Material distribution device based on plastic particle production

By designing an automated material distribution device, the problem of the inability of existing material distribution devices to flexibly adjust the material distribution ratio has been solved, achieving uniform material distribution and efficient production, thereby improving production efficiency and product quality.

CN223891859UActive Publication Date: 2026-02-10DONG GUAN SHI JIE JIA SU JIAO YOU XIAN GONG SI
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Patent Information

Application Number
CN202520595676.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-02-10
Estimated Expiration
2035-03-31

AI Technical Summary

Technical Problem

The existing material distribution device in the plastic pellet production process lacks flexibility and cannot adjust the material distribution ratio in real time according to production needs, resulting in low production efficiency.

Method used

A material diversion device for plastic pellet production was designed, including a feeding component, a diversion component, and a distribution component. The diversion drive and diversion chute realize the automatic adjustment of materials. The diversion surface and arc structure ensure uniform material distribution. The diversion linear motor achieves millimeter-level positioning accuracy. The distribution component adjusts the size of the discharge port through an inclined structure and drive component. The screening component performs multi-stage screening.

Benefits of technology

It enables flexible adjustment of material distribution ratios, improves production flexibility and efficiency, reduces uneven equipment load and material waste, and ensures uniform material distribution and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a material flow dividing device for plastic particle production. The material flow dividing device comprises a discharging assembly and a flow dividing assembly. The discharging assembly comprises a discharging supporting piece and a discharging piece installed on the discharging supporting piece. The discharging piece further comprises a discharging end. The flow dividing assembly comprises a conveying piece installed on the discharging supporting piece and a flow dividing piece arranged on one side of the discharging end. The flow dividing piece comprises a fixing plate, a flow dividing sliding groove, a flow dividing part and a flow dividing driving part, wherein the fixing plate is installed on the side, away from the discharging end, of the conveying piece, the flow dividing sliding groove is formed in the fixing plate and extends towards the two sides of the conveying piece, the flow dividing part is arranged on the flow dividing sliding groove in a sliding mode, and the flow dividing driving part is installed on the fixing plate and used for driving the flow dividing part. The discharging plates are arranged on the two sides of the flow dividing part and arranged on the conveying piece in an inclined downward mode; according to the material flow dividing device for plastic particle production, the flow dividing part is arranged on the flow dividing sliding groove in the sliding mode, the position can be adjusted according to production requirements, and the distribution proportion of materials is changed.
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Description

Technical Field

[0001] This utility model relates to the technical field of material handling equipment for plastic pellet production, and in particular to a material diversion device for plastic pellet production. Background Technology

[0002] In the production of plastic granules, the diversion and processing of plastic granules is an important step. Existing material distribution devices lack flexibility and usually use fixed diversion plates for material distribution. They cannot adjust the material distribution ratio in real time according to production needs, resulting in low production efficiency. Utility Model Content

[0003] Based on this, the purpose of this utility model is to provide a material diversion device for plastic pellet production that can adjust the material distribution ratio in real time according to production needs.

[0004] The present invention adopts the following technical solution:

[0005] A material diversion device for plastic granule production includes a feeding assembly and a diversion assembly. The feeding assembly includes a feeding support and a feeding component mounted on the feeding support. The feeding component also includes a discharge end. The diversion assembly includes a conveying component mounted on the feeding support and a diversion component disposed on one side of the discharge end. The diversion component includes a fixed plate mounted on the conveying component on the side opposite to the discharge end, a diversion chute disposed on the fixed plate extending toward both sides of the conveying component, a diversion portion slidably disposed on the diversion chute, a diversion driving portion mounted on the fixed plate for driving the diversion portion, and a feeding plate disposed on both sides of the conveying component and inclined downward.

[0006] Furthermore, the diversion section near one end of the conveyor is flush with the conveyor, and the diversion section also includes diversion surfaces disposed on both sides of the conveyor.

[0007] Furthermore, the diversion surface is provided with an arc-shaped structure from the middle of the end away from the fixed plate toward both sides of the end closer to the fixed plate.

[0008] Furthermore, the diversion drive unit includes a positioning plate mounted on the fixed plate and a diversion linear motor mounted on the positioning plate; the diversion unit is provided with a lead screw thread connection to the diversion linear motor.

