An easy-to-clean resin processing discharge device

By designing a discharge device that includes a screening box, screening mechanism, water pump, collection box and disassembly mechanism, the problem of time-consuming cleaning and water waste in chloroacetic acid resin discharge devices has been solved. This has enabled efficient grading and automatic cleaning, improving water utilization efficiency and product quality.

CN224272009UActive Publication Date: 2026-05-26HEBEI HEHUI NEW MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEBEI HEHUI NEW MATERIAL TECH CO LTD
Filing Date
2025-06-13
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing chloroacetic acid resin discharge devices require manual cleaning after use, which is time-consuming and ineffective. Furthermore, the wastewater from cleaning cannot be recycled, resulting in water waste.

Method used

A discharge device was designed, comprising a screening box, a screening mechanism, a water pump, a collection box, filter plates, and a disassembly mechanism. It achieves automatic cleaning through a water circulation system and performs graded screening of chlorinated vinyl resin through the screening mechanism to ensure product quality. At the same time, it can quickly replace and clean the filter plates.

Benefits of technology

This technology enables efficient grading and automatic cleaning of chloroacetic acid resins, saving water resources, improving water utilization efficiency, and ensuring product quality and cleaning efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

This utility model discloses an easy-to-clean resin processing discharge device, relating to the field of resin processing technology. It includes: a screening box; a screening mechanism disposed inside the screening box; a feed inlet disposed at the top of the screening box; a high-quality material discharge outlet disposed at the bottom center of the screening box; a coarse material discharge outlet disposed at the bottom side of the screening box; a support frame disposed at the bottom outer side of the screening box; a control panel disposed at the bottom side of the support frame; a water tank disposed at the top side of the support frame; a water pump disposed inside the water tank; collection boxes disposed at the bottom of both the high-quality material discharge outlet and the coarse material discharge outlet; a filter plate disposed at the center of one side of the collection box; and a disassembly mechanism disposed on one side of the filter plate. This utility model directly screens the finished chloroacetic acid resin during the discharge process, ensuring the product quality of the chloroacetic acid resin. Simultaneously, the rapid replacement and cleaning of the filter plate improves the overall water circulation quality and efficiency of the device.
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Description

Technical Field

[0001] This utility model relates to the field of resin processing technology, and more specifically, to a resin processing discharge device that is easy to clean. Background Technology

[0002] Vinyl chloride resin is a polymer material copolymerized from vinyl chloride and vinyl acetate. It possesses excellent chemical resistance, weather resistance, and electrical insulation properties, and is widely used in coatings, adhesives, and fiber processing. During its processing, the vinyl chloride resin requires a discharge device after drying in an airflow dryer.

[0003] Because chloroacetic acid resin has a low glass transition temperature, it is prone to condensation and clumping after production. Therefore, the finished chloroacetic acid resin needs to be screened directly during the discharge process to ensure the product quality.

[0004] Moreover, the currently used chloroacetic acid resin discharge device requires manual cleaning after use, which is not only time-consuming but also has poor cleaning effect; the wastewater after cleaning cannot be recycled, which will also lead to water waste.

[0005] No effective solutions have yet been proposed to address the problems in the relevant technologies. Utility Model Content

[0006] In view of the problems in the related technologies, this utility model proposes an easy-to-clean resin processing discharge device to overcome the above-mentioned technical problems existing in the existing related technologies.

[0007] Therefore, the specific technical solution adopted by this utility model is as follows:

[0008] An easy-to-clean resin processing discharge device includes: a screening box; a screening mechanism disposed inside the screening box; a feed inlet disposed at the top of the screening box; a high-quality material discharge outlet disposed at the bottom center of the screening box; a coarse material discharge outlet disposed at the bottom side of the screening box; a support frame disposed at the bottom outer side of the screening box for supporting the screening box; a control panel disposed at the bottom side of the support frame; a water tank disposed at the top side of the support frame; a water pump disposed inside the water tank for cleaning the screening box; collection boxes disposed at the bottom of the high-quality material discharge outlet and the coarse material discharge outlet respectively; a filter plate disposed at the center of one side of the collection box; and a disassembly mechanism disposed on one side of the filter plate and cooperating with the collection box for disassembling the filter plate.

