A multi-station intelligent garment cutting and feeding device

By designing a concave support frame to fix the motor and rotating roller on the multi-station intelligent garment cutting machine, brushes remove waste from the conveyor belt, and a waste collection box collects and prevents splashing, the problem of fabric debris affecting cutting quality during feeding is solved, achieving automated cleaning and efficient production.

CN224313938UActive Publication Date: 2026-06-02CHANGCHUN CHUSE CLOTHING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHANGCHUN CHUSE CLOTHING CO LTD
Filing Date
2025-04-29
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing multi-station intelligent garment cutting machines are prone to generating fabric debris in the transmission area during the feeding process, requiring real-time cleaning by personnel and affecting cutting quality.

Method used

Design a multi-station intelligent garment cutting and feeding device. A concave support frame is used to fix the motor and rotating roller. The brush bristles contact the rolling conveyor belt of the cutting machine. The motor drives the rotating roller to drive the brush bristles to remove waste. The waste is collected by a waste collection box, a baffle to block splashing, and a hook to position the waste collection box.

Benefits of technology

It enables automated cleaning of waste from the conveyor belt surface, avoiding impact on cutting quality and preventing waste from splashing, thereby improving production efficiency and cutting quality.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224313938U_ABST
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Abstract

This utility model relates to the field of garment cutting and feeding technology, specifically a multi-station intelligent garment cutting and feeding device, including a rolling table of a cutting machine, brushes, and hooks. A concave support frame is bolted to one side of the rolling table, and a motor is bolted to one side of the concave support frame. A rotating roller is connected to the inner side of the concave support frame via a rotating shaft. A chip collection box is provided at the bottom of the brush, and a baffle is bolted to the top of the chip collection box corresponding to the side of the brush. The motor and rotating roller are fixed to one side of the rolling table of the cutting machine by the concave support frame, so that the brushes contact the conveyor belt of the rolling table. During operation, the motor drives the rotating roller to rotate the brushes to clean the surface of the conveyor belt, removing waste and avoiding problems that affect the cutting quality.
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Description

Technical Field

[0001] This utility model relates to the field of garment cutting and feeding technology, specifically to a multi-station intelligent garment cutting and feeding device. Background Technology

[0002] Multi-station intelligent garment cutting is a technology that uses artificial intelligence, computer vision, and automation to optimize the cutting process. It is widely used in multiple industries such as textiles, clothing, and home furnishings. By improving production efficiency, reducing material waste, and enabling personalized customization, it promotes the intelligent transformation of the manufacturing industry. Currently, multi-station intelligent garment cutting machines all use a rolling table for material feeding.

[0003] Existing technologies often generate a large amount of fabric debris in the transmission area, requiring real-time cleaning to avoid affecting cutting quality. Therefore, a multi-station intelligent garment cutting and feeding device is proposed to facilitate real-time cleaning of the conveying structure and prevent issues such as affecting cutting quality. Utility Model Content

[0004] To address the problems in the existing technology, this utility model provides a multi-station intelligent garment cutting and feeding device to facilitate real-time cleaning of the conveying structure and avoid problems that affect cutting quality.

[0005] The technical solution adopted by this utility model to solve its technical problem is a multi-station intelligent garment cutting and feeding device, including a rolling table of the cutting machine, a brush and a hook. A concave support frame is installed on one side of the rolling table of the cutting machine by bolts, and a motor is installed on one side of the concave support frame by bolts.

[0006] The inner side of the concave support frame is connected to a rotating roller via a rotating shaft. The bottom of the brush bristles is provided with a dust collection box, and a baffle is installed on the top of the dust collection box on the side corresponding to the brush bristles via bolts.

[0007] By adopting the above technical solution, the motor and rotating roller are fixed on one side of the rolling table of the cutting machine using a concave support frame, so that the brush bristles come into contact with the conveyor belt of the rolling table of the cutting machine. During operation, the motor drives the rotating roller to rotate the brush bristles to clean the surface of the conveyor belt in contact, remove the waste on the surface, and avoid problems such as affecting the cutting quality.

