Spinning fiber regenerating and breaking device

By designing a crushing component with shredding, cutting, and tearing modules, the problems of low crushing efficiency and entanglement jamming of spinning waste were solved, achieving efficient recycling of spinning waste.

CN224308549UActive Publication Date: 2026-06-02GUANGZHOU BAOHENG TEXTILE TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU BAOHENG TEXTILE TECH CO LTD
Filing Date
2025-06-16
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing spinning waste crushing equipment has low crushing efficiency, and the waste is prone to getting tangled on the crushing device, causing jamming and affecting its efficiency.

Method used

A crushing assembly including a shredding module, a cutting module, a tearing module, and a pushing module was designed. The shredding blades are inclined to quickly shred the spinning waste, and the cutting and tearing modules perform secondary crushing and dispersion. Finally, the pushing module discharges the waste into the device.

Benefits of technology

It improves the crushing efficiency of spinning waste, reduces the possibility of spinning waste getting tangled and stuck, and improves the recycling efficiency of spinning waste.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224308549U_ABST
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Abstract

The utility model discloses a kind of spinning fiber regeneration crushing devices, including rack, drive module and crusher body, further include crushing assembly, crushing assembly is rotatably installed in crusher body, crushing assembly is connected with drive module;The crushing assembly includes cutting module, cutting module, tearing module, push material module installed in rotating shaft in turn, rotating shaft is connected with drive module;This spinning fiber regeneration crushing device is rapidly rotated by cutting module, and spinning waste material is cut, and cutting blade is inclined to set, can be cut spinning waste material like cutting module and advance, spinning waste material is cut twice, and waste material is stirred by stirring module, spinning crushing waste material is discharged from the device by push material module;The device can effectively improve the crushing efficiency of spinning waste material, and then improve the efficiency of subsequent use waste material regeneration spinning, while the device can effectively reduce the possibility that spinning waste material is wound and stuck in the device.
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Description

Technical Field

[0001] This utility model relates to the field of spinning technology, specifically to a spinning fiber regeneration and crushing device. Background Technology

[0002] The textile industry is an indispensable part of people's daily lives. During the production process, the textile industry inevitably generates a large amount of spinning waste. The treatment of this spinning waste is quite troublesome and difficult to recycle. When spinning waste is recycled and reused to produce new spinning, it needs to be crushed to facilitate the subsequent spinning process. However, because spinning is fibrous and thread-like in structure, existing crushing equipment can quickly cut and crush the waste, resulting in low crushing efficiency. Moreover, if the spinning waste is not crushed in time, it is easy to get tangled in the crushing device, causing the crushing device to jam and making it inconvenient for users. Utility Model Content

[0003] In view of the shortcomings of the existing technology, this utility model provides a spinning fiber regeneration and crushing device, which can quickly crush spinning fibers and improve the recycling efficiency of spinning waste.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] A spinning fiber recycling and crushing device includes a frame, a drive module, and a crusher body. The crusher body is mounted on the frame and a cover is installed on the crusher body. The drive module is mounted on the frame. The device also includes a crushing component, which is rotatably mounted in the crusher body and connected to the drive module.

[0006] The crushing component includes a shredding module, a cutting module, a tearing module, a pushing module, and a rotating shaft. The shredding module, the cutting module, the tearing module, and the pushing module are sequentially mounted on the rotating shaft, and the rotating shaft is connected to the drive module.

[0007] The chopping module includes two mounting turntables and several chopping mechanisms. The mounting turntables are fixedly mounted on the rotating shaft. Several chopping mechanisms are evenly arranged between the two mounting turntables. Each chopping mechanism is separated from the others. Each chopping mechanism includes a mounting plate and a chopping blade. The mounting plate is fixedly mounted between the two mounting turntables. The chopping blade is fixedly mounted on the mounting plate and is inclined on the mounting plate.

[0008] The cutting module is separate from the shredding module. The cutting module includes several cutting mechanisms, each including a fixed plate and a cutting blade. One end of the fixed plate is fixedly mounted on a rotating shaft, and the cutting blade is mounted on the fixed plate.