[0009] Furthermore, in order to allow the water filtered by the filter plate to enter the water tank under the action of the water pump, and then enter the screening box to form a water circulation system, thereby saving water resources and improving water utilization efficiency, the top of the water pump is equipped with a water outlet pipe that matches the feed inlet; the bottom of the water pump is equipped with a water inlet pipe that matches the high-quality material outlet and the coarse material outlet.

[0010] Furthermore, in order to efficiently classify and screen the finished chloroacetic acid resin into high-quality and coarse materials and ensure the final quality of the chloroacetic acid resin, the screening mechanism includes a motor installed on one side of the screening box. A drive pulley is installed through the output end of the motor and extends through one side of the screening box. A belt is installed on the outside of the drive pulley, and a driven pulley is installed at the other end of the belt. A rotating shaft extends through one side of the driven pulley. An auger that cooperates with the feed inlet is installed on the outside of one end of the rotating shaft, and a screen basket is installed on the outside of the middle of the rotating shaft. Several rotating rods that cooperate with the rotating shaft are installed inside the screen basket, and several through holes are opened on the outer wall of the screen basket. The inside of the screen basket has a conical structure, and the inner diameter of the screen basket gradually increases from the feed inlet to the coarse material outlet.

[0011] Furthermore, to enable rapid replacement and cleaning of the filter plates and improve the quality and efficiency of water circulation, symmetrical sliding grooves that mate with the filter plates are provided on both sides of the middle of the collection tank; a handle is provided at one end of the filter plate, and protrusions that mate with the sliding grooves are symmetrically provided on both sides of the filter plate; the disassembly mechanism includes fixed seats symmetrically arranged inside the collection tank, with springs symmetrically arranged at both ends on one side of the fixed seats, and arc-shaped pressure plates connected to one side of each spring; a first arc-shaped clamping plate is provided on the inner wall of one of the arc-shaped pressure plates, and a second arc-shaped clamping plate is provided on the inner wall of the other arc-shaped pressure plate. The filter plate has a second arc-shaped clamping plate, and the bottom of the first arc-shaped clamping plate and the second arc-shaped clamping plate are movably connected by a movable shaft. The disassembly mechanism also includes circular clamping blocks symmetrically arranged at the other end of the filter plate. The circular clamping blocks cooperate with the inner walls of the first and second arc-shaped clamping plates. The outer circumference of the top two sides of the circular clamping blocks is symmetrically provided with slots that cooperate with the top of the first and second arc-shaped clamping plates. The top of the first and second arc-shaped clamping plates are both set as arc-shaped surfaces, and the cross-section of the slots is set as an arc-shaped structure that cooperates with the arc-shaped surfaces.

[0012] The beneficial effects of this utility model are as follows:

[0013] 1) With the combined action of the screening mechanism, feed inlet, high-quality material outlet, coarse material outlet, water pump, collection box, filter plate and disassembly mechanism, this utility model can directly screen the finished chloroacetic acid resin during the discharge process, ensuring the product quality of chloroacetic acid resin. At the same time, the rapid replacement and cleaning of the filter plate improves the overall water circulation quality and efficiency of the device.

[0014] 2) With the coordinated action of the screening mechanism, feed inlet, premium material outlet and coarse material outlet, the finished chloroacetic acid resin is efficiently graded and screened into premium and coarse materials to ensure the final quality of the chloroacetic acid resin.

[0015] 3) With the combined action of the water pump, collection tank, filter plate and disassembly mechanism, a water circulation system is formed, which saves water resources and improves water utilization efficiency. At the same time, the filter plate can be quickly replaced and cleaned, which improves the quality and efficiency of water circulation. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This is one of the structural schematic diagrams of an easy-to-clean resin processing discharge device according to an embodiment of the present utility model;

[0018] Figure 2 This is a second schematic diagram of a resin processing discharge device that is easy to clean, according to an embodiment of the present utility model.