[0008] Meanwhile, the chip collection box collects waste chips in real time, and the baffle shields the chip chips from splashing onto the bristles. The chip collection box is supported by hooks and hung on the concave support frame. The positioning is achieved by rotating the positioning bolts to press the surface of the concave support frame, making it easy to assemble and disassemble.

[0009] Specifically, the rotating roller is provided with bristles on its periphery, and the bristles are in contact with the conveyor belt of the rolling table of the cutting machine.

[0010] By adopting the above technical solution, the motor and rotating roller are fixed on one side of the rolling table of the cutting machine using a concave support frame, so that the brush bristles come into contact with the conveyor belt of the rolling table of the cutting machine.

[0011] Specifically, the motor drive shaft is connected to the rotating shaft of the rotating roller.

[0012] By adopting the above technical solution, a motor drives a rotating roller to rotate the brush and clean the surface of the conveyor belt, removing the waste from its surface.

[0013] Specifically, a hook is bolted to one side of the chip collection box away from the baffle, and the chip collection box is hooked to the concave support frame by the hook.

[0014] By adopting the above technical solution, waste debris is collected in real time using a debris collection box, and the debris is blocked on one side of the brush bristles by a baffle to avoid the problem of debris splashing.

[0015] Specifically, a positioning bolt is inserted through a pre-reserved threaded hole on one side surface of the hook corresponding to the concave support frame position, and one end of the positioning bolt is in contact with the concave support frame.

[0016] By adopting the above technical solution, the chip collection box is hooked to the concave support frame using a hook, and the concave support frame is positioned by pressing the surface of the concave support frame with a rotating positioning bolt.

[0017] The beneficial effects of this utility model are:

[0018] (1) The multi-station intelligent garment cutting and feeding device of this utility model is supported by a concave support frame to fix the motor and the rotating roller on one side of the rolling table of the cutting machine, so that the brush bristles come into contact with the conveyor belt of the rolling table of the cutting machine. During operation, the motor drives the rotating roller to rotate the brush bristles to clean the surface of the conveyor belt in contact, remove the waste on the surface, and avoid problems such as affecting the cutting quality.

[0019] (2) The multi-station intelligent garment cutting and feeding device of this utility model collects waste in real time through a waste collection box and blocks the waste on the side of the brush with a baffle to avoid the problem of waste splashing. The waste collection box is supported by a hook and hooked to a concave support frame. The concave support frame is positioned by rotating the positioning bolt and pressing the surface of the concave support frame. It is easy to assemble and disassemble. Attached Figure Description

[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0021] Figure 1 This is a schematic diagram of the overall design of this utility model;

[0022] Figure 2 This is a schematic diagram of the concave support frame of this utility model;

[0023] Figure 3 This is a schematic diagram of the hook of this utility model;

[0024] In the diagram: 1. Rolling table of the cutting machine; 2. Concave support frame; 3. Motor; 4. Rotating roller; 5. Brush; 6. Chip collection box; 7. Hook; 8. Positioning bolt; 9. Baffle. Detailed Implementation

[0025] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0026] To address issues affecting cutting quality, such as Figure 1-3 As shown, the multi-station intelligent garment cutting and feeding device of this utility model includes a rolling table 1 for the cutting machine, a brush 5 and a hook 7. A concave support frame 2 is bolted to one side of the rolling table 1 for the cutting machine, and a motor 3 is bolted to one side of the concave support frame 2.

[0027] The inner side of the concave support frame 2 is connected to a rotating roller 4 via a rotating shaft. The bottom of the brush bristles 5 is provided with a chip collection box 6. The top of the chip collection box 6 is fitted with a baffle 9 via bolts on the side corresponding to the brush bristles 5.

[0028] When in use, the motor 3 and the rotating roller 4 are fixed on one side of the rolling table 1 of the cutting machine by the concave support frame 2, so that the brush 5 contacts the conveyor belt of the rolling table 1 of the cutting machine. During operation, the motor 3 drives the rotating roller 4 to rotate the brush 5 to clean the surface of the conveyor belt in contact, remove the waste on the surface, and avoid problems such as affecting the cutting quality.

[0029] Meanwhile, the chip collection box 6 collects waste chips in real time and the baffle 9 blocks the chip chips from splashing onto one side of the brush bristles 5. The chip collection box 6 is supported by the hook 7 and hooked onto the concave support frame 2. The concave support frame 2 is positioned by pressing the surface of the rotating positioning bolt 8, making it easy to assemble and disassemble.

