounting block; A first connecting frame is connected to a connecting box, and the first connecting frame is in communication with the connecting box; The second connecting frame is connected to the connecting box, and the second connecting frame is in communication with the connecting box.

[0007] Preferably, the processing mechanism further includes: The motor housing and the motor disposed inside the motor housing, wherein the motor housing is mounted outside the first connecting frame; A rotating base is connected to the output end of a motor and is driven to rotate by the motor. The first push rod and the connecting bracket connected to the telescopic end of the first push rod, wherein the fixed end of the first push rod is installed outside the connecting box; The pipe and the ventilation opening inside the pipe are rotatably connected to the connecting frame. The pipe is adapted to the rotating seat. The motor drives the rotating seat and the pipe to rotate, thereby adjusting the orientation of the ventilation opening.

[0008] Preferably, the processing mechanism further includes: An outer ring, which is rotatably connected to the outside of the pipe; The fixing base is provided in multiple ways, some of which are installed inside the first connecting frame and others are installed inside the second connecting frame, and the cutting tool is installed inside the fixing base; The side plate and the through groove inside the side plate facilitate the connection between the ventilation port and the through groove, thereby supplying air to the tool for cooling. The side plate is installed inside the fixed base and is located on both sides of the tool.

[0009] Preferably, the clamping assembly includes: A movable seat, which is connected to the telescopic end of the first lifting rod; A center plate, which is connected to a movable seat via a first adjusting rod; The contact plate and the channel formed inside the contact plate are connected to the center plate via a second push rod.

[0010] Preferably, the extrusion assembly includes: A first movable frame, which is connected to the mounting block; The second movable frame is connected to the first movable frame; The telescopic rod and the circular plate installed on the outside of the telescopic rod, the telescopic rod being connected to the second movable frame via an adjusting bend rod, the circular plate outside the telescopic rod being used to compress plastic products in the clamping assembly.

[0011] Preferably, the extrusion assembly further includes: A movable frame is disposed above the first movable frame and is used to collect impurities; A scraper is installed outside the movable frame and is inclined. The scraper is used to scrape away impurities on the side of the plastic product.

[0012] Preferably, the extrusion assembly further includes: A limiting frame, wherein the limiting frame is installed inside the first movable frame; A connecting platform is slidably connected inside a limiting frame. The connecting platform is connected to a moving frame, and the limiting frame is used to restrict the movement direction of the connecting platform. A spring, one end of which is connected to the first movable frame, and the other end of which is connected to the connecting platform.

[0013] This invention provides a device for recycling and reusing plastic products. It has the following beneficial effects: 1. This equipment for recycling and reusing plastic products uses a processing mechanism and a clamping assembly to move the plastic product to be crushed towards the blades. After being cut by the blades, the cut plastic product moves between two crushing rollers. Existing equipment, when crushing plastic products, suffers from high elasticity, making it difficult for the plastic product to quickly enter the crushing rollers. The entire piece of plastic product tends to bounce above the crushing rollers, blocking the feeding position. Therefore, the equipment incorporates a clamping assembly, blades, and a compression assembly. Before crushing, the entire piece of plastic product is cut open and compressed, making it easier for the bottom of the plastic product to enter the crushing rollers, thus solving the aforementioned problem.

[0014] 2. This equipment for recycling and reusing plastic products, through the setting of a processing mechanism, ensures that the pipeline is located away from the connection box before the crushing operation to prevent impurities from entering the ventilation openings; after the crushing operation, the pipeline is deflected by the motor and the rotating seat, and the ventilation openings in the pipeline will be directed towards the through groove in the side plate, the side of the blades, and the crushing roller during the deflection process, thereby completing the air supply and cooling of the blades, the air supply treatment of impurities on the blades, and the air supply and cooling of the crushing rollers.

[0015] 3. This equipment for recycling and reusing plastic products, by setting up a processing mechanism and clamping components, uses two sets of L-shaped plates in two clamping components to clamp the two ends of the bottom of the plastic product. The first lifting rod drives the clamping components and the plastic product to pass through the cutter. Then, the second push rod drives the L-shaped plates to release the plastic product. The crushing roller crushes the plastic product to complete the transportation of the plastic product. The bottom of the plastic product is sent into the crushing roller to avoid the situation where the plastic product is difficult to enter the crushing roller.

