Corner cloth collecting device of automatic cutting bed
By setting intermediate guide plates and baffles on the automatic cutting bed to guide scrap materials into the collection box, and using pressing and pushing components to achieve automatic collection, the problems of scrap material entanglement and falling off are solved, thus improving production efficiency and labor efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YUNNAN HAOXIANG CLOTHING CO LTD
- Filing Date
- 2025-07-25
- Publication Date
- 2026-07-21
AI Technical Summary
In existing automatic cutting machines, scraps easily get tangled on the brush rollers during the scrap conveying process, causing the conveyor belt to malfunction. Furthermore, scraps falling to the ground require manual cleaning, increasing the labor intensity of employees and reducing production efficiency.
An intermediate guide plate and baffle are set at the discharge end of the conveying mechanism to guide the scrap into the collection box. Combined with the pressing and pushing components, automatic collection is achieved, which avoids the scrap getting tangled on the brush roller and improves collection efficiency.
It effectively prevents scraps from getting tangled on the brush roller, reduces the need for manual cleaning, improves production efficiency, ensures the normal operation of the conveying mechanism, and enhances the scrap collection effect.
Smart Images

Figure CN224529725U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of garment production equipment, specifically to a scrap fabric collection device for an automatic cutting bed. Background Technology
[0002] An automatic fabric cutting machine is a type of dividing and cutting equipment used in garment fabric processing. It requires no molds; the machine quickly cuts fabric according to the received design drawings. It boasts a high degree of automation and simple operation, making it the most commonly used fabric cutting equipment in garment manufacturing. Most current automatic fabric cutting machines use a conveyor belt as a placement platform. A motor drives the conveyor belt to transport the fabric placed on it. Then, a transmission table drives the cutters to cut the fabric. After cutting, the operator removes the qualified fabric. The conveyor belt then restarts, and scraps of fabric remaining on the conveyor belt surface are transported from the discharge end. After this process, the conveyor belt returns to its original position, ready for the next cutting operation. The aforementioned automatic cutting bed has the following shortcomings during use: First, during the conveyor belt's transport of scrap materials, a small amount of debris remains on the conveyor belt. While a brush roller mechanism is typically installed under the discharge end of the conveyor belt to clean the debris, most of the scrap falling from the discharge end becomes entangled in the rotating brush roller assembly. This affects the normal operation of the conveyor belt, requiring manual cleaning of the scrap wrapped around the brush roller assembly, which increases the labor intensity of employees and reduces work efficiency. Second, the scrap output from the conveyor belt discharge end often falls randomly to the ground, requiring manual cleaning and collection, which is inconvenient for scrap collection. Therefore, it is objectively necessary to develop an automatic cutting bed scrap collection device with a reasonable structural design that can collect scrap without affecting the normal operation of the cutting bed. Summary of the Invention
[0003] The purpose of this utility model is to provide a scrap fabric collection device for an automatic cutting bed with a reasonable structural design that can collect scrap fabric without affecting the normal operation of the cutting bed.
[0004] The purpose of this utility model is achieved as follows: it includes a cutting bed body and a conveying mechanism installed on the cutting bed body. A brush roller mechanism is installed on the lower side of the material discharge end of the conveying mechanism. An intermediate guide plate is inclinedly arranged near the material discharge end of the conveying mechanism. Baffles are arranged on both sides of the intermediate guide plate. The two sides of the higher end of the intermediate guide plate are respectively connected to the cutting bed body by locking components. A collection box is connected to the lower end of the intermediate guide plate. A guide adjustment component is symmetrically arranged between the two baffles near the collection box. A pressing mechanism is arranged in the collection box above the material discharge end of the intermediate guide plate. A pushing component is arranged on one side of the bottom of the collection box. A pull door is arranged on the side wall of the collection box opposite to the pushing component. A handle is provided on the pull door.
