An auxiliary material recycling device for clothing production

By designing the auxiliary material recycling device for clothing production, and using components such as separation rods, vibrating screen plates, mobile push plates and crushing heads, the problems of low manual recycling efficiency and poor safety in the existing technology are solved, and efficient and safe recycling and reuse of auxiliary material are achieved.

CN119928124BActive Publication Date: 2025-06-20XIZHONG (NANTONG) CULTURE & TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202510416295.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2025-06-20
Estimated Expiration
2045-04-03

AI Technical Summary

Technical Problem

The recycling of existing clothing accessories mostly relies on manual separation, which is inefficient and can easily lead to hand injuries, making it difficult to effectively recycle and reuse auxiliary materials.

Method used

A device for recycling accessories for clothing production is designed, including a screening assembly, a first conveyor belt, a collection bin, a second conveyor belt and a crushing head. The auxiliary materials are initially separated by a separation rod, the vibrating screen plate is used to screen particulate matter, and the push plate and the cylinder are moved to push the auxiliary materials into the collection bin, and the crushing head is used for double crushing treatment.

Benefits of technology

The workload of manual screening and cleaning is reduced, the efficiency and safety of auxiliary material recycling is improved, and the effective separation and reuse of auxiliary material is realized.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an auxiliary material recycling device for clothing production, including an auxiliary material recycling device for clothing production, which includes a screening component, a support frame, a first conveyor belt, a collection bin, a second conveyor belt, a first motor, and a support table. The screening component is arranged on the top of the support frame, the first conveyor belt is arranged inside the support frame, the collection bin is installed on one side of the support frame, and the second conveyor belt is arranged inside the collection bin. The present invention has the advantages of strong practicability. The connecting block is driven to rotate by the first conveyor belt, so that the connecting block drives the second crushing blade and the first crushing roller to rotate, and the cloth entering the crushing head is crushed. After being double-crushed by the first crushing roller and the second crushing blade, it is discharged from the cloth slot opened under the outer shell. For the cloth strips that are not wound around the separation rod, the push plate is moved to push the cloth strips down, reducing the workload of manual cleaning.
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Description

Technical Field

[0001] The invention relates to the technical field of clothing production, in particular to an auxiliary material recovery device for clothing production. Background Art

[0002] Garment accessories refer to various materials and accessories used to assist in the production and decoration of clothing during the production process. Common garment accessories include the following categories: buttons, zippers, linings, etc. In addition to the common accessories listed above, there are also a variety of accessories such as webbing, buttonholes, hemming tape, chest pads, hangers, pocket cloths, etc. Accessories play an important role in the design, production and function of clothing. Choosing the right clothing accessories can add characteristics to clothing and improve wearing comfort and quality.

[0003] A large amount of auxiliary material waste is generated during the clothing production process. A large amount of fabrics, buttons, zippers, thread ends, etc. are piled together and are difficult to distinguish. Most of the existing clothing auxiliary material recycling is done by manual separation, which is not only labor-intensive but also easy to cause hand injuries. The manual recycling and separation efficiency is low, making it difficult to recycle and reuse these auxiliary materials.

[0004] Therefore, the design is highly practical and can drive the connecting block to rotate through the first transmission belt, so that the connecting block can drive the second crushing blade and the first crushing roller to rotate, and the cloth entering the crushing head is crushed. After the double crushing of the first crushing roller and the second crushing blade, the cloth is discharged from the cloth trough opened at the bottom of the shell. For the cloth strips that are not wrapped around the separation rod, the push plate can be moved to push the cloth strips off. It is very necessary to have a clothing production auxiliary material recovery device that reduces the workload of manual cleaning. Summary of the invention

[0005] The purpose of the present invention is to provide a device for recovering auxiliary materials for garment production to solve the problems raised in the above-mentioned background technology.

[0006] In order to solve the above technical problems, the present invention provides the following technical solutions: a clothing production auxiliary material recovery device, comprising a screening assembly, a support frame, a first conveyor belt, a collecting bin, a second conveyor belt, a first motor and a support table, the screening assembly is arranged on the top of the support frame, the first conveyor belt is arranged inside the support frame, the collecting bin is installed on one side of the support frame, the second conveyor belt is arranged inside the collecting bin, the first motor is installed at one end of the first conveyor belt, and the support table is fixedly connected to the other side of the support frame.

