Woolen sweater processing waste treatment device

By designing an automated transmission mechanism and a guide sleeve sliding mechanism, the problem of manual monitoring and feeding in the treatment of wool sweater processing waste is solved, the automated continuous feeding and discharging of wool sweater waste is achieved, and the treatment efficiency is improved.

CN223324588UActive Publication Date: 2025-09-12XINJIANG YIZHENG WOOL KNITTING GARMENTS CO LTD
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Patent Information

Application Number
CN202422422083.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-09-12
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

In the existing wool sweater processing waste treatment process, manual monitoring of the crushing device is required to ensure the continuous feeding of wool sweater waste, which makes the operation cumbersome.

Method used

A wool sweater processing waste processing device was designed. The transmission mechanism drives the rotating rod and the guide sleeve to slide, realizing the automatic opening and closing of the feed port and the discharge port, ensuring the continuous feeding and discharge of wool sweater waste. The waste is crushed by a motor-driven crushing drum.

Benefits of technology

It realizes the automatic continuous feeding and discharging of wool sweater waste, reduces the need for manual monitoring and improves processing efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223324588U_ABST
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Abstract

The utility model relates to the technical field of woolen sweater processing, and discloses a woolen sweater processing waste treatment device which comprises a treatment box and a crushing box, the crushing box is fixed in an inner cavity of the treatment box, supporting legs are fixedly installed on the periphery of the bottom of the treatment box, every two supporting legs are symmetrical, and notches are formed in the upper side wall and the lower side wall of the treatment box respectively. A feeding port and a discharging port are formed in the upper side wall and the lower side wall of the crushing box correspondingly, and rectangular notches are formed in the feeding port and the discharging port correspondingly. According to the woolen sweater waste feeding device, when the guide sleeve moves, the movable rod can be driven to move, and when the movable rod moves, the sealing plate can be driven to move, so that the feeding port and the discharging port can be opened at the same time, and at the moment, new woolen sweater waste can enter the feeding port; and woolen sweater waste entering the machine last time can be conveyed out through the discharging opening, so that the broken woolen sweater waste is collected through a collecting barrel and the like, and the machine is practical and suitable for wide application and popularization.
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Description

Technical Field

[0001] The utility model belongs to the technical field of wool sweater processing, and in particular relates to a wool sweater processing waste processing device. Background Art

[0002] A wool sweater refers to a knitted garment made of wool. It is widely loved by the public because of its comfort. The production process of a wool sweater involves many steps, including fleece gathering, fleece selection, fleece washing, fleece carding, color matching, and dyeing.

[0003] However, when the existing wool sweater processing waste is processed, it is often crushed by a crushing mechanism. When crushing it, the wool sweaters are often put in together or in batches, resulting in the need for manual placement, so it is necessary to keep an eye on it, which is quite troublesome.

[0004] In view of this, the present utility model is proposed. Utility Model Content

[0005] In order to solve the above technical problems, the basic concept of the technical solution adopted by the present invention is:

[0006] A wool sweater processing waste processing device includes a processing box and a crushing box, the crushing box is fixed in the inner cavity of the processing box, support legs are fixedly installed around the bottom of the processing box, and the four support legs are symmetrical to each other. The upper and lower side walls of the processing box are respectively provided with notches, and the upper and lower side walls of the crushing box are respectively provided with a feed port and a discharge port. The feed port and the discharge port are respectively provided with rectangular notches, and the inner cavity of the rectangular notches is provided with a sealing mechanism. A motor is provided on one side wall of the processing box, and the output end of the motor is fixedly connected to a first rotating rod, which moves through the processing box. One side wall of the sorting box and the crushing box, and the other end is rotatably connected to the inner wall of the processing box, the first rotating rod is provided with a first crushing barrel in the inner cavity of the crushing box, one end of the first rotating rod is fixedly connected to the first gear, and the second gear is meshed with the second gear. The second rotating rod is fixedly passed through the second gear, and the second rotating rod movably passes through the crushing box, and the second crushing barrel is fixedly installed on the second rotating rod. The two ends of the second rotating rod are respectively rotatably connected to the inner wall of the processing box, and a transmission mechanism is provided on the second rotating rod. A sliding mechanism is provided on one side wall of the crushing box close to the transmission mechanism.

[0007] As a preferred embodiment of the present utility model, the transmission mechanism includes a first bevel gear, the first bevel gear is fixedly mounted on the second rotating rod, the upper and lower side walls of the first bevel gear are respectively vertically meshed with the second bevel gear and the third bevel gear are respectively fixedly connected to the first rotating rod and the second rotating rod on the opposite side walls of the second bevel gear and the third bevel gear, the opposite ends of the first rotating rod and the second rotating rod are respectively rotatably connected to connecting plates, and the two connecting plates are respectively fixedly connected to the inner wall of the processing box.