[0009] Furthermore, the tearing module includes a roller and several tearing plates. The roller is fixedly installed on the rotating shaft, and several tearing plates are evenly arranged on the surface of the roller. Several partitions are evenly arranged on both sides of the interior of the crusher body. The partitions are separated from each other, and the sweeping paths of each tearing plate pass through the space formed between the partitions.

[0010] Furthermore, the pushing module includes several pushing plates, which are fixedly installed on the outer wall of the end of the roller away from the cutting module.

[0011] Furthermore, the crusher body is equipped with a feed hopper and a discharge hopper, the feed hopper being adapted to the setting position of the crushing module, and the discharge hopper being adapted to the setting position of the discharge module.

[0012] Furthermore, the drive module includes a drive motor and a transmission mechanism. The drive motor is fixedly mounted on the frame, and the drive motor is connected to the rotating shaft through the transmission mechanism.

[0013] Compared with the prior art, the present invention provides a spinning fiber regeneration and crushing device, which has the following beneficial effects:

[0014] This spinning fiber recycling and crushing device uses a rapidly rotating shredding module. The shredding blades quickly cut the spinning waste material. The inclined blades push the shredded waste material into the shredding module, which then performs a secondary cut. A dispersing module further disperses the shredded waste, reducing the likelihood of clumping. Finally, a pushing module discharges the crushed waste material from the device. This device effectively improves the crushing efficiency of spinning waste, thereby increasing the efficiency of subsequent waste recycling. It also effectively reduces the possibility of the waste material entanglement and jamming, making it easier for users to operate. Attached Figure Description

[0015] Figure 1 This is a perspective view of the present utility model;

[0016] Figure 2 This is a diagram of the internal structure of the present invention.

[0017] Figure 3 This is a schematic diagram of the structure of the crushing component of this utility model.

[0018] In the diagram: 1. Frame, 2. Transmission mechanism, 3. Crusher body, 31. Feed hopper, 32. Discharge hopper, 33. Baffle plate, 34. Cover, 4. Chopping module, 41. Mounting turntable, 42. Mounting plate, 43. Chopping blade, 5. Cutting module, 51. Fixing plate, 52. Cutting blade, 6. Tearing module, 61. Roller, 62. Pulling plate, 7. Pushing plate, 8. Rotating shaft. Detailed Implementation

[0019] 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.

[0020] Please see Figures 1 to 3 The present invention provides the following technical solution:

[0021] A spinning fiber recycling and crushing device includes a frame 1, a drive module, and a crusher body 3. The crusher body 3 is mounted on the frame 1 and a cover 34 is installed on the crusher body 3. The cover 34 is movably mounted on the crusher body 3, allowing the user to open the cover 34 to check the condition inside the crusher body 3. The drive module is mounted on the frame 1 and also includes a crushing component. The crushing component is rotatably mounted inside the crusher body 3 and is connected to the drive module. The drive module is used to drive the crushing component to rotate, so that the crushing component can quickly crush the spinning fiber waste.

[0022] The crushing assembly includes a shredding module 4, a cutting module 5, a tearing module 6, a pushing module, and a rotating shaft 8. The shredding module 4, the cutting module 5, the tearing module 6, and the pushing module are sequentially mounted on the rotating shaft 8. The rotating shaft 8 is connected to the drive module, which can drive the shredding module 4, the cutting module 5, the tearing module 6, and the pushing module to rotate. The shredding module 4 is used to quickly shred the spinning fiber waste, the cutting module 5 is used to perform secondary shredding on the spinning waste, the tearing module 6 is used to disperse the shredded spinning waste to reduce the possibility of the spinning waste clumping, and the pushing module is used to push the crushed spinning waste out of the device.