[0007] The sub-screening assembly includes a sub-screening bin, a separation rod, a mounting plate, a vibrating screen plate, a vibration motor, a movable push plate, a cylinder and a discharge chute. The sub-screening bin is fixedly connected to the top of the support frame, the separation rod is fixedly connected to the interior of the sub-screening bin, the mounting plate is installed at both ends inside the sub-screening bin, the vibrating screen plate is fixedly connected to the bottom of the mounting plate, the vibration motor is screwed to the outside of the sub-screening bin, the movable push plate is arranged on the outside of the separation rod, the cylinder is screwed to one side of the sub-screening bin, and the discharge chute is opened on the side of the sub-screening bin away from the cylinder. The separated materials enter the sub-screening bin, and ordinary cloth, buttons, etc. are preliminarily separated by the separation rod and fall on the vibrating screen plate. Then the vibration motor drives the vibrating screen plate to vibrate, and granular and blocky items such as buttons and zippers are screened. The movable push plate is pushed by the cylinder to send the cloth from the discharge chute to the collecting bin for screening, thereby reducing the workload of manual screening.

[0008] According to the above technical solution, the movable push plate includes a plate body, a cleaning mechanism, a bottom push plate and a cleaning rotating tube. The cleaning mechanism is sleeved and connected to the outside of the separation rod, the plate body is fixedly connected to the outside of the cleaning mechanism, the bottom push plate is fixedly connected to one side of the bottom of the plate body, and the cleaning rotating tube is rotatably connected to the bottom of the bottom push plate. The push rod of the cylinder penetrates the sub-screening bin and is fixedly connected to the plate body. Therefore, the plate body moves, driving the bottom push plate to push the cloth above the vibrating screen plate, and the cleaning rotating tube at the bottom of the bottom push plate also cleans the sieve holes of the vibrating screen plate.

[0009] According to the above technical solution, the cleaning mechanism includes a crushing head and a driving block, the driving block is fixedly connected to the inside of the plate body, and the crushing head is arranged at one end of the driving block.

[0010] According to the above technical solution, the crushing head includes an outer shell, a fixed rotating shaft, a first crushing roller, a second crushing blade, a connecting block and a first transmission belt, the outer shell is fixedly connected to one end of the driving block, the fixed rotating shaft is fixedly connected to the inside of the outer shell, the first crushing roller is rotatably connected to the inside of the fixed rotating shaft, the second crushing blade is fixedly connected to one end of the first crushing roller, the connecting block is fixedly connected to one end of the second crushing blade, the first transmission belt is sleeved and connected to the outside of the connecting block, and the connecting block is driven to rotate by the first transmission belt, so that the connecting block drives the second crushing blade and the first crushing roller to rotate, and the cloth entering the crushing head is crushed, and after the double crushing by the first crushing roller and the second crushing blade, the cloth is discharged from the cloth trough opened at the bottom of the outer shell, and for the cloth strips not wrapped around the separation rod, the push plate can be moved to push the cloth strips off.

[0011] According to the above technical solution, the driving block includes a protective block, a driving motor, a heat dissipation groove, a mounting bracket, a fan, a rotating circle and a second transmission belt. The protective block is fixedly connected to the inside of the plate body, the driving motor is fixedly connected to the inside of the protective block, the heat dissipation groove is opened on both sides of the protective block, the mounting bracket is fixedly installed on one side of the driving motor, the fan is arranged inside the mounting bracket, the rotating circle is rotatably connected to one end inside the protective block, the second transmission belt is sleeved and connected to the outside of the rotating circle, and the output shaft of the driving motor is sleeved and connected to the inside of the other end of the second transmission belt. Therefore, the driving motor can drive the crushing head to work, and through the action of the fan and the heat dissipation groove, the heat generated by the driving motor working in the protective block can be discharged, thereby extending the service life of the heat dissipation groove.

