A feeding mechanism for nylon material cleaning processing

By designing a feeding mechanism for cleaning nylon materials, and utilizing a combination of electromagnets and spiral augers, automated impurity removal and conveying were achieved, solving the problem of removing metal debris from nylon materials and improving the efficiency and quality of the cleaning process.

CN224410562UActive Publication Date: 2026-06-26HENAN HAIRUIXIANG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HENAN HAIRUIXIANG TECH CO LTD
Filing Date
2025-07-22
Publication Date
2026-06-26

AI Technical Summary

Technical Problem

During the recycling and cleaning process of nylon materials, metal fragments mixed in with the waste nylon materials are difficult to remove effectively, affecting subsequent processing.

Method used

A feeding mechanism comprising a cleaning box, a chain, an electromagnet, and a spiral auger was designed. The electromagnet attracts and collects metal scraps, and the detector and spiral auger transport nylon raw materials, thereby achieving automated cleaning and conveying.

Benefits of technology

It effectively removes metal debris from nylon raw materials, ensuring smooth subsequent cleaning and processing, and improving processing efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a kind of feeding mechanism for nylon material cleaning processing, including impurity removal box and chain, the upper portion of the impurity removal box is equipped with hopper, and the upper portion of hopper is equipped with upper cover, the inside of impurity removal box is installed chain, and one side of chain is equipped with electromagnet, the inside of chain is equipped with transmission wheel, and the rear end of transmission wheel is equipped with motor one. This one is used for the feeding mechanism of nylon material cleaning processing, compared with existing feeding mechanism, open upper cover and pour raw materials into hopper, motor one is rotated by transmission wheel and drives chain, chain is rotated and drives electromagnet to move in impurity removal box, iron filings etc. in raw materials are adsorbed to electromagnet and move to the upper portion of collection box along with electromagnet, detector detects the electromagnet passing, electromagnet moving to the upper portion of collection box is closed, electromagnet moving out of the upper portion of collection box is opened, so as to send iron filings etc. to collection box, and it is convenient to remove impurity.
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Description

Technical Field

[0001] This utility model relates to the field of nylon material cleaning and processing technology, specifically to a feeding mechanism for nylon material cleaning and processing. Background Technology

[0002] Nylon is a thermoplastic with high surface hardness, high elasticity, and good heat resistance, chemical stability, and insulation. It is widely used in automotive parts, home appliances, and other fields. However, with industrial development, the amount of waste gas from nylon is increasing year by year, making the recycling of waste plastics a growing concern.

[0003] After recycling, nylon needs to be crushed, cleaned, and reprocessed to reprocess the nylon material into nylon granules. During the cleaning and reprocessing process, nylon recycled raw materials need to be continuously fed into the equipment. Usually, the nylon recycled raw materials are mixed with metal fragments, which affects the subsequent processing. Therefore, a feeding mechanism for cleaning and processing nylon materials is needed. Utility Model Content

[0004] The purpose of this invention is to provide a feeding mechanism for cleaning and processing nylon materials, so as to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a feeding mechanism for cleaning and processing nylon materials, comprising a cleaning box and a chain. A hopper is installed above the cleaning box, and a cover is installed above the hopper. The chain is installed inside the cleaning box, and an electromagnet is installed on one side of the chain. A drive wheel is installed on the inner side of the chain, and a motor is installed at the rear end of the drive wheel. The motor drives the chain to rotate through the drive wheel. When the chain rotates, it drives the electromagnet to move in the cleaning box. Iron filings and other materials in the raw materials are attracted to the electromagnet and move with the electromagnet to the top of the collection box.

[0006] Furthermore, a detector is provided above the electromagnet, and a collection box is installed on the right side of the impurity removal box. The detector is provided on both the upper and lower sides of the opening on the left side above the collection box.

[0007] Furthermore, a guide hose is installed below the impurity removal box, and a counterweight ring is installed below the guide hose. The raw material is then fed into the feed inlet through the guide hose, and the counterweight ring submerges the lower end of the guide hose into the feed inlet to prevent it from detaching.

[0008] Furthermore, a rotating shaft is installed on the lower front and rear sides of the impurity removal box, and a feed inlet is installed below the rotating shaft. The conveying pipe rotates below the impurity removal box through the rotating shaft, which facilitates the adjustment of the conveying height and angle.

[0009] Furthermore, a conveying assembly is installed below the feed inlet, and the conveying assembly is welded to the feed inlet.

[0010] Furthermore, the conveying assembly includes a conveying pipe and a spiral auger, and the spiral auger is rotatably connected inside the conveying pipe.