[0023] A feed hopper 31 adapted to the position of the shredding module 4 is provided at the crusher body 3. Spinning waste is conveyed from the feed hopper 31 to the working space of the shredding module 4. The shredding module 4 includes two mounting turntables 41 and several shredding mechanisms. The mounting turntables 41 are fixedly mounted on the rotating shaft 8. Several shredding mechanisms are evenly arranged between the two mounting turntables 41, forming a cylindrical structure with each shredding mechanism. Each shredding mechanism is separated from the others, with sufficient gaps between them to allow the shredded spinning waste to pass through, preventing clogging between the crushing module and the crusher body 3. The shredding mechanism includes a mounting plate 42. The shredding blade 43 and the mounting plate 42 are fixedly installed between the two mounting turntables 41. The shredding blade 43 is used to shred the spinning fiber waste. The rapid rotation of each shredding blade 43 works together to quickly shred the spinning fiber waste or woven fabric, reducing the possibility of spinning or woven fabric getting tangled inside the crusher body 3 and jamming the device. The shredding blade 43 is fixedly installed on the mounting plate 42 and is inclined on the mounting plate 42, so that while shredding the spinning waste, the shredding blade 43 provides forward thrust to the spinning waste, so that the spinning waste can be pushed to the cutting module 5 for secondary cutting and shredding.

[0024] The cutting module 5 is separated from the shredding module 4, leaving space for the foot massage to accommodate the spinning waste. The cutting module 5 includes several cutting mechanisms, each including a fixed plate 51 and a cutting blade 52. One end of the fixed plate 51 is fixedly mounted on the rotating shaft 8, and the cutting blade 52 is mounted on the fixed plate 51. The rotating shaft 8 drives each cutting blade 52 to rotate through the fixed plate 51, so that the cutting blade 52 can perform secondary cutting and shredding of the spinning waste.

[0025] After being cut twice by the cutting module 5, the waste material enters the space on both sides of the crusher body 3 where several partitions 33 are evenly arranged. The tearing module 6 works together to disperse the crushed spinning fibers. The tearing module 6 includes a roller 61 and several tearing plates 62. The roller 61 is fixedly installed on the rotating shaft 8. The roller 61 can reduce the space between itself and the crusher body 3 after rotation, so that the tearing plates 62 installed on the surface of the roller 61 can better tear the crushed spinning waste material. The sweeping path of each tearing plate 62 passes through the space formed between the partitions 33. Together with the partitions 33, the spinning waste material can be better dispersed.

[0026] The pushing module includes several pushing plates 7, which are fixedly installed on the outer side wall of the roller 61 away from the cutting module 5. The pushing plates 7 are adapted to the discharge hopper 32 located on the crusher body 3, so that the pushing plates 7 can push the agitated spinning fibers into the discharge hopper 32 and discharge them from the device.

[0027] The drive module includes a drive motor and a transmission mechanism 2. The drive motor is fixedly mounted on the frame 1. The drive motor and the rotating shaft 8 are connected through the transmission mechanism 2. The transmission mechanism 2 can be a pulley belt drive mechanism, a chain sprocket drive mechanism, a gear drive mechanism, etc. Both the drive motor and the transmission mechanism 2 are existing technologies and will not be described in detail here. Users can select and configure them as needed.

[0028] The specific implementation process is as follows:

[0029] When using this spinning fiber recycling and crushing device, first start the drive motor. The drive motor drives the rotating shaft 8 to rotate through the transmission mechanism 2. The rotating shaft 8 then drives the shredding module 4, the cutting module 5, the tearing module 6, and the pushing module to rotate. At this time, the spinning fiber waste to be crushed can be fed into the feed hopper 31. The spinning waste enters the working space of the shredding module 4 in the crusher body 3. The shredding blades 43 between the two mounting discs 41 rotate rapidly, and the spinning fibers enter the space between the two shredding blades 43. With the limiting effect of the inner wall of the crusher body 3, the shredding blades 43 can cut the spinning fiber waste. Through multiple cuts by each shredding blade 43, the spinning fiber can be recycled and crushed. The fiber waste is thoroughly shredded. Due to the inclined arrangement of the shredding blades 43, the shredding blades 43 push the shredded spinning fiber waste towards the cutting module 5 while cutting the spinning fiber waste. After being cut and crushed a second time by the cutting blades 52 of the cutting module 5, the spinning fiber waste enters the space of the crusher body 3 equipped with partitions 33. The pulling plate 62 on the roller 61 of the tearing module 6 works in conjunction with the partitions 33 to stir the crushed spinning fiber fragments, so that the spinning fiber fragments are fully dispersed and the possibility of clumping is reduced. Then the spinning fiber fragments enter the working space of the pushing module and are pushed to the discharge hopper 32 by the pushing plate 7, and then discharged from the device.