[0008] As a preferred embodiment of the present invention, a guide mechanism is respectively provided on the first rotating rod and the second rotating rod, and the guide mechanism includes two guide slots, and the two guide slots are respectively opened on the first rotating rod and the second rotating rod, and the two guide slots are symmetrical to each other. A guide slider is slidably installed in the inner cavity of the two guide slots, and a guide sleeve is fixedly connected to the outer side of the guide slider, and the two guide sleeves are respectively sleeved on the first rotating rod and the second rotating rod.

[0009] As a preferred embodiment of the present utility model, the sliding mechanism includes two slide grooves, which are respectively opened on the side walls of the crushing box, and the two slide grooves are symmetrical to each other. Slide blocks are slidably installed in the inner cavities of the two slide grooves, and the two slide blocks are symmetrical to each other. The other ends of the two slide blocks are respectively fixedly connected to the two guide sleeves.

[0010] As a preferred embodiment of the present invention, the sealing mechanism includes two sealing plates, and the two sealing plates are respectively slidably arranged in the rectangular slot cavities opened at the feed port and the discharge port.

[0011] As a preferred embodiment of the present invention, the two sealing plates are symmetrical to each other, and one side wall of the two sealing plates is movably mounted with a movable rod, and the other ends of the two movable rods are movably connected to the two guide sleeves respectively.

[0012] Compared with the prior art, the present invention has the following beneficial effects:

[0013] According to the utility model, when the first bevel gear rotates, it will drive the second bevel gear and the third bevel gear to rotate. When the second bevel gear and the third bevel gear rotate, they can respectively drive the first rotating rod and the second rotating rod to rotate. When the first rotating rod and the second rotating rod rotate, they can drive the guide sleeve to slide with the assistance of the slider and the slide groove in the sliding mechanism through the guide slide groove opened above and the guide slider sliding in the inner cavity of the guide slide groove. When the guide sleeve moves, it will be able to drive the movable rod to move. When the movable rod moves, it will be able to drive the sealing plate to move, so that the feed port and the discharge port can be opened at the same time. At this time, the feed port will be able to enter new wool sweater waste, and the discharge port can transport out the wool sweater waste that entered last time, so that the crushed wool sweater waste can be collected by a collection bucket, etc.

[0014] The specific embodiments of the present invention will be described in further detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In the attached figure:

[0016] Figure 1 This is a schematic diagram of the three-dimensional structure of the utility model;

[0017] Figure 2 This is a schematic diagram of the cross-sectional structure of the processing box of the utility model;

[0018] Figure 3 This is a schematic diagram of the inner structure of the processing box of the utility model;

[0019] Figure 4 This is a schematic diagram of the cross-sectional structure of the crushing box of the utility model.

[0020] In the figure: 1. Processing box; 2. Support legs; 3. Crushing box; 4. Feed port; 5. Discharge port; 6. Motor; 7. First rotating rod; 8. First crushing drum; 9. First gear; 10. Second gear; 11. Second rotating rod; 12. Second crushing drum; 13. First bevel gear; 14. Second bevel gear; 15. First rotating rod; 16. Guide sleeve; 17. Guide chute; 18. Second rotating rod; 19. Connecting plate; 20. Chute; 21. Slider; 22. Movable rod; 23. Sealing plate; 24. Third bevel gear. DETAILED DESCRIPTION

[0021] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. The following embodiments are used to illustrate the present invention.