[0005] Compared with existing technologies, the advantages of this device are as follows: First, this device is equipped with an intermediate guide plate and baffle at the discharge end of the conveying mechanism. The intermediate guide plate and baffle guide the scrap material from the discharge end of the conveying mechanism, preventing it from falling onto the brush roller mechanism and avoiding it from getting tangled on the brush roller mechanism. This reduces the labor intensity of employees and ensures the normal operation of the brush roller mechanism and the conveying mechanism. Second, the guide adjustment component can guide the scrap material entering the intermediate guide plate, ensuring that all of it enters the brush roller mechanism. The scraps are collected in the collection box, which can collect them centrally, avoiding the problem of scraps falling on the ground and needing to be picked up manually. This can effectively improve production efficiency. In addition, the set pressing component can compact the scraps entering the collection box, and the set pushing component can push the compacted scraps out of the collection box. The cooperation of the pressing mechanism and the pushing component can make full use of the collection space of the collection box, enhance the collection effect of scraps, improve production efficiency, and has the advantages of reasonable structure and convenient use, making it easy to promote and use. Attached Figure Description
[0006] Figure 1 This is a front view schematic diagram of the present invention;
[0007] Figure 2 This is a top view of the present invention;
[0008] Figure 3 This is a side view of the guide adjustment component in this utility model;
[0009] Figure 4 This is a side view of the locking component in this utility model;
[0010] Figure 5 This is a schematic diagram of the material pressing mechanism in this utility model;
[0011] In the diagram: 1-Cut bed body, 2-Conveying mechanism, 3-Brush roller mechanism, 4-Intermediate guide plate, 5-Baffle, 6-Collection box, 61-Pull door, 62-Pressure plate, 63-Drive motor, 64-Adjusting rod, 65-Drive shaft, 651-First thread, 652-Second thread, 66-Sliding sleeve, 67-Upper hinge plate, 68-Lower hinge plate, 69-Support plate, 610-Pushing cylinder, 611-Pushing plate, 612-Working box, 613-Transparent window, 7-Mounting block, 8-Pin, 9-Mounting groove, 10-Positioning block, 11-Limiting rod, 12-Fixed shaft, 13-Shaft sleeve, 14-Adjusting plate, 15-Electric push rod. Detailed Implementation
[0012] The present invention will be further described below with reference to the accompanying drawings, but this description is not intended to limit the present invention in any way. Any changes or improvements made based on the teachings of the present invention shall fall within the protection scope of the present invention.
[0013] like Figures 1-5 As shown, this utility model includes a cutting bed body 1 and a conveying mechanism 2 installed on the cutting bed body 1. The cutting bed body 1 is a structure used in the prior art. The automatic cutting bed is equipped with structural components such as a moving seat, a transverse rail, a transverse body, and a laser cutting head. The conveying mechanism 2 includes components such as a conveyor belt, a motor, and a power roller. A brush roller mechanism 3 is installed on the lower side of the discharge end of the conveying mechanism 2. The brush roller mechanism 3 is a structure used in the prior art, mainly including components such as a motor, a roller shaft, and a brush. An intermediate guide plate 4 is inclinedly arranged near the discharge end of the conveying mechanism 2. The intermediate guide plate 4 is provided with baffles 5 on both sides. The two sides of the higher end of the intermediate guide plate 4 are respectively connected to the cutting bed body 1 by locking components. The lower end of the intermediate guide plate 4 is connected to a collection box 6. A guide adjustment component is symmetrically arranged between the two baffles 5 near the collection box 6. A pressing mechanism is provided in the collection box 6 on the upper side of the discharge end of the intermediate guide plate 4. A pushing component is provided on one side of the bottom of the collection box 6. A pull door 61 is provided on the side wall of the collection box 6 opposite to the pushing component. A handle is provided on the pull door 61.
[0014] The working process of this device is as follows: When the conveying mechanism 2 conveys the cut scraps, an intermediate guide plate 4 is provided at the discharge end of the conveying mechanism 2. When the scraps slide down from the discharge end of the conveying mechanism 2, they will slide onto the intermediate guide plate 4. Because the intermediate guide plate 4 is inclined, the scraps entering the intermediate guide plate 4 will move towards the collection box 6. During the movement of the scraps, the baffle 5 can prevent the scraps from sliding down from both sides of the intermediate guide plate 4. When the scraps move to the vicinity of the guide adjustment component, the guide adjustment component changes the width of the intermediate guide plate 4. The width of the intermediate guide plate 4 changes from wide to narrow. As the collection box narrows, scrap materials can quickly enter the collection box 6. After entering the collection box 6, as the accumulation thickness gradually increases, the scrap materials can be compacted by the pressing mechanism, making full use of the internal space of the collection box 6 and increasing the collection capacity of the collection box 6. When the scrap materials collected in the collection box 6 reach the same height as the pushing component, the sliding door 61 can be opened, and the compacted scrap materials can be pushed out of the collection box 6 by the pushing component. After the scrap materials in the collection box 6 are cleaned up, the pushing component returns to its original position, the sliding door 61 is closed, and the collection work can be carried out again. Compared with traditional automatic cutting machines, this device has the following advantages: First, the intermediate guide plate 4 and baffle 5 can guide and transport the scrap material from the discharge end of the conveying mechanism 2, preventing the scrap material from falling onto the brush roller mechanism 3 and avoiding the scrap material from getting tangled on the brush roller mechanism 3. This helps reduce the labor intensity of employees and ensures the normal operation of the brush roller mechanism 3 and the conveying mechanism 2. Second, the combination of the pressing mechanism and the pushing component can make full use of the collection space of the collection box 6, enhance the collection effect of the collection box, realize the automatic collection of scrap material, and effectively improve production efficiency.