[0009] Furthermore, the material diversion device for plastic granule production also includes a material distribution component; the material distribution component includes a material distribution support mounted on the feeding support, and a material distribution element mounted on the material distribution support and inclined downward from the discharge end toward the side away from the discharge end for distributing plastic granules of different sizes; the material distribution element includes an inlet and an outlet; the inlet is located on the discharge end side; the outlet is located on the conveying element on the side away from the fixed plate; the material distribution component also includes a material distribution drive element mounted on the material distribution support for adjusting the size of the outlet on the side away from the feeding end.

[0010] Furthermore, the material distribution component is a material distribution plate disposed opposite to the material distribution support; the material distribution plate on the side closer to the discharge end is fixedly installed on the material distribution support, and the material distribution plate on the side farther from the discharge end is slidably disposed on the material distribution support.

[0011] Furthermore, the material feeding support member near the material feeding member is provided with a vertical height adjustment groove, the material distribution support member near the material feeding member slides on the height adjustment groove, and the material distribution support member away from the material feeding member is rotatably installed on the material feeding support member.

[0012] Furthermore, the material diversion device for plastic granule production also includes a screening assembly installed on the material distribution support; the screening assembly includes a screening funnel installed on the material distribution support parallel to the material distribution component, and a screening screen installed inside the screening funnel; the feed port of the screening funnel is positioned opposite to the discharge port of the material distribution component; the discharge port of the screening funnel is positioned opposite to the conveying component.

[0013] Furthermore, the screening funnel includes a first funnel, a second funnel, and a third funnel arranged side by side from the side closest to the feeder to the side furthest from the feeder; the screening screen includes a first filter screen, a second filter screen, and a third filter screen respectively disposed in the first funnel, the second funnel, and the third funnel; the mesh size of the first filter screen is smaller than that of the second filter screen; the mesh size of the second filter screen is smaller than that of the third filter screen; the conveying member is disposed below the third funnel.

[0014] Furthermore, the material diversion device for plastic pellet production also includes a first discharge conveyor belt and a second discharge conveyor belt installed on the feeding support. The first discharge conveyor belt is located below the first funnel, and the second discharge conveyor belt is located below the second funnel.

[0015] The beneficial effects of this utility model are as follows:

[0016] This utility model relates to a material diversion device for plastic granule production. The diversion part is slidably mounted on the diversion chute and its position can be adjusted according to production needs to change the material distribution ratio. By driving the movement of the diversion part, the material flow direction can be automatically adjusted, thereby improving production flexibility and efficiency. Attached Figure Description

[0017] Figure 1 This is a three-dimensional schematic diagram of a material diversion device for plastic pellet production according to an embodiment of the present invention;

[0018] Figure 2 for Figure 1 A three-dimensional schematic diagram of a material diversion device for plastic pellet production from another angle;

[0019] Figure 3 for Figure 1 A three-dimensional schematic diagram of the diversion component of a material diversion device for plastic pellet production;

[0020] Figure 4 for Figure 1 A three-dimensional schematic diagram of a material diversion device for plastic pellet production, combined with a material distribution component and a screening component;

[0021] Figure 5 for Figure 4 Exploded view of a material diversion device for plastic pellet production. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] In the description of this utility model, it should be noted that the terms "vertical direction," "up," "down," and "horizontal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0024] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or a connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0025] Please see Figures 1 to 5 This invention relates to a material diversion device for plastic pellet production, comprising a feeding assembly 10 and a diversion assembly 20. The feeding assembly 10 includes a feeding support 11 and a feeding component 12 mounted on the feeding support 11. The feeding component 12 also includes a discharge end 120. The diversion assembly 20 includes a conveying component 21 mounted on the feeding support 11 and a diversion component 22 disposed on one side of the discharge end 120. The diversion component 22 includes a fixed plate 220 mounted on the conveying component 21 on the side opposite to the discharge end 120, a diversion chute 221 extending toward both sides of the conveying component 21 on the fixed plate 220, a diversion portion 222 sliding on the diversion chute 221, a diversion driving portion 223 mounted on the fixed plate 220 for driving the diversion portion 222, and a feeding plate 224 disposed on the conveying component 21 on both sides of the diversion portion 222 and inclined downward.

[0026] The working principle of the material diversion device for plastic granule production of this utility model is as follows: the material is evenly fed through the feeding component 12; the discharge end 120 of the feeding component 12 conveys the processed material to the conveyor 21 below; the conveyor 21 conveys the material from the discharge end 120 of the feeding component 12 towards the diversion component 20; at this time, the material is in a continuous and uniform flow state; the fixed plate 220 in the diversion component 22 provides structural support, and the diversion part 222 slides on the diversion chute 221, and its position can be adjusted according to production needs to change the material distribution ratio; the diversion drive part 223 is installed on the fixed plate 220, and the material flow direction is automatically adjusted by driving the movement of the diversion part 222; after the diversion part 222 is adjusted, the material is divided into different paths and flows into the feeding plates 224 on both sides along the diversion chute 221; the feeding plates 224 are set at an incline downward to ensure that the distributed material can smoothly slide off the conveyor belt and enter the next process.