[0022] like Figures 1 to 4As shown, a wool sweater processing waste processing device includes a processing box 1 and a crushing box 3. The crushing box 3 is fixed in the inner cavity of the processing box 1. Support legs 2 are fixedly installed around the bottom of the processing box 1. The four support legs 2 are symmetrical with each other. The upper and lower side walls of the processing box 1 are respectively provided with notches. The upper and lower side walls of the crushing box 3 are respectively provided with a feed port 4 and a discharge port 5. The feed port 4 and the discharge port 5 are respectively provided with rectangular notches, and the inner cavity of the rectangular notches is provided with a sealing mechanism. A motor 6 is provided on one side wall of the processing box 1. The output end of the motor 6 is fixedly connected to a first rotating rod 7. The first rotating rod 7 moves through the processing box 1. One side wall and the crushing box 3, and the other end is rotatably connected to the inner wall of the processing box 1. The first rotating rod 7 is provided with a first crushing barrel 8 in the inner cavity of the crushing box 3. One end of the first rotating rod 7 is fixedly connected to the first gear 9, and a second gear 10 is meshed and installed on one side of the first gear 9. The second rotating rod 11 is fixedly penetrated by the second gear 10, and the second rotating rod 11 movably penetrates the crushing box 3. A second crushing barrel 12 is fixedly installed on the second rotating rod 11. Both ends of the second rotating rod 11 are rotatably connected to the inner wall of the processing box 1. A transmission mechanism is provided on the second rotating rod 11, and a sliding mechanism is provided on one side wall of the crushing box 3 close to the transmission mechanism. When the first bevel gear 13 rotates, it will drive the second bevel gear 14 and the third bevel gear 24 to rotate. When the second bevel gear 14 and the third bevel gear 24 rotate, they can respectively drive the first rotating rod 15 and the second rotating rod 18 to rotate. When the first rotating rod 15 and the second rotating rod 18 rotate, they can drive the guide sleeve 16 to slide with the assistance of the slider 21 and the slide groove 20 in the sliding mechanism through the guide slide groove 17 opened above and the guide slider slidingly arranged in the inner cavity of the guide slide groove 17. When the guide sleeve 16 moves, it will be able to drive the movable rod 22 to move. When the movable rod 22 moves, it will be able to drive the sealing plate 23 to move, so that the feed port 4 and the discharge port 5 can be opened at the same time. At this time, the feed port 4 will be able to enter new wool sweater waste, and the discharge port can transport the wool sweater waste that entered last time, so that the crushed wool sweater waste can be collected through the collection bucket, etc.

[0023] In a specific embodiment, the transmission mechanism includes a first bevel gear 13, which is fixedly mounted on the second rotating rod 11. A second bevel gear 14 and a third bevel gear 24 are respectively mounted vertically and meshed on the upper and lower side walls of the first bevel gear 13. A first rotating rod 15 and a second rotating rod 18 are respectively fixedly connected to the opposite side walls of the second bevel gear 14 and the third bevel gear 24. Opposite ends of the first rotating rod 15 and the second rotating rod 18 are respectively rotatably connected to connecting plates 19, and the two connecting plates 19 are respectively fixedly connected to the inner wall of the processing box 1. In this configuration, the installation position and components of the transmission mechanism are determined.

[0024] Furthermore, the first rotating rod 15 and the second rotating rod 18 are each provided with a guide mechanism, comprising two guide slots 17, one provided on each of the first rotating rod 15 and the other on the second rotating rod 18. The two guide slots 17 are symmetrical to each other, and a guide slider is slidably mounted within each of the two guide slots 17. A guide sleeve 16 is fixedly connected to the outer side of each guide slider, and the two guide sleeves 16 are respectively sleeved onto the first rotating rod 15 and the second rotating rod 18. In this configuration, the installation position and components of the guide mechanism are determined.

[0025] Furthermore, the sliding mechanism includes two chutes 20, each of which is provided on the side wall of the crushing box 3. The two chutes 20 are symmetrical to each other. Slide blocks 21 are slidably mounted in the inner cavities of the two chutes 20. The two slide blocks 21 are symmetrical to each other, and the other ends of the two slide blocks 21 are fixedly connected to the two guide sleeves 16. In this configuration, the installation position and components of the sliding mechanism are determined.

[0026] Furthermore, the sealing mechanism includes two sealing plates 23, which are respectively slidably arranged in the rectangular slot cavities opened at the feed port 4 and the discharge port 5. In this arrangement, the installation position and components of the sealing mechanism are determined.

[0027] Furthermore, the two sealing plates 23 are symmetrical to each other, and one side wall of each sealing plate 23 is movably mounted with a movable rod 22, and the other ends of the two movable rods 22 are movably connected to the two guide sleeves 16. In this arrangement, the two sealing plates 23 are guaranteed to be movable.

[0028] The implementation principle of the wool sweater processing waste processing device of this embodiment is as follows: first, the staff places the wool sweater waste in the slot opened above the processing box 1, and at this time, the controller controls the motor 6 to operate. When the motor 6 is operating, it will be able to drive the first rotating rod 7 to rotate, and the rotation of the first rotating rod 7 will be able to drive the first crushing drum 8 to rotate. At the same time, when the first rotating rod 7 rotates, it will be able to drive the first gear 9 to rotate. When the first gear 9 rotates, it will be able to drive the meshed second gear 10 to rotate. When the second gear 10 rotates, it will be able to drive the second rotating rod 11 to rotate. When the second rotating rod 11 rotates, it will be able to drive the second crushing drum 12 and the first bevel gear 13 to rotate. At this time, the placed wool sweater waste can be crushed by the first crushing drum 8 and the second crushing drum 12;