[0015] Furthermore, the locking assembly includes a mounting block 7 and a pin 8. The cutting bed body 1 is machined with a mounting groove 9. The mounting block 7 is installed in the mounting groove 9, and one end of the mounting block 7 is fixedly connected to the intermediate guide plate 4, while the other end extends to the outside of the mounting groove 9. A limiting hole is machined on the mounting block 7 extending to the outside of the mounting groove 9. A positioning block 10 is installed on the outside of the cutting bed body 1 above the limiting hole. A positioning hole is machined on the positioning block 10. The lower end of the pin 8 is inserted into the positioning hole and the limiting hole in sequence. A limiting rod 11 is installed on the upper end of the pin 8 and connected vertically thereto. In use, after the pin 8 is inserted into the mounting block 7 and the positioning block 10, the intermediate guide plate 4 is fixedly installed on the cutting bed body 1 under the limiting action of the limiting rod 11 and the pin 8, and cannot move, thus realizing the installation and fixation of the intermediate guide plate 4.
[0016] Furthermore, the guiding adjustment assembly includes a fixed shaft 12, a bushing 13, and an adjusting plate 14. The fixed shaft 12 is mounted on the inner side of the baffle 5 via a connecting rod. The bushing 13 is rotatably mounted on the fixed shaft 12. One end of the adjusting plate 14 is fixedly connected to the bushing 13, and an electric push rod 15 is installed between the other end of the adjusting plate 14 and the baffle 5. The electric push rod 15 is a structure used in the prior art, and finished products are directly purchased according to the power required. The bottom surface of the adjusting plate 14 slides in contact with the top surface of the intermediate guide plate 4. In use, the electric push rod 15 drives the adjusting plate 14 and the bushing 13 to rotate along the fixed shaft 12. During the rotation, the distance between the two adjusting plates 14 can be adjusted in a timely manner. By controlling the distance between the two adjusting plates 14, the distance between them can be made from wide to narrow, which facilitates the timely entry of scrap materials into the collection box 6.
[0017] Furthermore, the pressing mechanism includes a pressing plate 62, a drive motor 63, and adjusting rods 64. The drive motor 63 is a mechanism used in the prior art, and finished products are directly purchased according to the power required. A drive shaft 65 is rotatably mounted on the upper part of the collection box 6. A first thread 651 and a second thread 652 are symmetrically mounted on the drive shaft 65. The thread directions of the first thread 651 and the second thread 652 are opposite. A sliding sleeve 66 is threadedly connected to the first thread 651 and the second thread 652. An upper hinge plate 67 is installed at the lower end of the sliding sleeve 66. The pressing plate 62 is slidably mounted in the collection box 6 on the upper side of the intermediate guide plate 4. A lower hinge plate 68 is installed on the top surface of the pressing plate 62. There are two adjusting rods 64. The lower end of the adjusting rod 64 is hinged to the lower hinge plate 68, and the upper end of the adjusting rod 64 is respectively hinged to... Installed on the corresponding upper hinge plate 67, the drive motor 63 is installed on the outside of the collection box 6 and is connected to one end of the transmission shaft 65. When it is necessary to compact the scraps in the collection box 6, the drive motor 63 is a forward and reverse mounted motor. When the drive motor 63 is started, the drive motor 63 drives the transmission shaft 65 to rotate forward or reverse. Since the first thread and the second thread on the transmission shaft 65 are in opposite directions, the two sliding sleeves 66 move closer to each other or further away from each other under the rotational thrust of the first thread 651 and the second thread 652. Thus, the two adjusting rods 64 can drive the pressure plate 62 to move up or down. When the pressure plate 62 moves down, it can squeeze the scraps inside the collection box 6, so that the scraps can be compressed together. When the pressure plate 62 moves up, it will release the squeezing of the scraps, allowing the collection box 6 to continue collecting scraps.
[0018] To improve the stability of the rotation of the drive shaft 65 and prevent the sliding sleeve 66 from disengaging from the first thread 651 and the second thread 652, a support plate 69 is installed on the drive shaft 65 between the first thread 651 and the second thread 652. The support plate 69 is fixedly connected to the top of the collection box 6.
[0019] Furthermore, the pushing assembly includes a pushing cylinder 610 and a pushing plate 611. The pushing cylinder 610 is a mechanism used in the prior art, and finished products are directly purchased according to the usage stroke and pressure. A working box 612 communicating with the collection box 6 is installed on the collection box 6 on the opposite side of the sliding door 61. The pushing cylinder 610 is installed in the working box 612. The pushing plate 611 is installed on the movable end of the pushing cylinder 610 and slides in cooperation with the bottom of the collection box 6. When the compacted scrap is flush with the top of the pushing plate 611, the sliding door 61 is opened, and the pushing cylinder 610 is controlled to drive the pushing plate 611 to move. The force of the pushing cylinder 610 can push the compacted scrap out of the sliding door 61. After the scrap in the collection box 6 is discharged, the sliding door 61 is closed, and the pushing cylinder 610 drives the pushing plate 611 to move back to its original position.