[0030] To address issues affecting cutting quality, for example, such as Figure 1 , Figure 2 As shown, the present invention also includes brush bristles 5 arranged around the rotating roller 4, and the brush bristles 5 contact the conveyor belt of the rolling table 1 of the cutting machine.

[0031] During use, the motor 3 and the rotating roller 4 are fixed to one side of the rolling table 1 of the cutting machine by the concave support frame 2, so that the bristles 5 come into contact with the conveyor belt of the rolling table 1 of the cutting machine.

[0032] For example, such as Figure 1 , Figure 2As shown, the present invention also includes a motor 3 drive shaft connected to a rotating roller 4 rotation shaft.

[0033] During use, the motor 3 drives the rotating roller 4 to rotate the brush 5 to clean the surface of the conveyor belt and remove the waste from its surface.

[0034] For example, such as Figure 1 , Figure 2 , Figure 3 As shown, the present invention also includes a hook 7 installed on one side of the chip collection box 6 away from the baffle 9 by bolts, and the chip collection box 6 is hooked to the concave support frame 2 by the hook 7.

[0035] During use, the waste is collected in real time by the waste collection box 6 and blocked on one side of the brush bristles 5 by the baffle 9 to avoid the problem of waste flying.

[0036] For example, such as Figure 1 , Figure 2 , Figure 3 As shown, the present invention also includes a positioning bolt 8 passing through a pre-reserved threaded hole on one side surface of the hook 7 corresponding to the position of the concave support frame 2, and one end of the positioning bolt 8 is in contact with the concave support frame 2.

[0037] In use, the chip collection box 6 is hooked onto the concave support frame 2 by the hook 7, and the concave support frame 2 is positioned by pressing the surface of the concave support frame 2 with the rotating positioning bolt 8.

[0038] In use, the present invention uses a concave support frame 2 to fix the motor 3 and the rotating roller 4 to one side of the rolling table 1 of the cutting machine, so that the brush 5 contacts the conveyor belt of the rolling table 1 of the cutting machine. During operation, the motor 3 drives the rotating roller 4 to rotate the brush 5 to clean the surface of the conveyor belt in contact, remove the waste on the surface, and avoid problems such as affecting the cutting quality.

[0039] Meanwhile, the chip collection box 6 collects waste chips in real time and the baffle 9 blocks the chip chips from splashing onto one side of the brush bristles 5. The chip collection box 6 is supported by the hook 7 and hooked onto the concave support frame 2. The concave support frame 2 is positioned by pressing the surface of the rotating positioning bolt 8, making it easy to assemble and disassemble.

[0040] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A multi-station intelligent garment cutting and feeding device, characterized in that, Includes a rolling table (1) for a cutting machine, a brush (5) and a hook (7). A concave support frame (2) is bolted to one side of the rolling table (1), and a motor (3) is bolted to one side of the concave support frame (2). The concave support frame (2) is connected to a rotating roller (4) via a rotating shaft. The bottom of the brush bristles (5) is provided with a chip collection box (6). A baffle (9) is installed on the top of the chip collection box (6) on the side corresponding to the brush bristles (5) via bolts.

2. The multi-station intelligent garment cutting and feeding device according to claim 1, characterized in that, The rotating roller (4) is surrounded by bristles (5), which are in contact with the conveyor belt of the rolling table (1) of the cutting machine.

3. The multi-station intelligent garment cutting and feeding device according to claim 1, characterized in that, The drive shaft of the motor (3) is connected to the rotating shaft of the rotating roller (4).

4. The multi-station intelligent garment cutting and feeding device according to claim 1, characterized in that, A hook (7) is bolted to one side of the chip collection box (6) away from the baffle (9), and the chip collection box (6) is hooked to the concave support frame (2) by the hook (7).

5. The multi-station intelligent garment cutting and feeding device according to claim 1, wherein, A positioning bolt (8) is inserted through a pre-reserved threaded hole on one side surface of the hook (7) at the position of the concave support frame (2), and one end of the positioning bolt (8) is in contact with the concave support frame (2).