[0016] 4. This equipment for recycling and reusing plastic products, through the setting of a processing mechanism and an extrusion assembly, allows the plastic product to move downwards as the clamping assembly pulls it. The telescopic rod and the circular plate enter the channel within the contact plate, where the circular plate repeatedly extrudes the plastic product. The trapezoidal frame repeatedly extrudes the plastic product on its sides, creating horizontal indentations on the outer surface, promoting the engagement between the plastic product and the crushing roller. Furthermore, cooling plates within the trapezoidal frame cool the plastic product, and pipes are used to cool the crushing roller after crushing, thereby reducing the temperature of both the plastic product and the crushing roller and minimizing the possibility of the plastic product softening and adhering to the crushing roller due to high temperatures. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a structural schematic diagram from another perspective of the present invention; Figure 3 This is a schematic diagram of the crushing box of the present invention; Figure 4 This is a schematic diagram of the processing mechanism of the present invention; Figure 5 This is a schematic diagram of the processing mechanism of the present invention from another perspective; Figure 6 For the present invention Figure 5 Schematic diagram of the structure at point A; Figure 7 This is a schematic diagram of the connecting box of the present invention; Figure 8 This is a schematic diagram of the structure of the clamping assembly of the present invention; Figure 9 This is a schematic diagram of the extrusion assembly of the present invention; Figure 10 This is a structural schematic diagram of the extrusion assembly of the present invention from another perspective.

[0018] In the diagram: 1. Base; 2. Crushing box; 3. Connecting box; 4. Processing mechanism; 401. Groove; 402. First lifting rod; 403. Clamping assembly; 4031. Moving seat; 4032. First adjusting rod; 4033. Center plate; 4034. Second push rod; 4035. Contact plate; 4036. Channel; 404. Mounting block; 405. Extrusion assembly; 4051. First moving frame; 4052. Second moving frame; 4053. Adjusting bending rod; 4 054. Telescopic rod; 4055. Moving frame; 4056. Scraper; 4057. Connecting platform; 4058. Spring; 4059. Limiting frame; 406. First connecting frame; 407. Motor box; 408. First push rod; 409. Connecting frame; 410. Pipe; 411. Second connecting frame; 412. Outer ring; 413. Fixed seat; 414. Side plate; 415. Cutting tool; 416. Rotating seat; 5. Control system; 6. Crushing roller; 7. Collection box. Detailed Implementation

[0019] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for a particular purpose.

[0020] like Figures 1-10 As shown, the present invention provides a technical solution: a recycling and reuse device for plastic products, which is described below.

[0021] Including base 1, it also includes: The crushing box 2 is set above the base 1 and the crushing roller 6 is installed inside the crushing box 2. There are two crushing rollers 6. The connecting box 3 is installed above the crushing box 2; The processing mechanism 4 is located inside the connecting box 3. The processing mechanism 4 includes a first lifting rod 402, a clamping assembly 403 installed at the telescopic end of the first lifting rod 402, and a cutter 415 located above the crushing roller 6. The first lifting rod 402 and the clamping assembly 403 are used to drive the material to enter between the two crushing rollers 6 after being cut by the cutter 415. The first lifting rod 402 is set as an electric push rod. There are two cutters 415. The first lifting rod 402 and the clamping assembly 403 are symmetrically arranged in twos. The control system 5 is located above the base 1 and is used to drive the crushing roller 6 to rotate. Collection box 7 is installed at the bottom of crushing box 2.

[0022] Before using the equipment, adjust the clamping assembly 403 according to the size of the plastic product to be crushed, and then place the bottom of the plastic product to be crushed in the clamping assembly 403. The processing mechanism 4 controls the clamping assembly 403 to move the plastic product to be crushed between the crushing rollers 6. After being cut by the cutter 415, the plastic product to be crushed enters the two crushing rollers 6. The control system 5 drives the crushing rollers 6 to rotate, crushing the plastic product. Then the crushed plastic product moves downward into the collection box 7, completing the recycling and reuse of the plastic product.