[0029] When the first bevel gear 13 rotates, it will drive the second bevel gear 14 and the third bevel gear 24 to rotate. When the second bevel gear 14 and the third bevel gear 24 rotate, they can respectively drive the first rotating rod 15 and the second rotating rod 18 to rotate. When the first rotating rod 15 and the second rotating rod 18 rotate, they can drive the guide sleeve 16 to slide with the assistance of the slider 21 and the slide groove 20 in the sliding mechanism through the guide slide groove 17 opened above and the guide slider slidingly arranged in the inner cavity of the guide slide groove 17. When the guide sleeve 16 moves, it will be able to drive the movable rod 22 to move. When the movable rod 22 moves, it will be able to drive the sealing plate 23 to move, so that the feed port 4 and the discharge port 5 can be opened at the same time. At this time, the feed port 4 will be able to enter new wool sweater waste, and the discharge port can transport the wool sweater waste that entered last time, so that the crushed wool sweater waste can be collected through the collection bucket, etc.

Claims

1. A wool sweater processing waste treatment device, comprising a treatment box (1) and a crushing box (3), characterized in that: A crushing box (3) is fixed in the inner cavity of the processing box (1), and supporting legs (2) are fixedly installed around the bottom of the processing box (1), and the four supporting legs (2) are symmetrical with each other. The upper and lower side walls of the processing box (1) are respectively provided with slots, and the upper and lower side walls of the crushing box (3) are respectively provided with a feed port (4) and a discharge port (5). The feed port (4) and the discharge port (5) are respectively provided with rectangular slots, and the inner cavity of the rectangular slots is provided with a sealing mechanism. A motor (6) is provided on one side wall of the processing box (1), and the output end of the motor (6) is fixedly connected to a first rotating rod (7). The first rotating rod (7) movably passes through one side wall of the processing box (1) and the crushing box (3), and the other end rotates. The first rotating rod (7) is connected to the inner wall of the processing box (1), and a first crushing cylinder (8) is provided in the inner cavity of the crushing box (3). One end of the first rotating rod (7) is fixedly connected to the first gear (9), and a second gear (10) is meshed and installed on one side of the first gear (9). A second rotating rod (11) is fixedly passed through the second gear (10), and the second rotating rod (11) is movably passed through the crushing box (3). A second crushing cylinder (12) is fixedly installed on the second rotating rod (11). The two ends of the second rotating rod (11) are respectively rotatably connected to the inner wall of the processing box (1), and a transmission mechanism is provided on the second rotating rod (11). A sliding mechanism is provided on a side wall of the crushing box (3) close to the transmission mechanism.

2. A wool sweater processing waste treatment device according to claim 1, characterized in that: The transmission mechanism comprises a first bevel gear (13), the first bevel gear (13) being fixedly mounted on the second rotating rod (11), the upper and lower side walls of the first bevel gear (13) being respectively vertically meshed with the second bevel gear (14) and the third bevel gear (24), the opposite side walls of the second bevel gear (14) and the third bevel gear (24) being respectively fixedly connected to the first rotating rod (15) and the second rotating rod (18), the opposite ends of the first rotating rod (15) and the second rotating rod (18) being respectively rotatably connected to connecting plates (19), and the two connecting plates (19) being respectively fixedly connected to the inner wall of the processing box (1).

3. The wool sweater processing waste treatment device according to claim 2, characterized in that: The first rotating rod (15) and the second rotating rod (18) are respectively provided with a guide mechanism, and the guide mechanism includes two guide slots (17). The two guide slots (17) are respectively opened on the first rotating rod (15) and the second rotating rod (18). The two guide slots (17) are symmetrical to each other. The inner cavities of the two guide slots (17) are both slidably installed with guide sliders, and the outer sides of the guide sliders are fixedly connected with guide sleeves (16). The two guide sleeves (16) are respectively sleeved on the first rotating rod (15) and the second rotating rod (18).

4. The wool sweater processing waste treatment device according to claim 1, characterized in that: The sliding mechanism includes two slide grooves (20), the two slide grooves (20) are respectively opened on the side walls of the crushing box (3), the two slide grooves (20) are symmetrical to each other, and the inner cavities of the two slide grooves (20) are both slidably installed with sliders (21), the two sliders (21) are symmetrical to each other, and the other ends of the two sliders (21) are respectively fixedly connected to the two guide sleeves (16).

5. The wool sweater processing waste treatment device according to claim 1, characterized in that: The sealing mechanism comprises two sealing plates (23), and the two sealing plates (23) are respectively slidably arranged in the inner cavities of rectangular slots opened at the feed port (4) and the discharge port (5).

6. The wool sweater processing waste treatment device according to claim 5, characterized in that: The two sealing plates (23) are symmetrical to each other. A movable rod (22) is movably mounted on one side wall of the two sealing plates (23). The other ends of the two movable rods (22) are movably connected to the two guide sleeves (16).