[0020] To facilitate observation of the collection of scrap materials inside the collection box 6, a transparent window 613 is provided on the side wall of the collection box 6.
Claims
1. A scrap fabric collection device for an automatic cutting bed, comprising a cutting bed body (1) and a conveying mechanism (2) mounted on the cutting bed body (1), wherein a brush roller mechanism (3) is mounted on the lower side of the discharge end of the conveying mechanism (2), characterized in that: An intermediate guide plate (4) is inclinedly arranged at the discharge end near the conveying mechanism (2). Baffles (5) are arranged on both sides of the intermediate guide plate (4). The two sides of the higher end of the intermediate guide plate (4) are respectively connected to the cutting bed body (1) by locking components. A collection box (6) is connected to the lower end of the intermediate guide plate (4). A guide adjustment component is symmetrically arranged between the two baffles (5) near the side of the collection box (6). A pressing mechanism is arranged in the collection box (6) on the upper side of the discharge end of the intermediate guide plate (4). A pushing component is arranged on one side of the bottom of the collection box (6). A pull door (61) is arranged on the side wall of the collection box (6) opposite to the pushing component. A handle is provided on the pull door (61).
2. The scrap fabric collection device for an automatic cutting bed according to claim 1, characterized in that: The locking assembly includes a mounting block (7) and a pin (8). The cutting bed body (1) is machined with a mounting groove (9). The mounting block (7) is installed in the mounting groove (9), and one end of the mounting block (7) is fixedly connected to the intermediate guide plate (4), while the other end extends to the outside of the mounting groove (9). A limiting hole is machined on the mounting block (7) extending to the outside of the mounting groove (9). A positioning block (10) is installed on the outside of the cutting bed body (1) above the limiting hole. A positioning hole is machined on the positioning block (10). The lower end of the pin (8) is inserted into the positioning hole and the limiting hole in sequence. A limiting rod (11) is installed on the upper end of the pin (8) and connected vertically thereto.
3. The scrap fabric collection device for an automatic cutting bed according to claim 1, characterized in that: The guide adjustment assembly includes a fixed shaft (12), a bushing (13), and an adjustment plate (14). The fixed shaft (12) is installed on the inner side of the baffle (5) via a connecting rod. The bushing (13) is rotatably installed on the fixed shaft (12). One end of the adjustment plate (14) is fixedly connected to the bushing (13). An electric push rod (15) is installed between the other end of the adjustment plate (14) and the baffle (5). The bottom surface of the adjustment plate (14) is in sliding contact with the top surface of the intermediate guide plate (4).
4. The scrap fabric collection device for an automatic cutting bed according to claim 1, characterized in that: The pressing mechanism includes a pressing plate (62), a drive motor (63), and an adjusting rod (64). A drive shaft (65) is rotatably mounted on the upper part of the collection box (6). A first thread (651) and a second thread (652) are symmetrically mounted on the drive shaft (65). The thread directions of the first thread (651) and the second thread (652) are opposite. A sliding sleeve (66) is threadedly connected to the first thread (651) and the second thread (652). An upper hinge plate is mounted on the lower end of the sliding sleeve (66). (67) The pressure plate (62) is slidably installed in the collection box (6) on the upper side of the intermediate guide plate (4). A lower hinge plate (68) is installed on the top surface of the pressure plate (62). There are two adjusting rods (64). The lower end of the adjusting rod (64) is hinged to the lower hinge plate (68), and the upper end of the adjusting rod (64) is respectively hinged to the corresponding upper hinge plate (67). The drive motor (63) is installed on the outside of the collection box (6) and is connected to one end of the drive shaft (65).
5. The scrap fabric collection device for an automatic cutting bed according to claim 4, characterized in that: A support plate (69) is mounted on the drive shaft (65) between the first thread (651) and the second thread (652), and the support plate (69) is fixedly connected to the top inside the collection box (6).
6. The scrap fabric collection device for an automatic cutting bed according to claim 1, characterized in that: The pushing assembly includes a pushing cylinder (610) and a pushing plate (611). A working box (612) communicating with the collecting box (6) is installed on the collecting box (6) on the opposite side of the sliding door (61). The pushing cylinder (610) is installed inside the working box (612). The pushing plate (611) is installed on the movable end of the pushing cylinder (610) and slides in cooperation with the bottom of the collecting box (6).
7. The scrap fabric collection device for an automatic cutting bed according to claim 1, characterized in that: A transparent window (613) is provided on the side wall of the collection box (6).