[0023] Processing unit 4 also includes: The groove 401 is formed inside the connecting box 3, and the fixed end of the first lifting rod 402 is installed inside the groove 401; Mounting block 404 is installed inside the connecting box 3. An extrusion assembly 405 is provided on the outside of the mounting block 404. There are two mounting blocks 404 and two extrusion assemblies 405. There are two first connecting frames 406. The first connecting frame 406 is connected to the connecting box 3 and is in communication with the connecting box 3. There are two second connecting frames 411. The second connecting frames 411 are connected to the connecting box 3 and are in communication with the connecting box 3. The motor housing 407 and the motor disposed inside the motor housing 407 are mounted on the outside of the first connecting frame 406; Rotary seat 416 is connected to the output end of the motor and is adapted to pipe 410; The first push rod 408 and the connecting frame 409 connected to the telescopic end of the first push rod 408 are provided. The fixed end of the first push rod 408 is installed outside the connecting box 3. The first push rod 408 is configured as an electric push rod. Pipe 410 and ventilation opening inside pipe 410; pipe 410 is rotatably connected to connecting frame 409; pipe 410 is connected to external fan. The outer ring 412 is composed of an annular outer ring 412 and a connecting block. The connecting block is made of magnetic material. The outer ring 412 is rotatably connected to the outside of the pipe 410. The fixing seat 413 is provided in multiple ways. Some of the fixing seats 413 are installed inside the first connecting frame 406, and other fixing seats 413 are installed inside the second connecting frame 411. The cutter 415 is installed inside the fixing seat 413. Side plate 414 and through groove opened inside side plate 414 are installed inside fixed base 413. Side plate 414 is set on both sides of tool 415. Side plate 414 is made of magnetic material.

[0024] The process of using processing mechanism 4 to clamp the plastic product to be crushed: The clamping assembly 403 is adjusted according to the size of the plastic product to be crushed, and then the bottom of the plastic product to be crushed is placed in the clamping assembly 403.

[0025] The process of using processing mechanism 4 to crush plastic products: The first lifting rod 402 is activated, which drives the clamping assembly 403 and the plastic product to be crushed to move downward. The extrusion assembly 405 is adjusted to extrude and scrape the plastic product to be crushed.

[0026] The process of using processing mechanism 4 to cut plastic products to be crushed: As the first lifting rod 402 drives the clamping assembly 403 and the plastic product to be crushed to move downward, the plastic product to be crushed comes into contact with the cutter 415. After being cut by the cutter 415, the plastic product to be crushed enters the two crushing rollers 6.

[0027] The process of using processing mechanism 4 to cool down crushing roller 6 and cutter 415: Before crushing, the first push rod 408 is in the start state, and the outer ring 412 is in the second connecting frame 411. After crushing, the stroke of the first push rod 408 is adjusted, and the first push rod 408 controls the pipe 410 to move towards the rotating seat 416. At this time, the outer ring 412 moves with the pipe 410, and the outer ring 412 is always magnetically attracted to the side plate 414 to maintain the direction of movement of the pipe 410 until the pipe 410 enters the rotating seat 416. The motor in the motor box 407 is started, and the motor drives the rotating seat 416 to deflect. The rotating seat 416 drives the pipe 410 to deflect, keeping the ventilation opening of the pipe 410 from facing the feeding direction. When the external fan is turned on to the cooling air mode, the gas moves outward through the ventilation port inside the pipe 410. As the pipe 410 rotates, when the ventilation port faces the through groove in the side plate 414, the gas moves through the through groove to the cutter 415 to cool the cutter 415; when the ventilation port faces the side of the cutter 415, it promotes the movement of impurities on the cutter 415; when the ventilation port faces the crushing roller 6, it cools the crushing roller 6.

[0028] By setting up the processing mechanism 4, the clamping assembly 403 drives the plastic product to be crushed towards the direction of the cutter 415. After being cut by the cutter 415, the cut plastic product moves between the two crushing rollers 6. In existing equipment, when crushing plastic products, due to the high elasticity of the plastic products, it is difficult for them to quickly enter the crushing rollers 6. The whole piece of plastic product tends to bounce above the crushing rollers 6, blocking the feeding position. Therefore, the clamping assembly 403, the cutter 415, and the extrusion assembly 405 are set up to cut the whole piece of plastic product before the crushing operation, and to extrude the plastic product, making it easier for the bottom of the plastic product to enter the crushing rollers 6, thereby solving the above problems.