[0019] Figure 3 This is a cross-sectional schematic diagram of an easy-to-clean resin processing discharge device according to an embodiment of the present utility model;

[0020] Figure 4 This is a cross-sectional schematic diagram of a screen basket in an easy-to-clean resin processing discharge device according to an embodiment of the present utility model.

[0021] Figure 5 This is a cross-sectional schematic diagram of the collection box in an easy-to-clean resin processing discharge device according to an embodiment of the present utility model.

[0022] Figure 6 yes Figure 5 A magnified view of a portion of point A in the middle.

[0023] In the picture:

[0024] 1. Screening box; 2. Screening mechanism; 201. Motor; 202. Drive pulley; 203. Belt; 204. Driven pulley; 205. Rotating shaft; 206. Screwdriver; 207. Screen basket; 208. Rotating rod; 209. Through hole; 3. Feed inlet; 4. High-quality material outlet; 5. Coarse material outlet; 6. Support frame; 7. Control panel; 8. Water tank; 9. Water pump; 10. Collection box; 11. Filter plate; 12. Disassembly mechanism; 1201. Fixed seat; 1202. Spring; 1203. Arc-shaped pressure plate; 1204. First arc-shaped clamping plate; 1205. Second arc-shaped clamping plate; 1206. Movable shaft; 1207. Circular clamping block; 1208. Slot; 13. Water outlet pipe; 14. Water inlet pipe; 15. Sliding groove; 16. Handle; 17. Protrusion. Detailed Implementation

[0025] To further illustrate the various embodiments, the present invention provides accompanying drawings, which are part of the disclosure of the present invention. These drawings are mainly used to illustrate the embodiments and can be used in conjunction with the relevant descriptions in the specification to explain the operating principles of the embodiments. With reference to these contents, those skilled in the art should be able to understand other possible implementation methods and the advantages of the present invention. The components in the figures are not drawn to scale, and similar component symbols are usually used to represent similar components.

[0026] According to an embodiment of the present invention, an easy-to-clean resin processing discharge device is provided.

[0027] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments, such as... Figures 1-6 As shown, the easy-to-clean resin processing discharge device according to an embodiment of the present invention includes: a screening box 1; a screening mechanism 2 disposed inside the screening box 1; a feed inlet 3 disposed at the top of the screening box 1; a high-quality material discharge outlet 4 disposed at the bottom center of the screening box 1; a coarse material discharge outlet 5 disposed at the bottom side of the screening box 1; a support frame 6 disposed at the bottom outer side of the screening box 1 for supporting the screening box 1; a control panel 7 disposed at the bottom side of the support frame 6; a water tank 8 disposed at the top side of the support frame 6; a water pump 9 disposed inside the water tank 8 for cleaning the screening box 1; a collection box 10 disposed at the bottom of the high-quality material discharge outlet 4 and the coarse material discharge outlet 5 respectively; a filter plate 11 disposed at the center of one side of the collection box 10; and a disassembly mechanism 12 disposed on one side of the filter plate 11 and cooperating with the collection box 10 for disassembling the filter plate 11.

[0028] By utilizing the above technical solution, this utility model, through the coordinated action of the screening mechanism 2, the feed inlet 3, the superior material outlet 4, the coarse material outlet 5, the water pump 9, the collection box 10, the filter plate 11, and the disassembly mechanism 12, directly screens the finished chloroacetic acid resin during the discharge process, ensuring the product quality of the chloroacetic acid resin. Simultaneously, the rapid replacement and cleaning of the filter plate 11 improves the overall quality and efficiency of the water circulation of the device. The coordinated action of the screening mechanism 2, the feed inlet 3, the superior material outlet 4, and the coarse material outlet 5 efficiently classifies and screens the finished chloroacetic acid resin into superior and coarse materials, ensuring the final quality of the chloroacetic acid resin. The coordinated action of the water pump 9, the collection box 10, the filter plate 11, and the disassembly mechanism 12 forms a water circulation system, saving water resources and improving water utilization efficiency. Furthermore, the rapid replacement and cleaning of the filter plate 11 further enhances the quality and efficiency of the water circulation.