[0011] Furthermore, a second motor is installed at the right end of the conveying pipe, and the second motor is embedded in the conveying pipe. The second motor drives the spiral auger to rotate and convey the raw materials in the conveying pipe from left to right.

[0012] Furthermore, a discharge port is installed below the conveying pipe, and the discharge port is welded to the conveying pipe. The raw material is finally output from the discharge port to the cleaning and processing mechanism.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: After opening the top cover, the raw material is poured into the hopper. Motor 1 drives the chain to rotate through the transmission wheel. When the chain rotates, it drives the electromagnet to move in the impurity removal box. Iron filings and other materials in the raw material are attracted to the electromagnet and move with the electromagnet to the top of the collection box. The detector detects the passing electromagnet, closes the electromagnet that moves to the top of the collection box, and opens the electromagnet that moves out of the top of the collection box, thereby sending the iron filings and other materials into the collection box. The raw material is then fed into the inlet through the guide hose. The counterweight ring sinks the lower end of the guide hose into the inlet to prevent it from falling off. The conveying pipe rotates below the impurity removal box through the rotating shaft, which makes it easy to adjust the conveying height and angle. Motor 2 drives the spiral auger to rotate and convey the raw material in the conveying pipe from left to right. Finally, the raw material is output from the outlet to the cleaning and processing mechanism, which is convenient for conveying.

[0014] 1. In this utility model, the top cover is opened and the raw material is poured into the hopper. The motor drives the chain to rotate through the transmission wheel. When the chain rotates, it drives the electromagnet to move in the impurity removal box. Iron filings and other materials in the raw material are attracted to the electromagnet and move with the electromagnet to the top of the collection box. The detector detects the passing electromagnet, turns off the electromagnet that moves to the top of the collection box, and turns on the electromagnet that moves out of the top of the collection box, thereby sending the iron filings and other materials into the collection box.

[0015] 2. The raw material is then fed into the inlet through a guide hose. The counterweight ring sinks the lower end of the guide hose into the inlet to prevent it from falling off. The conveying pipe rotates below the impurity removal box via a rotating shaft, which facilitates adjustment of the conveying height and angle. The second motor drives the spiral auger to rotate and convey the raw material in the conveying pipe from left to right. Finally, the raw material is output from the outlet to the cleaning and processing mechanism for easy conveying. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of a feeding mechanism for cleaning and processing nylon materials according to the present invention.

[0017] Figure 2This is a partial three-dimensional structural diagram of the impurity removal box of a feeding mechanism for cleaning and processing nylon materials according to this utility model;

[0018] Figure 3 This is a partial three-dimensional structural diagram of the conveying component of a feeding mechanism for cleaning and processing nylon materials according to the present invention.

[0019] In the diagram: 1. Impurity removal box; 2. Motor 1; 3. Drive wheel; 4. Chain; 5. Electromagnet; 6. Detector; 7. Collection box; 8. Hopper; 9. Top cover; 10. Guide hose; 11. Counterweight ring; 12. Rotating shaft; 13. Feed inlet; 14. Conveying assembly; 1401. Conveying pipe; 1402. Spiral auger; 15. Motor 2; 16. Discharge outlet. Detailed Implementation

[0020] like Figure 1 and Figure 2 As shown, a feeding mechanism for cleaning and processing nylon materials includes a cleaning box 1 and a chain 4. A hopper 8 is installed above the cleaning box 1, and a cover 9 is installed above the hopper 8. The chain 4 is installed inside the cleaning box 1, and an electromagnet 5 is installed on one side of the chain 4. A drive wheel 3 is installed on the inner side of the chain 4, and a motor 2 is installed at the rear end of the drive wheel 3. A detector 6 is installed above the electromagnet 5. A collection box 7 is installed on the right side of the cleaning box 1. The cover 9 is opened to pour the raw material into the hopper 8. The motor 2 drives the chain 4 to rotate through the drive wheel 3. When the chain 4 rotates, it drives the electromagnet 5 to move in the cleaning box 1. Iron filings and other materials in the raw material are attracted to the electromagnet 5 and move with the electromagnet 5 to the top of the collection box 7. The detector 6 detects the passing electromagnet 5, closes the electromagnet 5 that moves to the top of the collection box 7, and opens the electromagnet 5 that moves out of the top of the collection box 7, thereby sending the iron filings and other materials into the collection box 7.