[0029] By setting up the processing mechanism 4, before the crushing operation, the pipe 410 is located away from the connecting box 3 to prevent impurities from entering the vent. After the crushing operation, the pipe 410 is deflected by the motor and the rotating seat 416. During the deflection process, the vent in the pipe 410 will face the through groove in the side plate 414, the side of the cutter 415, and the crushing roller 6, thereby completing the air supply and cooling of the cutter 415, the air supply treatment of impurities on the cutter 415, and the air supply and cooling of the crushing roller 6.

[0030] Clamping assembly 403 includes: The movable seat 4031 is connected to the telescopic end of the first lifting rod 402; The center plate 4033 is connected to the movable seat 4031 via the first adjusting rod 4032. The first adjusting rod 4032 is configured as a rod whose length can be manually adjusted. The contact plate 4035 and the channel 4036 opened inside the contact plate 4035 are connected to the center plate 4033 via the second push rod 4034. The contact plate 4035 is set as an L-shaped plate, and the second push rod 4034 is set as an electric push rod.

[0031] The process of using clamping assembly 403 to clamp the bottom of a plastic product: Based on the dimensions of this batch of plastic products, manually adjust the dimensions of the first adjusting rod 4032, thereby adjusting the distance between the two clamping components 403. Then adjust the second push rod 4034 to the corresponding stroke, so that the L-shaped plates on both sides clamp and fix the two ends of the plastic products.

[0032] As the plastic product is cut by the blade 415, the stroke of the second push rod 4034 is adjusted, the L-shaped plate gradually moves away from and releases the plastic product, and the plastic product enters the crushing roller 6 for crushing.

[0033] By setting up the processing mechanism 4 and the clamping assembly 403, the two sets of L-shaped plates in the two clamping assemblies 403 clamp the two ends of the bottom of the plastic product. The first lifting rod 402 drives the clamping assembly 403 and the plastic product to pass through the cutter 415. Then, the second push rod 4034 drives the L-shaped plate to release the plastic product. The crushing roller 6 crushes the plastic product to complete the transportation of the plastic product. The bottom of the plastic product is sent into the crushing roller 6 to avoid the situation where the plastic product is difficult to enter the crushing roller 6.

[0034] The extrusion assembly 405 includes: The first movable frame 4051 is connected to the mounting block 404. The first movable frame 4051 is composed of an electric push rod in the horizontal direction and a first frame body. The second movable frame 4052 is connected to the first movable frame 4051. The second movable frame 4052 is composed of an electric push rod in the horizontal direction and a second frame body. The second frame body is configured as a trapezoidal frame, with an inclined surface on the side facing the plastic product, and a cooling plate is installed inside the trapezoidal frame. The telescopic rod 4054 and the circular plate installed on the outside of the telescopic rod 4054 are connected to the second movable frame 4052 through the adjusting bending rod 4053. The movable frame 4055 is detachably mounted above the first movable frame 4051; Scraper 4056 is installed outside the movable frame 4055 and is set at an angle. Limiting frame 4059 is installed inside the first movable frame 4051; Connecting platform 4057 is slidably connected inside the limiting frame 4059, and connecting platform 4057 is connected to moving frame 4055; Spring 4058, one end of spring 4058 is connected to the first movable frame 4051, and the other end of spring 4058 is connected to the connecting platform 4057.

[0035] The process of using extrusion assembly 405 to extrude the plastic product to be crushed: The electric push rod in the first moving frame 4051 is activated, and the electric push rod drives the first moving frame 4051 to move towards the plastic product. The scraper 4056 comes into contact with the plastic product. As the plastic product moves downward, the scraper 4056 begins to scrape away the impurities on the plastic product, and the impurities gradually fall into the moving frame 4055.

[0036] The electric push rod in the second moving frame 4052 is activated to reciprocating motion mode. The electric push rod drives the trapezoidal frame, adjusting bending rod 4053, telescopic rod 4054, and circular plate to reciprocate horizontally. The telescopic rod 4054 and the circular plate enter the channel 4036 in the contact plate 4035. The circular plate repeatedly squeezes the plastic product in the contact plate 4035, and the telescopic rod 4054 undergoes corresponding telescopic deformation. The trapezoidal frame repeatedly squeezes the plastic product on the side. The cooling plate in the trapezoidal frame transfers temperature to the plastic product, promoting the cooling of the plastic product. During the squeezing process, the trapezoidal frame squeezes several horizontal indentations on the outer surface of the plastic product, promoting the interlocking work between the plastic product and the crushing roller 6.