[0029] Furthermore, the easy-to-clean resin processing discharge device of this utility model can not only screen and clean chloroacetic acid resin, but also adapt to other types of resins by changing the parameters of the protective screening mechanism 2, and screen and discharge according to the characteristics of other resins, thereby improving the quality of the discharged products and the cleaning efficiency of the discharge device.

[0030] In one embodiment, the water pump 9 is provided with an outlet pipe 13 at its top end that cooperates with the feed inlet 3; and an inlet pipe 14 at its bottom end that cooperates with the high-quality material outlet 4 and the coarse material outlet 5. This allows the water filtered by the filter plate 11 to enter the water tank 8 under the action of the water pump 9, and then enter the screening box 1, thereby forming a water circulation system, saving water resources and improving water utilization efficiency.

[0031] The working principle of water pump 9 is as follows: In the initial state, water pump 9 draws water from water tank 8, enters feed port 3 through water outlet pipe 13, and cleans the inside of screening box 1 under the action of screening mechanism 2. Waste liquid falls onto filter plate 11 through high-quality material outlet 4 and coarse material outlet 5 respectively. Under the filtration action of filter plate 11, collection box 10 collects water resources. Water pump 9 draws water from collection box 10 into water tank 8 through water inlet pipe 14 to form a water circulation system.

[0032] In one embodiment, the screening mechanism 2 includes a motor 201 disposed on one side of the screening box 1. A drive pulley 202 is disposed through the output end of the motor 201, penetrating one side of the screening box 1. A belt 203 is disposed on the outer side of the drive pulley 202, and a driven pulley 204 is disposed at the other end of the belt 203. A rotating shaft 205 is disposed through one side of the driven pulley 204. An auger 206 cooperating with the feed inlet 3 is disposed on the outer side of one end of the rotating shaft 205. A screen basket 207 is disposed on the outer side of the middle part of the rotating shaft 205. Several rotating rods 208 cooperating with the rotating shaft 205 are disposed inside the screen basket 207. Several through holes 209 are opened on the outer wall of the screen basket 207. The interior of the screen basket 207 has a conical structure, and the inner diameter of the screen basket 207 gradually increases along the direction from the feed inlet 3 to the coarse material outlet 5, thereby efficiently classifying and screening the finished chloroacetic acid resin into superior and coarse materials, ensuring the final quality of the chloroacetic acid resin.

[0033] The working principle of the screening mechanism 2 is as follows: In the initial state, the processed chloroacetic acid resin enters the screening box 1 through the feed inlet 3. Under the control of the control panel 7, the operator controls and starts the motor 201. Under the action of the output end of the motor 201, the drive pulley 202 is driven to rotate. Under the action of the belt 203, the drive pulley 202 rotates, which in turn drives the driven pulley 204 to rotate. The driven pulley 204 rotates, which in turn drives the rotating shaft 205 to rotate. The rotation of the rotating shaft 205 drives the auger 206 and the rotating rod 208 to rotate respectively. Under the action of the auger 206, the chloroacetic acid resin is conveyed into the screen basket 207. The rotating rod... 208 drives the sieve basket 207 to rotate at high speed around the central axis, thereby generating centrifugal force. Chlorinated resin enters from the inner diameter end of the sieve basket 207 through the small opening and is thrown against the inner wall of the sieve basket 207 under the action of centrifugal force. The high-quality chlorinated resin will pass through the through hole 209 under the pressure of centrifugal force and become the undersize material, and is discharged through the high-quality material outlet 4. The unqualified coarse chlorinated resin material is intercepted by the through hole 209 because its size is larger than the through hole 209 and stays on the inner wall surface of the sieve basket 207. Because the rotational linear speed of the large diameter end is greater and the centrifugal force is stronger, the unqualified coarse chlorinated resin material will slide towards the large diameter end and finally be discharged from the large diameter end, i.e., the coarse material outlet 5.