[0027] Compared to existing technologies, the material diversion device for plastic granule production of this utility model has a diversion section 222 slidably mounted on a diversion chute 221, which can be adjusted in position according to production needs to change the material distribution ratio. By driving the movement of the diversion section 222, the material flow direction can be automatically adjusted, improving production flexibility and efficiency. The processed material is evenly conveyed to the conveyor 21 to ensure the quality of the material in subsequent processing. The conveyor 21 continuously and evenly conveys the material from the discharge end 120 of the feeder 12 to the diversion assembly 20, ensuring uniform material distribution and reducing the problem of uneven equipment load.

[0028] Please refer to Figure 1 and Figure 3 The diversion section 222 near one end of the conveyor 21 is flush with the conveyor 21, and the diversion section 222 also includes diversion surfaces 222A disposed on both sides of the conveyor 21. The diversion section 222 is flush with the conveyor 21, ensuring a smooth transition of material as it passes through the diversion section 222, preventing accumulation or uneven distribution due to height differences. This helps maintain a uniform material distribution and reduces blockages and unevenness during conveying. The diversion surface 222A faces both sides of the conveyor 21, effectively guiding material out along the diversion plates on both sides, ensuring a more uniform distribution of material on both sides. This helps improve the efficiency and quality of subsequent processing. The transition of material from the conveyor 21 to the diversion section 222 is smoother, reducing material loss at the junction. The diversion surface 222A allows for more precise distribution of material to both sides, reducing material waste caused by uneven distribution. The flush structure and the diversion surface 222A ensure a continuous and uniform flow of material between the conveyor 21 and the diversion section 222, helping to improve production efficiency and reduce equipment downtime and maintenance time caused by uneven material distribution.

[0029] The diversion surface 222A is provided with an arc-shaped structure extending from the middle of the end furthest from the fixed plate 220 towards both sides of the end closer to the fixed plate 220. The arc-shaped structure smoothly guides the material from the middle to the sides, avoiding abrupt changes and accumulation at the junction; it facilitates smooth material flow, reducing blockages and uneven distribution; the arc-shaped structure reduces the impact of material flowing from the conveyor 21 to the diversion section 222, lowering the impact force on the equipment and thus reducing wear and damage; the arc-shaped structure ensures a smooth transition of material from the middle to the sides, helping to maintain uniform material distribution; it helps improve the efficiency and quality of subsequent processing, reducing uneven equipment load and production instability caused by uneven distribution; the arc-shaped structure can adapt to the characteristics of different materials, especially for fine plastic granules, this structure can better guide material flow, avoiding the accumulation and loss of fine particles; the arc-shaped structure helps maintain continuous material flow, reducing pauses and stagnation during the diversion process, and improving production efficiency.

[0030] The flow divider drive unit 223 includes a positioning plate 223A mounted on a fixed plate 220 and a flow divider linear motor 223B mounted on the positioning plate 223A. The flow divider unit 222 is connected to the flow divider linear motor 223B via a lead screw thread. The linear motor features high-precision positioning, achieving millimeter-level or even micrometer-level positioning accuracy. This allows for highly precise position adjustment of the flow divider unit 222, enabling real-time adjustment of the material distribution ratio according to production needs. High-precision positioning reduces uneven material distribution caused by inaccurate positioning, improving production consistency and stability. The linear motor has a fast response speed, enabling position adjustment in a short time. This allows for rapid response to changes in demand during production, improving production flexibility. The rapid positioning and adjustment capabilities significantly improve production efficiency and reduce production stoppages and delays caused by long adjustment times.