[0012] According to the above technical solution, the fixed rotating shaft includes a tube body and a rotating rod, the tube body is fixedly connected to the inside of the outer shell, the rotating rod is rotatably connected to the inside of the tube body, and the outside of the first crushing roller is rotatably connected to the rotating rod, so the first crushing roller can rotate within the fixed rotating shaft, thereby crushing and cleaning the cloth strips wrapped around the separation rod.

[0013] According to the above technical solution, the output shaft of the first motor passes through the first conveyor belt and is fixedly connected to the rollers inside the second conveyor belt, so the first motor can drive the first conveyor belt and the second conveyor belt to operate together at the same time.

[0014] According to the above technical solution, the size of the plate body is consistent with the size of the inner wall of the sub-screening bin, so it can cover the inside of the sub-screening bin and push the auxiliary materials in the sub-screening bin into the collecting bin.

[0015] According to the above technical solution, the separation rods are grouped in two and are evenly distributed above the inside of the screening bin, ensuring a good separation effect on the cloth strips and block-shaped auxiliary materials.

[0016] According to the above technical solution, an inclined plate is provided at the bottom of the discharge chute, and the inclined plate is inclined toward the inside of the collecting bin to facilitate auxiliary materials such as cloth to fall onto the second conveyor belt.

[0017] Compared with the prior art, the beneficial effects achieved by the present invention are:

[0018] The present invention performs preliminary separation of common cloth, buttons and the like by means of a separation rod, and drops the cloth onto a vibrating screen plate. Subsequently, a vibrating motor drives the vibrating screen plate to vibrate, and granular and block-shaped items such as buttons and zippers are screened. A cylinder drives a movable push plate to push the cloth from a discharge trough into a collecting bin for screening, thereby reducing the workload of manual screening.

[0019] In the present invention, a first conveyor belt drives a connecting block to rotate, thereby enabling the connecting block to drive a second crushing blade and a first crushing roller to rotate, crushing the fabric entering the crushing head. After double crushing by the first crushing roller and the second crushing blade, it is discharged through a fabric slot opened below the housing. For the fabric strips not wound around the separating rod, the push plate is moved to push the strips down, reducing the workload of manual cleaning.

[0020] In the present invention, the push rod of a cylinder passes through a screening bin and is fixedly connected to a plate body. Therefore, the plate body moves, driving a bottom push plate to push the fabric above the vibrating sieve plate, and a cleaning rotating pipe at the bottom of the bottom push plate also cleans the sieve holes of the vibrating sieve plate.

[0021] In the present invention, a drive motor can drive a crushing head to work. Through the action of a fan and a heat dissipation slot, the heat generated when the drive motor works inside a protective block can be discharged, thereby extending the service life of the heat dissipation slot. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] The drawings are used to provide further understanding of the present invention, and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention, and do not constitute a limitation to the present invention.

[0023] In the drawings:

[0024] Figure 1 is a schematic front view of the overall structure of the present invention;

[0025] Figure 2 is a schematic structural view of the screening assembly of the present invention;

[0026] Figure 3 is a schematic structural view of the moving push plate of the present invention;

[0027] Figure 4 is a schematic structural view of the cleaning mechanism of the present invention;

[0028] Figure 5 is a schematic structural view of the crushing head of the present invention;

[0029] Figure 6 is a schematic structural view of the drive block of the present invention;

[0030] Figure 7 is a schematic structural view of the fixed rotating shaft of the present invention.

[0031] In the figure: 1. Screening component; 2. Support frame; 3. First conveyor belt; 4. Collection bin; 5. Second conveyor belt; 6. First motor; 7. Support platform; 101. Screening bin; 102. Separation rod; 103. Mounting plate; 104. Vibrating sieve plate; 105. Vibration motor; 106. Moving push plate; 107. Cylinder; 108. Discharge chute; 110. Plate body; 111. Cleaning mechanism; 112. Bottom push plate; 113. Cleaning rotating pipe; 120. Crushing head; 121. Driving block; 130. Outer shell; 131. Fixed rotating shaft; 132. First crushing roller; 133. Second crushing edge; 134. Connecting block; 135. First transmission belt; 140. Protection block; 141. Driving motor; 142. Heat dissipation slot; 143. Mounting frame; 144. Fan; 145. Rotating ring; 146. Second transmission belt; 150. Pipe body; 151. Rotating rod. Specific embodiments