[0034] In one embodiment, for the collection box 10, filter plate 11, and disassembly mechanism 12 described above, the collection box 10 has symmetrical sliding grooves 15 on both sides of its middle portion that cooperate with the filter plate 11; one end of the filter plate 11 is provided with a handle 16, and both sides of the filter plate 11 are symmetrically provided with protrusions 17 that cooperate with the sliding grooves 15; the disassembly mechanism 12 includes fixed seats 1201 symmetrically arranged inside the collection box 10, and springs 1202 are symmetrically arranged at both ends of one side of the fixed seat 1201, and each side of the spring 1202 is connected to an arc-shaped pressure plate 1203; the inner wall of one arc-shaped pressure plate 1203 is provided with a first arc-shaped clamping plate 1204, and the inner wall of the other arc-shaped pressure plate 1203 is provided with a second arc-shaped clamping plate 1205, the first arc-shaped clamping plate 1204... The filter plate 11 is movably connected to the bottom of the second arc-shaped plate 1205 via a movable shaft 1206. The disassembly mechanism 12 also includes circular blocks 1207 symmetrically arranged at the other end of the filter plate 11. The circular blocks 1207 cooperate with the inner walls of the first arc-shaped plate 1204 and the second arc-shaped plate 1205. The outer walls of the top two sides of the circular blocks 1207 are symmetrically provided with slots 1208 that cooperate with the tops of the first arc-shaped plate 1204 and the second arc-shaped plate 1205. The tops of the first arc-shaped plate 1204 and the second arc-shaped plate 1205 are both set as arc-shaped surfaces, and the cross-section of the slots 1208 is set as an arc-shaped structure that cooperates with the arc-shaped surfaces, thereby realizing the rapid replacement and cleaning of the filter plate 11 and improving the quality and efficiency of water circulation.

[0035] The working principles of the collection box 10, filter plate 11, and disassembly mechanism 12 are as follows: In the initial state, when the filter plate 11 needs to be installed, the operator slides the filter plate 11 into the collection box by aligning the protrusions 17 on both sides of the filter plate 11 with the sliding grooves 15 on both sides of the collection box using the handle 16. When the bottom circumferential side wall of the circular locking block 1207 at the bottom of the filter plate 11 contacts the top of the first arc-shaped locking plate 1204 and the top arc-shaped locking plate 1205, the first arc-shaped locking plate 1204 and the second arc-shaped locking plate 1205 move outward around the movable shaft 1206 under pressure. The outward movement of the first arc-shaped locking plate 1204 and the second arc-shaped locking plate 1205 drives the arc-shaped pressure plates 1203 on both sides to press down on the spring 1202, so that the angle between the top of the first arc-shaped locking plate 1204 and the top of the second arc-shaped locking plate 1205 gradually increases. When it increases to the diameter of the circular locking block 1207... When the size is small, the circular locking block 1207 will enter the interior of the first arc-shaped locking plate 1204 and the second arc-shaped locking plate 1205. When the bottom of the circular locking block 1207 contacts the bottom of the first arc-shaped locking plate 1204 and the bottom of the second arc-shaped locking plate 1205, under the rebound action of the spring 1202, the spring 1202 drives the arc-shaped pressure plate 1203 to move upward. The arc-shaped pressure plate 1203 drives the top of the first arc-shaped locking plate 1204 and the second arc-shaped locking plate 1205 to move inward, so that the angle between the top of the first arc-shaped locking plate 1204 and the top of the second arc-shaped locking plate 1205 gradually decreases. When the arc-shaped surfaces of the top of the first arc-shaped locking plate 1204 and the second arc-shaped locking plate 1205 enter the locking groove 1208, the inner walls of the first arc-shaped locking plate 1204 and the second arc-shaped locking plate 1205 lock the circular locking block 1207, thus realizing the installation of the filter plate 11.