[0031] Please refer to Figure 4 and Figure 5 The material diversion device for plastic pellet production also includes a material distribution component 30; the material distribution component 30 includes a material distribution support 31 installed on the feeding support 11, and a material distribution component 32 installed on the material distribution support 31, which is inclined downward from the discharge end 120 toward the side away from the discharge end 120 for distributing plastic pellets of different sizes; the material distribution component 32 includes an inlet 320 and an outlet 321; the inlet 320 is located on the side of the discharge end 120; the outlet 321 is located on the conveyor 21 on the side away from the fixed plate 220; the material distribution component 30 also includes a material distribution drive component 33 installed on the material distribution support 31 for adjusting the size of the outlet 321 on the side away from the discharge end. The material separating component 32 is inclined downwards from the discharge end 120 towards the side opposite to the discharge end 120. This structure can effectively guide plastic granules of different sizes for material separation. The inclined structure helps the material flow naturally, reducing blockage and accumulation. The inlet 320 of the material separating component 32 is located on the side of the discharge end 120, and the outlet 321 is located on the conveyor 21 on the side away from the fixed plate 220, ensuring the continuity of material from screening to separation and reducing losses in intermediate links. The material separating drive component 33 can adjust the size of the outlet 321 on the side away from the discharge end, so that the material separating process can be flexibly adjusted according to actual production needs. For example, the size of the outlet 321 can be adjusted in real time according to the size of the plastic granules and production requirements to ensure that plastic granules of different sizes can be accurately separated. This structure improves the adaptability of the device, can cope with the characteristic changes of different batches of materials, and ensures the stability and consistency of production. The structure of the material separating component 30 ensures the continuity from screening to separation, reduces the interruption and loss in intermediate links, and improves the overall production efficiency.

[0032] The material distribution component 32 is a material distribution plate disposed opposite to the material distribution support component 31; the material distribution plate on the side closer to the discharge end 120 is fixedly installed on the material distribution support component 31, and the material distribution fixing plate 220 on the side away from the discharge end 120 is slidably disposed on the material distribution support component 31. The material distribution plate on the side away from the discharge end 120 is slidably mounted on the material distribution support 31, allowing for flexible adjustment of the size of the material distribution opening. This structure enables the material distribution process to be adjusted in real time according to actual production needs, ensuring that plastic granules of different sizes can be accurately separated. This structure improves the adaptability of the material distribution device, enabling it to cope with changes in the characteristics of different batches of materials and ensuring production stability and consistency. The material distribution plate on the side closer to the discharge end 120 is fixedly installed, ensuring the stability of the material distribution process and avoiding inaccurate material distribution caused by the movement of the material distribution plate. The sliding material distribution plate can cooperate with the fixed material distribution plate to ensure that plastic granules of different sizes are accurately separated during the material distribution process, reducing mixing problems and improving product purity and quality. The movement of the sliding material distribution plate is controlled by the material distribution drive 33, enabling automated adjustment of the size of the material distribution opening. This reduces the need for human intervention, lowers operational complexity and human error, and further improves production efficiency. The structure of the sliding material distribution plate allows the size of the material distribution opening to be adjusted in real time, dynamically adjusted based on data feedback from sensors, ensuring high efficiency and stability in the production process.

[0033] A vertically oriented height adjustment groove 110 is provided on the feeding support 11 near the feeding component 12. A material distribution support 31 on the same side as the feeding component 12 slides on the height adjustment groove 110, while the material distribution support 31 on the side away from the feeding component 12 is rotatably mounted on the feeding support 11. The vertically oriented height adjustment groove 110 allows for flexible height adjustment of the material distribution support 31. By adjusting the height of the material distribution support 31, it is possible to adapt to the characteristics of different materials, ensuring the optimal position of the material during the distribution process. Different materials may require different distribution heights; the structure of the height adjustment groove 110 allows the device to flexibly handle different batches and types of materials, improving the adaptability and flexibility of the device. The material distribution support 31 on the same side as the feeding component 12 slides on the height adjustment groove 110, and its height can be precisely adjusted manually or automatically. This structure ensures accurate material distribution. The precision of the material distribution process avoids inaccurate material distribution caused by height mismatch; precise height adjustment helps reduce errors in the material distribution process and improves the accuracy and consistency of material distribution; the material distribution support 31, which is rotatably mounted on the material feeding support 11 on the side away from the feeding part 12, can adjust the angle of the material distribution support 31; this structure increases the angle adjustment range of the material distribution plate, and can adjust the tilt angle of the material distribution plate as needed to further optimize the material distribution effect; the rotatable mounting structure allows the angle of the material distribution plate to be flexibly adjusted to adapt to different working conditions and production needs, improving the flexibility and adaptability of the device.