[0032] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0033] Please refer to Figure 1-7 , the present invention provides the following technical solutions: An auxiliary material recycling device for clothing production, including a screening component 1, a support frame 2, a first conveyor belt 3, a collection bin 4, a second conveyor belt 5, a first motor 6, and a support platform 7. The screening component 1 is arranged on the top of the support frame 2, the first conveyor belt 3 is arranged inside the support frame 2, the collection bin 4 is installed on one side of the support frame 2, the second conveyor belt 5 is arranged inside the collection bin 4, the first motor 6 is installed at one end of the first conveyor belt 3, the support platform 7 is fixedly connected to the other side of the support frame 2, and the output shaft of the first motor 6 penetrates the first conveyor belt 3 and is fixedly connected to the roller inside the second conveyor belt 5. Therefore, the first motor 6 can drive the first conveyor belt 3 and the second conveyor belt 5 to operate simultaneously.

[0034] The screening assembly 1 includes a screening bin 101, a separation rod 102, a mounting plate 103, a vibrating screen plate 104, a vibration motor 105, a movable push plate 106, a cylinder 107 and a discharge chute 108. The screening bin 101 is fixedly connected to the top of the support frame 2, the separation rod 102 is fixedly connected to the inside of the screening bin 101, the mounting plate 103 is installed at both ends inside the screening bin 101, the vibrating screen plate 104 is fixedly connected to the bottom of the mounting plate 103, the vibration motor 105 is screwed to the outside of the screening bin 101, the movable push plate 106 is arranged on the outside of the separation rod 102, the cylinder 107 is screwed to one side of the screening bin 101, and the discharge chute 108 is opened on the side of the screening bin 101 away from the cylinder 107. The separated materials enter the inside of the screening bin 101, and the ordinary cloth, buttons, etc. are initially screened by the separation rod 102. The cloth is separated and falls on the vibrating screen plate 104. Then the vibrating motor 105 drives the vibrating screen plate 104 to vibrate, and granular and block-like items such as buttons and zippers are screened. The movable push plate 106 is driven by the cylinder 107 to push the cloth from the discharge trough 108 to the collecting bin 4 for screening, thereby reducing the workload of manual screening. The size of the plate body 110 is consistent with the size of the inner wall of the sub-screening bin 101, so it can cover the inside of the sub-screening bin 101, and push the auxiliary materials in the sub-screening bin 101 into the collecting bin 4. The separation rods 102 are grouped into two and are evenly distributed above the inside of the sub-screening bin 101, ensuring that the cloth strips and block-like auxiliary materials can be well separated. An inclined plate is provided at the bottom of the discharge trough 108, and the inclined plate is inclined toward the inside of the collecting bin 4, so that auxiliary materials such as cloth can fall onto the top of the second conveyor belt 5.

[0035] The movable push plate 106 includes a plate body 110, a cleaning mechanism 111, a bottom push plate 112 and a cleaning rotating tube 113. The cleaning mechanism 111 is sleeved and connected to the outside of the separation rod 102, the plate body 110 is fixedly connected to the outside of the cleaning mechanism 111, the bottom push plate 112 is fixedly connected to one side of the bottom of the plate body 110, and the cleaning rotating tube 113 is rotatably connected to the bottom of the bottom push plate 112. The push rod of the cylinder 107 penetrates the sub-screening bin 101 and is fixedly connected to the plate body 110. Therefore, the plate body 110 moves, driving the bottom push plate 112 to push the cloth above the vibrating screen plate 104, and the cleaning rotating tube 113 at the bottom of the bottom push plate 112 also cleans the sieve holes of the vibrating screen plate 104.

[0036] The cleaning mechanism 111 includes a crushing head 120 and a driving block 121 . The driving block 121 is fixedly connected to the inside of the plate body 110 , and the crushing head 120 is disposed at one end of the driving block 121 .