[0036] When the filter plate 11 needs to be disassembled, the operator slides the filter plate 11 out by aligning the protrusions 17 on both sides of the filter plate 11 with the sliding grooves 15 on both sides of the collection box using the handle 16. The filter plate 11 causes the circular locking block 1207 to be subjected to force, and the outer circumference of the top of the circular locking block 1207 presses against the inner top of the first arc-shaped locking plate 1204 and the second arc-shaped locking plate 1205. This causes the first arc-shaped locking plate 1204 and the second arc-shaped locking plate 1205 to move outward around the movable shaft 1206 as the rotation center. This causes the angle between the top of the first arc-shaped locking plate 1204 and the top of the second arc-shaped locking plate 1205 to gradually increase. When the angle increases to the size of the diameter of the circular locking block 1207, the circular locking block 1207 leaves the interior of the first arc-shaped locking plate 1204 and the second arc-shaped locking plate 1205, thus realizing the replacement and cleaning of the filter plate 11.

[0037] To facilitate understanding of the above-mentioned technical solutions of this utility model, the working principle or operation method of this utility model in actual process will be described in detail below.

[0038] In practical application, initially, the processed chloroacetic acid resin enters the screening box 1 through the feed inlet 3. The operator, using the control panel 7, controls and starts the motor 201. The output of the motor 201 drives the auger 206 and the rotating rod 208 to rotate. The auger 206 conveys the chloroacetic acid resin into the screen basket 207. The rotating rod 208 drives the screen basket 207 to rotate, generating centrifugal force and screening the chloroacetic acid resin. High-quality chloroacetic acid resin exits through the high-quality material outlet 4, while unqualified coarse chloroacetic acid resin exits through the coarse material outlet 5 (the specific working principle of the screening mechanism 2 is described above). After the chloroacetic acid resin is discharged, the operator, using the control panel 7... Control and start water pump 9. Water pump 9 draws water from water tank 8 through water outlet pipe 13 into the screening box 1. Under the action of screening mechanism 2, the inside of screening box 1 is cleaned. Waste liquid falls onto filter plate 11 through high-quality material outlet 4 and coarse material outlet 5 respectively. Under the filtration action of filter plate 11, collection box 10 collects water resources. Water pump 9 draws water from collection box 10 into water tank 8 through water inlet pipe 14, forming a water circulation system (the specific working principle of water pump 9 is as described above). When filter plate 11 needs to be replaced, it can be easily replaced through handle 16 (the specific working principles of collection box 10, filter plate 11 and disassembly mechanism 12 are as described above), ensuring the overall cleaning efficiency and quality.

[0039] In summary, by utilizing the above-mentioned technical solution of this utility model, the completed chloroacetic acid resin is directly screened during the discharge process through the coordinated action of the screening mechanism 2, the feed inlet 3, the superior material outlet 4, the coarse material outlet 5, the water pump 9, the collection box 10, the filter plate 11, and the disassembly mechanism 12, ensuring the product quality of the chloroacetic acid resin. Simultaneously, the rapid replacement and cleaning of the filter plate 11 improves the overall quality and efficiency of the water circulation of the device. The coordinated action of the screening mechanism 2, the feed inlet 3, the superior material outlet 4, and the coarse material outlet 5 efficiently classifies and screens the completed chloroacetic acid resin into superior and coarse materials, ensuring the final quality of the chloroacetic acid resin. The coordinated action of the water pump 9, the collection box 10, the filter plate 11, and the disassembly mechanism 12 forms a water circulation system, saving water resources and improving water utilization efficiency. Furthermore, the rapid replacement and cleaning of the filter plate 11 further enhances the quality and efficiency of the water circulation.