[0037] By setting up the processing mechanism 4 and the extrusion assembly 405, during the downward movement of the plastic product driven by the clamping assembly 403, the telescopic rod 4054 and the circular plate enter the channel 4036 in the contact plate 4035. The circular plate repeatedly extrudes the plastic product in the contact plate 4035; the trapezoidal frame repeatedly extrudes the plastic product on the side, extruding several horizontal indentations on the outer surface of the plastic product, promoting the interlocking work between the plastic product and the crushing roller 6. Furthermore, the cooling plates in the trapezoidal frame are used to cool the plastic product, and the pipe 410 is used to cool the crushing roller 6 after crushing, thereby reducing the temperature of the plastic product and the crushing roller 6, and reducing the occurrence of the plastic product softening and sticking to the crushing roller 6 due to high temperature.

[0038] Working principle: Before using the equipment, adjust the clamping component 403 according to the size of the plastic product to be crushed, and then place the bottom of the plastic product to be crushed in the clamping component 403.

[0039] Based on the dimensions of this batch of plastic products, manually adjust the dimensions of the first adjusting rod 4032, thereby adjusting the distance between the two clamping components 403. Then adjust the second push rod 4034 to the corresponding stroke, so that the L-shaped plates on both sides clamp and fix the two ends of the plastic products.

[0040] The first lifting rod 402 is activated, which drives the clamping assembly 403 and the plastic product to be crushed to move downward. The extrusion assembly 405 is adjusted to extrude and scrape the plastic product to be crushed.

[0041] The electric push rod in the first moving frame 4051 is activated, and the electric push rod drives the first moving frame 4051 to move towards the plastic product. The scraper 4056 comes into contact with the plastic product. As the plastic product moves downward, the scraper 4056 begins to scrape away the impurities on the plastic product, and the impurities gradually fall into the moving frame 4055.

[0042] The electric push rod in the second moving frame 4052 is activated to reciprocating motion mode. The electric push rod drives the trapezoidal frame, adjusting bending rod 4053, telescopic rod 4054, and circular plate to reciprocate horizontally. The telescopic rod 4054 and the circular plate enter the channel 4036 in the contact plate 4035. The circular plate repeatedly squeezes the plastic product in the contact plate 4035, and the telescopic rod 4054 undergoes corresponding telescopic deformation. The trapezoidal frame repeatedly squeezes the plastic product on the side. The cooling plate in the trapezoidal frame transfers temperature to the plastic product, promoting the cooling of the plastic product. During the squeezing process, the trapezoidal frame squeezes several horizontal indentations on the outer surface of the plastic product, promoting the interlocking work between the plastic product and the crushing roller 6.

[0043] The processing mechanism 4 controls the clamping assembly 403 to move the plastic product to be crushed between the crushing rollers 6. After being cut by the cutter 415, the plastic product to be crushed enters the two crushing rollers 6. The control system 5 drives the crushing rollers 6 to rotate, crushing the plastic product. Then the crushed plastic product moves downward into the collection box 7, completing the recycling and reuse of the plastic product.

[0044] Before crushing, the first push rod 408 is in the start state, and the outer ring 412 is in the second connecting frame 411. After crushing, the stroke of the first push rod 408 is adjusted, and the first push rod 408 controls the pipe 410 to move towards the rotating seat 416. At this time, the outer ring 412 moves with the pipe 410, and the outer ring 412 is always magnetically attracted to the side plate 414 to maintain the direction of movement of the pipe 410 until the pipe 410 enters the rotating seat 416. The motor in the motor box 407 is started, and the motor drives the rotating seat 416 to deflect. The rotating seat 416 drives the pipe 410 to deflect, keeping the ventilation opening of the pipe 410 from facing the feeding direction. When the external fan is turned on to the cooling air mode, the gas moves outward through the ventilation port inside the pipe 410. As the pipe 410 rotates, when the ventilation port faces the through groove in the side plate 414, the gas moves through the through groove to the cutter 415 to cool the cutter 415; when the ventilation port faces the side of the cutter 415, it promotes the movement of impurities on the cutter 415; when the ventilation port faces the crushing roller 6, it cools the crushing roller 6.