[0037] The crushing head 120 includes a housing 130, a fixed rotating shaft 131, a first crushing roller 132, a second crushing blade 133, a connecting block 134, and a first transmission belt 135. The housing 130 is fixedly connected to one end of the driving block 121. The fixed rotating shaft 131 is fixedly connected to the inside of the housing 130. The first crushing roller 132 is rotatably connected to the inside of the fixed rotating shaft 131. The second crushing blade 133 is fixedly connected to one end of the first crushing roller 132. The connecting block 134 is fixedly connected to one end of the second crushing blade 133. The first transmission belt 135 is sleeved outside the connecting block 134. The connecting block 134 is driven to rotate through the first transmission belt 135, so that the connecting block 134 drives the second crushing blade 133 and the first crushing roller 132 to rotate, crushing the fabric entering the crushing head 120. After being double-crushed by the first crushing roller 132 and the second crushing blade 133, it is discharged from the fabric slot opened below the housing 130. For the strips that are not wound around the separating rod 102, the pushing plate 106 is moved to push the strips down.

[0038] The driving block 121 includes a protective block 140, a driving motor 141, heat dissipation grooves 142, a mounting bracket 143, a fan 144, a rotating ring 145, and a second transmission belt 146. The protective block 140 is fixedly connected to the inside of the plate body 110. The driving motor 141 is fixedly connected to the inside of the protective block 140. The heat dissipation grooves 142 are opened on both sides of the protective block 140. The mounting bracket 143 is fixedly installed on one side of the driving motor 141. The fan 144 is arranged inside the mounting bracket 143. The rotating ring 145 is rotatably connected to one end inside the protective block 140. The second transmission belt 146 is sleeved outside the rotating ring 145. The output shaft of the driving motor 141 is sleeved inside the other end of the second transmission belt 146. Therefore, the driving motor 141 can drive the crushing head 120 to work. Through the action of the fan 144 and the heat dissipation grooves 142, the heat generated by the driving motor 141 working inside the protective block 140 can be discharged, thereby extending the service life of the heat dissipation grooves 142.

[0039] The fixed rotating shaft 131 includes a pipe body 150 and a rotating rod 151. The pipe body 150 is fixedly connected to the inside of the housing 130. The rotating rod 151 is rotatably connected to the inside of the pipe body 150. The outside of the first crushing roller 132 is rotatably connected to the rotating rod 151. Therefore, the first crushing roller 132 can rotate inside the fixed rotating shaft 131, so as to crush and clean the strips wound around the separating rod 102.

[0040] In summary, when the device is in use, auxiliary materials are poured into the inside of the sieve separation bin 101. After being separated by the separation rod 102, they then fall onto the vibrating sieve plate 104. The vibrating motor 105 is started to drive the vibrating sieve plate 104 to vibrate, separating the auxiliary materials. Subsequently, the air cylinder 107 is started to drive the movable push plate 106 to move inside the sieve separation bin 101, pushing the auxiliary materials on the vibrating sieve plate 104 so that the auxiliary materials fall into the collection bin 4. Through the action of the first conveyor belt 3 and the second conveyor belt 5, the separated auxiliary materials are transported to the next production process.

[0041] When the auxiliary materials fall into the sieve separation bin 101, the separation rod 102 may be wound with cloth strips, thread ends, etc., which are difficult to clean. Therefore, when the movable push plate 106 is pushed, the drive motor 141 is started, which in turn drives the rotating ring 145 to rotate. The rotating ring 145 is fixedly connected to the connecting block 134, thereby driving the connecting block 134 to rotate, causing the fixed rotating shaft 131 and the second cutting edge 133 to rotate, cutting the cloth strips and thread ends wound on the separation rod 102, and reducing the manual cleaning work.