[0040] In this utility model, unless otherwise explicitly specified and limited, the terms "installation", "setting", "connection", "fixing", "screw connection", etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components or the interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0041] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A resin processing discharge device that is easy to clean, characterized in that, include: Filter box (1); The screening mechanism (2) is located inside the screening box (1); The feed inlet (3) is located at the top of the screening box (1); The high-quality material outlet (4) is located at the bottom center of the screening box (1); The coarse material outlet (5) is located on one side of the bottom of the screening box (1); A support frame (6) is set on the bottom outside of the screening box (1) to support the screening box (1). The control panel (7) is located on one side of the bottom of the support frame (6); A water tank (8) is located on one side of the top of the support frame (6); A water pump (9) is installed inside the water tank (8) to clean the screening box (1); Collection boxes (10) are respectively set at the bottom of the high-quality material outlet (4) and the coarse material outlet (5); A filter plate (11) is located in the middle of one side of the collection box (10); The disassembly mechanism (12) is located on one side of the filter plate (11) and cooperates with the collection box (10) to disassemble the filter plate (11).

2. The resin processing discharge device that is easy to clean according to claim 1, characterized in that, The top of the water pump (9) is provided with a water outlet pipe (13) that cooperates with the feed inlet (3). The bottom end of the water pump (9) is provided with a water inlet pipe (14) that cooperates with the high-quality material outlet (4) and the coarse material outlet (5).

3. The resin processing discharge device that is easy to clean according to claim 1, characterized in that, The collection box (10) has symmetrical sliding grooves (15) on both sides of the middle part, which cooperate with the filter plate (11).

4. The resin processing discharge device that is easy to clean according to claim 3, characterized in that, The filter plate (11) is provided with a handle (16) at one end, and the filter plate (11) is provided with protrusions (17) on both sides that cooperate with the sliding groove (15).

5. The resin processing discharge device that is easy to clean according to claim 1, characterized in that, The screening mechanism (2) includes a motor (201) disposed on one side of the screening box (1). The output end of the motor (201) passes through one side of the screening box (1) and is provided with a drive pulley (202). A belt (203) is provided on the outside of the drive pulley (202), and a driven pulley (204) is provided at the other end of the belt (203). A rotating shaft (205) is provided through one side of the driven pulley (204), and an auger (206) that cooperates with the feed inlet (3) is provided on the outer side of one end of the rotating shaft (205). A screen basket (207) is provided on the outer side of the middle part of the rotating shaft (205). The sieve basket (207) is provided with a number of rotating rods (208) that cooperate with the rotating shaft (205) inside, and the outer wall of the sieve basket (207) is provided with a number of through holes (209).

6. The resin processing discharge device that is easy to clean according to claim 5, characterized in that, The screen basket (207) has a conical structure inside, and the inner diameter of the screen basket (207) gradually increases along the direction from the feed inlet (3) to the coarse material outlet (5).

7. The resin processing discharge device that is easy to clean according to claim 1, characterized in that, The disassembly mechanism (12) includes a fixed seat (1201) symmetrically arranged inside the collection box (10). Springs (1202) are symmetrically arranged at both ends of one side of the fixed seat (1201), and an arc-shaped pressure plate (1203) is connected to one side of each spring (1202). One of the arc-shaped pressure plates (1203) has a first arc-shaped clamping plate (1204) on its inner wall, and the other arc-shaped pressure plate (1203) has a second arc-shaped clamping plate (1205) on its inner wall. The bottom of the first arc-shaped clamping plate (1204) and the second arc-shaped clamping plate (1205) are movably connected by a movable shaft (1206).

8. The resin processing discharge device that is easy to clean according to claim 7, characterized in that, The disassembly mechanism (12) further includes a circular locking block (1207) symmetrically arranged at the other end of the filter plate (11), the circular locking block (1207) cooperating with the inner walls of the first arc-shaped locking plate (1204) and the second arc-shaped locking plate (1205); The circular card block (1207) has symmetrical slots (1208) on the outer walls of its top two sides that cooperate with the top of the first arc-shaped card plate (1204) and the top of the second arc-shaped card plate (1205).

9. The resin processing discharge device that is easy to clean according to claim 8, characterized in that, The top of the first arc-shaped card plate (1204) and the top of the second arc-shaped card plate (1205) are both set as arc-shaped surfaces, and the cross-section of the card slot (1208) is set as an arc-shaped structure that matches the arc-shaped surface.