[0045] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.

Claims

1. A recycling and reuse device for plastic products, comprising a base (1), characterized in that, Also includes: The crushing box (2) is set above the base (1) and the crushing roller (6) is installed inside the crushing box (2); The connecting box (3) is installed above the crushing box (2); The processing mechanism (4) is located inside the connecting box (3). The processing mechanism (4) includes a first lifting rod (402), a clamping assembly (403) installed at the telescopic end of the first lifting rod (402), and a cutter (415) located above the crushing roller (6). The first lifting rod (402) and the clamping assembly (403) are used to drive the material to enter between the two crushing rollers (6) after being cut by the cutter (415).

2. The recycling and reuse equipment for plastic products according to claim 1, characterized in that: Also includes: A control system (5) is installed above the base (1), which is used to drive the crushing roller (6) to rotate. Collection box (7) installed at the bottom of crushing box (2).

3. The recycling and reuse equipment for plastic products according to claim 1, characterized in that: The processing mechanism (4) further includes: The groove (401) is formed inside the connecting box (3), and the fixed end of the first lifting rod (402) is installed inside the groove (401); Mounting block (404) is installed inside the connecting box (3), and an extrusion assembly (405) is provided on the outside of the mounting block (404). The first connecting frame (406) is connected to the connecting box (3), and the first connecting frame (406) is in communication with the connecting box (3); The second connecting frame (411) is connected to the connecting box (3) and the second connecting frame (411) is in communication with the connecting box (3).

4. The recycling and reuse equipment for plastic products according to claim 3, characterized in that: The processing mechanism (4) further includes: The motor housing (407) and the motor disposed inside the motor housing (407) are mounted outside the first connecting frame (406); Rotary seat (416), which is connected to the output end of the motor; The first push rod (408) and the connecting bracket (409) connected to the telescopic end of the first push rod (408) are installed on the outside of the connecting box (3); The pipe (410) and the vent inside the pipe (410) are rotatably connected to the connecting frame (409).

5. The recycling and reuse equipment for plastic products according to claim 4, characterized in that: The processing mechanism (4) further includes: An outer ring (412) is rotatably connected to the outside of the pipe (410); A fixing seat (413) is provided in multiple locations, some of which are installed inside the first connecting frame (406), and others are installed inside the second connecting frame (411). The cutting tool (415) is installed inside the fixing seat (413). Side plate (414) and through slot opened inside side plate (414), side plate (414) is installed inside fixed base (413), side plate (414) is arranged on both sides of tool (415).

6. The recycling and reuse equipment for plastic products according to claim 5, characterized in that: The clamping assembly (403) includes: A movable seat (4031) is connected to the telescopic end of the first lifting rod (402); A center plate (4033) is connected to a movable seat (4031) via a first adjusting rod (4032); The contact plate (4035) and the channel (4036) formed inside the contact plate (4035) are connected to the center plate (4033) via a second push rod (4034).

7. The recycling and reuse equipment for plastic products according to claim 6, characterized in that: The extrusion assembly (405) includes: The first movable frame (4051) is connected to the mounting block (404); The second movable frame (4052) is connected to the first movable frame (4051); The telescopic rod (4054) and the circular plate installed on the outside of the telescopic rod (4054) are connected to the second movable frame (4052) via an adjusting bend rod (4053).

8. The recycling and reuse equipment for plastic products according to claim 7, characterized in that: The extrusion assembly (405) further includes: A movable frame (4055) is disposed above the first movable frame (4051); A scraper (4056) is installed outside the movable frame (4055) and is inclined.

9. The recycling and reuse equipment for plastic products according to claim 8, characterized in that: The extrusion assembly (405) further includes: A limiting frame (4059) is installed inside the first movable frame (4051); A connecting platform (4057) is slidably connected inside a limiting frame (4059), and the connecting platform (4057) is connected to a moving frame (4055); A spring (4058) is provided, one end of which is connected to a first movable frame (4051), and the other end of which is connected to a connecting platform (4057).

Citation Information

Patent Citations

  • Plastic waste recycling device

    CN120886392A