[0034] The material diversion device for plastic pellet production also includes a screening assembly 40 installed on the material distribution support 31; the screening assembly 40 includes a screening funnel 41 installed on the material distribution support 31 and parallel to the material distribution component 32, and a screening screen 42 installed in the screening funnel 41; the feeding port of the screening funnel 41 is opposite to the discharge port 321 of the material distribution component 32; the discharging port of the screening funnel 41 is opposite to the conveyor 21. The screening funnel 41 is parallel to the material distribution component 32, ensuring that the material enters the screening funnel 41 directly from the discharge port 321 of the material distribution component 32, reducing losses and blockages in intermediate stages. The screening screen 42 is installed inside the screening funnel 41, which can effectively screen the material, remove unqualified particles, and ensure the quality of the final product. The feed port of the screening funnel 41 is set opposite to the discharge port 321 of the material distribution component 32, ensuring the continuity and smoothness of the material, reducing material losses and blockages during the transmission process. The discharge port of the screening funnel 41 is set opposite to the conveyor component 21, allowing the screened material to be directly transferred to the next process, improving production efficiency. The screening screen 42 can effectively remove unqualified particles and impurities, ensuring the quality and purity of the final product. The structure of the screening funnel 41 helps to maintain a uniform distribution of the material, reducing product quality problems caused by uneven distribution.

[0035] The screening funnel 41 includes a first funnel 410, a second funnel 411, and a third funnel 412 arranged side by side from the side closest to the feeder 12 to the side furthest from the feeder 12; the screening screen 42 includes a first filter screen 420, a second filter screen 421, and a third filter screen 422 respectively disposed in the first funnel 410, the second funnel 411, and the third funnel 412; the mesh size of the first filter screen 420 is smaller than that of the second filter screen 421; the mesh size of the second filter screen 421 is smaller than that of the third filter screen 422; the conveying member 21 is disposed below the third funnel 412. The material conveyed from the discharge end 120 of the feeder 12 first enters the first funnel 410. Since the feed inlet of the first funnel 410 is opposite to the discharge outlet 321 of the feeder 12, the material can smoothly enter the first funnel 410. After entering the first funnel 410, the material is screened through the first filter screen 420. The first filter screen 420 has the smallest mesh size, which can screen out the smallest particles. These smallest particles fall through the mesh of the first filter screen 420 and enter the first discharge conveyor belt 50. Larger particles that do not pass through the first filter screen 420 continue to flow... The material flows into the second funnel 411; the feed inlet of the second funnel 411 is positioned opposite the discharge inlet of the first funnel 410 to ensure the continuity and smooth flow of the material; the mesh size of the second filter screen 421 is larger than that of the first filter screen 420, which can screen out medium-sized particles; these medium-sized particles fall through the mesh size of the second filter screen 421; the largest particles that do not pass through the second filter screen 421 continue to flow into the third funnel 412; the feed inlet of the third funnel 412 is positioned opposite the discharge inlet of the second funnel 411 to ensure the continuity and smooth flow of the material; the third filter screen 422 The first funnel 410 has the largest mesh size, capable of screening out the largest particles. These largest particles fall through the mesh of the third filter 422 and enter the conveyor 21 located below the third funnel 412. The structure of three funnels and three separating screens 42 achieves multi-stage screening, which can classify materials according to different mesh sizes. The first funnel 410 has the smallest mesh size, capable of screening out the smallest particles. The second funnel 411 has a larger mesh size, capable of screening out medium-sized particles. The third funnel 412 has the largest mesh size, capable of screening out the largest particles. Multi-stage screening allows for more precise control of materials, ensuring that particles of different sizes are accurately separated, improving the purity and quality of the product. The three funnels are arranged side by side, allowing materials to enter multiple funnels for screening simultaneously, improving screening efficiency and reducing screening time. The separating screens 42 in each funnel can work independently, ensuring the continuity of the screening process and reducing intermediate stops and losses. The multi-stage screening structure enables automated screening of materials, reducing the need for human intervention, lowering operational complexity and human error, and further improving production efficiency.

[0036] The material diversion device for plastic pellet production also includes a first discharge conveyor belt 50 and a second discharge conveyor belt 60 installed on the feeding support. The first discharge conveyor belt 50 is located below the first funnel 410, and the second discharge conveyor belt 60 is located below the second funnel 411. The first discharge conveyor belt 50 and the second discharge conveyor belt 60 are respectively positioned below the first funnel 410 and the second funnel 411, enabling independent transport of materials of different sizes. This avoids mixing materials of different sizes during transport, improving transport efficiency and accuracy. The two discharge conveyor belts can work in parallel, ensuring that materials of different sizes can be transported to the next process simultaneously, reducing transport time and improving production efficiency. The first discharge conveyor belt 50 and the second discharge conveyor belt 60 collect materials from the first funnel 410 and the second funnel 411 respectively, preventing materials of different sizes from mixing, reducing material mixing problems, and improving product purity and quality. The combination of each funnel and discharge conveyor belt ensures precise separation and collection of materials, reducing product quality problems caused by mixing. The two discharge conveyor belts can be controlled independently, allowing adjustment of transport speed and direction according to production needs, improving the flexibility and adaptability of the device. If one discharge conveyor belt malfunctions, the other discharge conveyor belt can continue to work, reducing production downtime and losses.