[0030] This spinning fiber recycling and crushing device uses a rapidly rotating shredding module 4, which allows the shredding blades 43 to quickly cut the spinning waste. The shredding blades 43 are angled to push the shredded spinning waste into a cutting module 5, which performs secondary cutting and crushing on the already crushed spinning waste. A dispersing module then disperses the shredded spinning waste, reducing the possibility of clumping. Finally, a pushing module discharges the crushed spinning waste from the device. This device effectively improves the crushing efficiency of spinning waste, thereby increasing the efficiency of subsequent waste recycling. Simultaneously, this device effectively reduces the possibility of spinning waste entanglement and jamming, making it convenient for users.

[0031] The above description is merely an embodiment of this utility model. Commonly known structures and characteristics are not described in detail here. Those skilled in the art are aware of all common technical knowledge in the field prior to the application date or priority date, are aware of all existing technologies in that field, and have the ability to apply conventional experimental methods prior to that date. Those skilled in the art can, based on the guidance provided in this application, improve and implement this solution in combination with their own capabilities. Some typical known structures or methods should not be obstacles for those skilled in the art to implement this application. It should be noted that those skilled in the art can make several modifications and improvements without departing from the structure of this utility model. These should also be considered within the scope of protection of this utility model, and will not affect the effectiveness of the implementation of this utility model or the applicability of the patent. The scope of protection claimed in this application should be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.

Claims

1. A spinning fiber regeneration and crushing device, comprising a frame, a drive module, and a crusher body, wherein the crusher body is mounted on the frame, a cover is installed on the crusher body, and the drive module is mounted on the frame, characterized in that: It also includes a crushing component, which is rotatably mounted inside the crusher body and connected to the drive module; The crushing component includes a shredding module, a cutting module, a tearing module, a pushing module, and a rotating shaft. The shredding module, the cutting module, the tearing module, and the pushing module are sequentially mounted on the rotating shaft, and the rotating shaft is connected to the drive module. The chopping module includes two mounting turntables and several chopping mechanisms. The mounting turntables are fixedly mounted on the rotating shaft. Several chopping mechanisms are evenly arranged between the two mounting turntables. Each chopping mechanism is separated from the others. Each chopping mechanism includes a mounting plate and a chopping blade. The mounting plate is fixedly mounted between the two mounting turntables. The chopping blade is fixedly mounted on the mounting plate and is inclined on the mounting plate. The cutting module is separate from the shredding module. The cutting module includes several cutting mechanisms, each including a fixed plate and a cutting blade. One end of the fixed plate is fixedly mounted on a rotating shaft, and the cutting blade is mounted on the fixed plate.

2. The spinning fiber regeneration and crushing device according to claim 1, characterized in that: The tearing module includes a roller and several tearing plates. The roller is fixedly installed on a rotating shaft. Several tearing plates are evenly arranged on the surface of the roller. Several partitions are evenly arranged on both sides of the inside of the crusher body. The partitions are separated from each other. The sweeping path of each tearing plate passes through the space formed between the partitions.

3. The spinning fiber regeneration and crushing device according to claim 2, characterized in that: The pushing module includes several pushing plates, which are fixedly installed on the outer wall of the end of the roller away from the cutting module.

4. The spinning fiber regeneration and crushing device according to claim 1, characterized in that: The crusher body is equipped with a feed hopper and a discharge hopper. The feed hopper is adapted to the setting position of the crushing module, and the discharge hopper is adapted to the setting position of the discharge module.

5. The spinning fiber regeneration and crushing device according to claim 1, characterized in that: The drive module includes a drive motor and a transmission mechanism. The drive motor is fixedly mounted on the frame, and the drive motor is connected to the rotating shaft through the transmission mechanism.