[0042] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0043] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A clothing production auxiliary material recovery device, comprising a screening assembly (1), a support frame (2), a first conveyor belt (3), a collection bin (4), a second conveyor belt (5), a first motor (6) and a support platform (7), characterized in that: The screening assembly (1) is arranged on the top of the support frame (2), the first conveyor belt (3) is arranged inside the support frame (2), the collecting bin (4) is installed on one side of the support frame (2), the second conveyor belt (5) is arranged inside the collecting bin (4), the first motor (6) is installed on one end of the first conveyor belt (3), and the support platform (7) is fixedly connected to the other side of the support frame (2); The sub-screening assembly (1) comprises a sub-screening bin (101), a separation rod (102), a mounting plate (103), a vibrating screen plate (104), a vibration motor (105), a movable push plate (106), a cylinder (107) and a discharge chute (108); the sub-screening bin (101) is fixedly connected to the top of the support frame (2); the separation rod (102) is fixedly connected to the inside of the sub-screening bin (101); and the mounting plate (103) is mounted on the sub-screening bin. The vibrating screen plate (104) is fixedly connected to the bottom of the mounting plate (103) at two ends inside the sub-screening chamber (101), the vibrating motor (105) is screwed to the outside of the sub-screening chamber (101), the movable push plate (106) is arranged on the outside of the separation rod (102), the cylinder (107) is screwed to one side of the sub-screening chamber (101), and the discharge trough (108) is opened on the side of the sub-screening chamber (101) away from the cylinder (107); The movable push plate (106) comprises a plate body (110), a cleaning mechanism (111), a bottom push plate (112) and a cleaning rotating tube (113); the cleaning mechanism (111) is sleeved and connected to the outside of the separation rod (102); the plate body (110) is fixedly connected to the outside of the cleaning mechanism (111); the bottom push plate (112) is fixedly connected to one side of the bottom of the plate body (110); and the cleaning rotating tube (113) is rotatably connected to the bottom of the bottom push plate (112); The cleaning mechanism (111) comprises a crushing head (120) and a driving block (121), wherein the driving block (121) is fixedly connected to the inside of the plate body (110), and the crushing head (120) is arranged at one end of the driving block (121); The crushing head (120) comprises an outer shell (130), a fixed rotating shaft (131), a first crushing roller (132), a second crushing blade (133), a connecting block (134) and a first transmission belt (135); the outer shell (130) is fixedly connected to one end of the driving block (121); the fixed rotating shaft (131) is fixedly connected to the inside of the outer shell (130); the first crushing roller (132) is rotatably connected to the inside of the fixed rotating shaft (131); the second crushing blade (133) is fixedly connected to one end of the first crushing roller (132); the connecting block (134) is fixedly connected to one end of the second crushing blade (133); and the first transmission belt (135) is sleeved and connected to the outside of the connecting block (134).

2. The auxiliary material recovery device for garment production according to claim 1, characterized in that: The driving block (121) comprises a protective block (140), a driving motor (141), a heat dissipation groove (142), a mounting frame (143), a fan (144), a rotating circle (145) and a second transmission belt (146); the protective block (140) is fixedly connected to the inside of the plate body (110); the driving motor (141) is fixedly connected to the inside of the protective block (140); the heat dissipation groove (142) is opened on both sides of the protective block (140); the mounting frame (143) is fixedly installed on one side of the driving motor (141); the fan (144) is arranged inside the mounting frame (143); the rotating circle (145) is rotatably connected to one end inside the protective block (140); and the second transmission belt (146) is sleeved and connected to the outside of the rotating circle (145).

3. The auxiliary material recovery device for garment production according to claim 2, characterized in that: The fixed rotating shaft (131) comprises a tube body (150) and a rotating rod (151); the tube body (150) is fixedly connected to the inside of the outer shell (130); the rotating rod (151) is rotatably connected to the inside of the tube body (150); and the outside of the first crushing roller (132) is rotatably connected to the rotating rod (151).

4. The auxiliary material recovery device for garment production according to claim 3, characterized in that: The output shaft of the first motor (6) passes through the first conveyor belt (3) and is fixedly connected to the roller inside the second conveyor belt (5).

5. The auxiliary material recovery device for garment production according to claim 4, characterized in that: The size of the plate body (110) is consistent with the size of the inner wall of the screening chamber (101).

6. The auxiliary material recovery device for garment production according to claim 5, characterized in that: The separation rods (102) are grouped in two and are evenly distributed above the interior of the screening chamber (101).

7. The auxiliary material recovery device for garment production according to claim 6, characterized in that: The bottom of the discharge chute (108) is provided with an inclined plate, which is inclined toward the interior of the collection bin (4).

Citation Information

Patent Citations

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