[0037] The above description merely illustrates the preferred technical solution of this utility model, and while the description is relatively specific and detailed, it should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and this utility model also intends to include these modifications and variations.

Claims

1. A material diversion device for plastic pellet production, characterized in that, The system includes a feeding assembly and a diversion assembly. The feeding assembly includes a feeding support and a feeding component mounted on the feeding support. The feeding component also includes a discharge end. The diversion assembly includes a conveying component mounted on the feeding support and a diversion component disposed on one side of the discharge end. The diversion component includes a fixed plate mounted on the conveying component on the side opposite to the discharge end, a diversion groove disposed on the fixed plate extending toward both sides of the conveying component, a diversion portion slidably disposed on the diversion groove, a diversion driving portion mounted on the fixed plate for driving the diversion portion, and a feeding plate disposed on both sides of the conveying component and inclined downward.

2. The material diversion device for plastic pellet production according to claim 1, characterized in that, The diversion section near one end of the conveyor is flush with the conveyor, and the diversion section also includes diversion surfaces disposed on both sides of the conveyor.

3. The material diversion device for plastic pellet production according to claim 2, characterized in that, The diversion surface is provided with an arc-shaped structure from the middle of the end away from the fixed plate to both sides of the end closer to the fixed plate.

4. The material diversion device for plastic pellet production according to claim 3, characterized in that, The diversion drive unit includes a positioning plate mounted on the fixed plate and a diversion linear motor mounted on the positioning plate; the diversion unit is provided with a lead screw thread connection to the diversion linear motor.

5. The material diversion device for plastic pellet production according to claim 1, characterized in that, The material diversion device for plastic pellet production further includes a material distribution component; the material distribution component includes a material distribution support mounted on the feeding support, and a material distribution element mounted on the material distribution support and inclined downward from the discharge end toward the side away from the discharge end for distributing plastic pellets of different sizes; the material distribution element includes an inlet and an outlet; the inlet is located on the discharge end side; the outlet is located on the conveying component away from the fixed plate; the material distribution component further includes a material distribution drive element mounted on the material distribution support for adjusting the size of the outlet on the side away from the discharge end.

6. The material diversion device for plastic pellet production according to claim 5, characterized in that, The material distribution component is a material distribution plate disposed opposite to the material distribution support; the material distribution plate on the side closer to the discharge end is fixedly installed on the material distribution support, and the material distribution fixing plate on the side farther from the discharge end is slidably disposed on the material distribution support.

7. The material diversion device for plastic pellet production according to claim 6, characterized in that, The material feeding support member near the material feeding component is provided with a vertical height adjustment groove, the material distribution support member near the material feeding component slides on the height adjustment groove, and the material distribution support member away from the material feeding component is rotatably installed on the material feeding support member.

8. The material diversion device for plastic pellet production according to claim 7, characterized in that, The material diversion device for plastic granule production further includes a screening assembly installed on the material distribution support; the screening assembly includes a screening funnel installed on the material distribution support parallel to the material distribution component, and a screening screen installed inside the screening funnel; the feed port of the screening funnel is positioned opposite to the discharge port of the material distribution component; the discharge port of the screening funnel is positioned opposite to the conveying component.

9. The material diversion device for plastic pellet production according to claim 8, characterized in that, The screening funnel includes a first funnel, a second funnel, and a third funnel arranged side by side from the side closest to the feeder to the side furthest from the feeder; the screening screen includes a first filter screen, a second filter screen, and a third filter screen respectively disposed in the first funnel, the second funnel, and the third funnel; the mesh size of the first filter screen is smaller than that of the second filter screen; the mesh size of the second filter screen is smaller than that of the third filter screen; the conveying member is disposed below the third funnel.

10. The material diversion device for plastic pellet production according to claim 9, characterized in that, The material diversion device for plastic pellet production also includes a first discharge conveyor belt and a second discharge conveyor belt installed on the feeding support. The first discharge conveyor belt is located below the first funnel, and the second discharge conveyor belt is located below the second funnel.