[0021] like Figure 1 and Figure 3As shown, a guide hose 10 is installed below the impurity removal box 1, and a counterweight ring 11 is installed below the guide hose 10. Rotating shafts 12 are installed on the lower front and rear sides of the impurity removal box 1, and inlets 13 are installed below the rotating shafts 12. A conveying assembly 14 is installed below the inlets 13, and the conveying assembly 14 is welded to the inlets 13. The conveying assembly 14 includes a conveying pipe 1401 and a spiral auger 1402, with the spiral auger 1402 rotatably connected inside the conveying pipe 1401. A second motor 15 is installed at the right end of the conveying pipe 1401, and the second motor 15 is connected to the conveying pipe 1401. 01 is an embedded connection. A discharge port 16 is installed below the conveying pipe 1401, and the discharge port 16 is welded to the conveying pipe 1401. The raw material is then fed into the inlet port 13 through the guide hose 10. The counterweight ring 11 sinks the lower end of the guide hose 10 into the inlet port 13 to prevent it from falling off. The conveying pipe 1401 rotates below the impurity removal box 1 through the rotating shaft 12, which facilitates the adjustment of the conveying height and angle. The motor 2 15 drives the spiral auger 1402 to rotate and convey the raw material in the conveying pipe 1401 from left to right. Finally, the raw material is output from the discharge port 16 to the cleaning and processing mechanism for easy conveying.

[0022] Working principle: When using this feeding mechanism for cleaning and processing nylon materials, firstly, open the top cover 9 and pour the raw material into the hopper 8. Motor 1 2 drives the chain 4 to rotate through the transmission wheel 3. When the chain 4 rotates, it drives the electromagnet 5 to move in the impurity removal box 1. Iron filings and other materials in the raw material are attracted to the electromagnet 5 and move with the electromagnet 5 to the top of the collection box 7. The detector 6 detects the passing electromagnet 5, closes the electromagnet 5 that moves to the top of the collection box 7, and opens the electromagnet 5 that moves out of the top of the collection box 7, thereby sending the iron filings and other materials into the collection box 7. The raw material is then fed into the inlet 13 through the guide hose 10. The counterweight ring 11 sinks the lower end of the guide hose 10 into the inlet 13 to prevent it from falling off. The conveying pipe 1401 rotates below the impurity removal box 1 through the rotating shaft 12 to facilitate adjustment of the conveying height and angle. Motor 2 15 drives the spiral auger 1402 to rotate and convey the raw material in the conveying pipe 1401 from left to right. Finally, the raw material is output from the outlet 16 to the cleaning and processing mechanism for easy conveying.

Claims

1. A feeding mechanism for cleaning and processing nylon materials, comprising a cleaning box (1) and a chain (4), characterized in that, A hopper (8) is installed above the impurity removal box (1), and a cover (9) is installed above the hopper (8). The chain (4) is installed inside the impurity removal box (1), and an electromagnet (5) is installed on one side of the chain (4). A drive wheel (3) is installed on the inner side of the chain (4), and a motor (2) is installed at the rear end of the drive wheel (3).

2. The feeding mechanism for cleaning and processing nylon materials according to claim 1, characterized in that, A detector (6) is installed above the electromagnet (5), and a collection box (7) is installed on the right side of the impurity removal box (1).

3. The feeding mechanism for cleaning and processing nylon materials according to claim 1, characterized in that, A guide hose (10) is installed below the impurity removal box (1), and a counterweight ring (11) is installed below the guide hose (10).

4. The feeding mechanism for cleaning and processing nylon materials according to claim 1, characterized in that, The front and rear sides of the impurity removal box (1) are equipped with a rotating shaft (12), and the bottom of the rotating shaft (12) is equipped with a feed inlet (13).

5. A feeding mechanism for cleaning and processing nylon materials according to claim 4, characterized in that, A conveying assembly (14) is installed below the feed inlet (13), and the conveying assembly (14) is welded to the feed inlet (13).

6. The feeding mechanism for cleaning and processing nylon materials according to claim 5, characterized in that, The conveying assembly (14) includes a conveying pipe (1401) and a spiral auger (1402), and the spiral auger (1402) is rotatably connected inside the conveying pipe (1401).

7. A feeding mechanism for cleaning and processing nylon materials according to claim 6, characterized in that, The right end of the conveying pipe (1401) is equipped with a second motor (15), and the second motor (15) and the conveying pipe (1401) are connected in an embedded manner.

8. A feeding mechanism for cleaning and processing nylon materials according to claim 6, characterized in that, A discharge port (16) is installed below the conveying pipe (1401), and the discharge port (16) is welded to the conveying pipe (1401).