Cloth cutting equipment for processing outdoor jacket

By introducing a pressing component and a feeding component into the fabric cutting device, the problems of fabric curling and wrinkling caused by tensile force during the cutting process are solved, improving the stability and convenience of cutting.

CN224119333UActive Publication Date: 2026-04-14NANJIANG HERCULE CLOTHING TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NANJIANG HERCULE CLOTHING TECHNOLOGY CO LTD
Filing Date
2025-04-30
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

When cutting down jacket fabric, existing fabric cutting machines exert a pulling force on the fabric due to the rotating cutter on the machine head, causing the fabric edges to lift, curl, or wrinkle, which affects the cutting quality.

Method used

A fabric cutting device for processing rain jackets, including a pressing component, was designed. The device uses a combination of a transmission rail, a perforated rod, a pressure rod, and a pin to press and fix the edge of the fabric. Rubber pads and magnetic rings are used to improve friction and stability, and a feeding component assists in moving the fabric forward.

Benefits of technology

It effectively reduces curling and wrinkling at the edges of the fabric, improves the stability and quality of cutting, and increases the ease of cutting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an outdoor jacket processing cloth cutting device, which relates to the technical field of cloth cutting equipment, and comprises a working table arranged on the ground and used for laying and processing cloth; the track is clamped into the triangular frame to press the cloth; the machine head is arranged on the track and slides left and right, and the machine head drives a circular knife to rotate at a high speed through a motor to cut cloth; the cloth frame is fixedly connected to the workbench and is used for supporting and placing the cloth; according to the cloth cutting machine, the pressing assembly is arranged, the edge position of the cloth can be pressed and reinforced, the situation that the edge position of the cloth is brought up when the machine head cuts the cloth, and consequently the cloth is curled or wrinkled is reduced, and the cloth cutting efficiency is improved. The cloth cutting device solves the problem that the cloth cutting quality is affected due to skew of cloth cutting, and improves the stability of the cloth in the cutting process.
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Description

Technical Field

[0001] This utility model relates to the field of fabric cutting equipment technology, and in particular to a fabric cutting device for processing rain jackets. Background Technology

[0002] A fabric cutting machine (also known as a cloth cutting machine or cloth slicing machine) is a specialized piece of equipment used in the textile, apparel, bag and leather industries for efficient cutting of fabrics. Its core function is to cut a whole roll or bolt of fabric into the required size or shape using mechanical or CNC methods.

[0003] Existing fabric cutting machines process rain jackets by rolling up the fabric needed for production onto a fabric rack, then laying the portion of the fabric to be cut on a worktable, placing a track in a tripod and pressing it onto the fabric, then manually moving the machine head left and right on the track, while the motor inside the machine head drives the circular blade to rotate at high speed and cut the fabric, thus achieving rapid cutting of the fabric.

[0004] However, the circular blade on the machine head exerts a certain pulling force on the fabric when it rotates and cuts it, which may lift the edges of the fabric, causing it to curl or wrinkle, resulting in skewed cutting and affecting the cutting quality. Utility Model Content

[0005] The technical problem this invention aims to solve is that the circular blade on the machine head exerts a certain pulling force on the fabric during the rotating cutting process, which may lift the edges of the fabric, causing it to curl or wrinkle, resulting in skewed cutting and affecting the cutting quality.

[0006] The technical solution adopted by this utility model to solve its technical problem is: a fabric cutting device for processing rain jackets, comprising: a workbench, which is placed on the ground for laying and processing fabric; a track, which clamps the fabric by being inserted into a tripod; a cutting head, which slides left and right on the track, wherein the cutting head is driven by a motor to rotate a circular blade at high speed to cut the fabric; a fabric frame, which is fixed to the workbench to support and place the fabric; and a pressing component, wherein the pressing component is placed on the workbench to press the edges of the fabric to prevent the fabric from curling or wrinkling.

[0007] Preferably, the clamping assembly includes: a transmission rail fixed to the worktable, wherein a screw is rotatably mounted inside the transmission rail via a bearing, and the screw is driven by a motor; a perforated rod placed inside the transmission rail and driven by the screw, wherein a slide rail is provided on the perforated rod; and a pressure rod, wherein a metal pin is slidably connected to the inner wall of the pressure rod, wherein the pressure rod is slidably mounted in the slide rail, and the pin is fixed to the pressure rod by inserting into the holes of the perforated rod and the pressure rod.

[0008] The effect achieved by the above components is as follows: By setting up the clamping assembly, the fabric is first laid on the worktable, so that the fabric is placed between the pressure bar and the worktable. At this time, the pressure bar is manually moved left and right along the inside of the slide. When the pressure bar moves to the position corresponding to the edge of the fabric, the hole on the pressure bar aligns with the hole on the perforated rod. At this time, the pin is manually inserted into the hole of the perforated rod and the pressure bar to fix the pressure bar, thereby adjusting the position of the pressure bar. Then, the screw inside the transmission rail is driven by the motor to rotate, so that the screw drives the perforated rod to move up and down, so that the perforated rod drives the pressure bar to move up and down, so that the pressure bar moves to the position of adhering to and squeezing the fabric, thus pressing it tightly. This achieves the clamping and reinforcement of the edge of the fabric, reducing the situation where the edge of the fabric is lifted when the machine head cuts the fabric, causing the fabric to curl or wrinkle, resulting in skewed cutting and affecting the cutting quality, thus improving the stability of the fabric when it is being cut.

[0009] Preferably, the clamping assembly further includes a rubber pad, wherein the rubber pad is fixed to the side of the pressure rod near the worktable, and wherein the surface of the rubber pad is provided with a plurality of raised L-shaped stripes.

[0010] The effect achieved by the above components is that by setting rubber pads, the fit between the pressure bar and the fabric surface can be increased, and the friction between the pressure bar and the fabric can be increased, reducing the possibility of slippage between the fabric and the pressure bar.

[0011] Preferably, the clamping assembly further includes a positioning rod, wherein the positioning rod is fixed to the worktable and is positioned inside the porous rod to limit its movement.

[0012] The effect achieved by the above components is that by setting a positioning rod, the positioning rod can be located inside the perforated rod to limit the perforated rod, thereby reducing the shaking of the perforated rod on the side away from the transmission rail.

[0013] Preferably, the clamping assembly further includes a handle, which is fixed to the pin, wherein the inner side of the handle is provided with a plurality of anti-slip protrusions.

[0014] The effect achieved by the above-mentioned components is that by setting a handle, a leverage point can be provided for personnel to manually move the latch, thereby improving the convenience of manually pulling out the latch.

[0015] Preferably, the clamping assembly further includes a magnetic ring, wherein the magnetic ring is fixed to the pin by magnetic attraction.

[0016] The effect achieved by the above components is that the magnetic ring can be used to attract and fix the pin inserted into the multi-hole rod, reducing the possibility of the pin shaking during use.

[0017] Preferably, it further includes: a feeding assembly, the feeding assembly comprising: an L-shaped rod fixedly connected to the middle of a multi-hole rod; a concave frame, wherein the concave frame is slidably mounted on the L-shaped rod via a spring rod, wherein the other end of the spring in the spring rod is fixedly connected to the L-shaped rod; and a rubber wheel, wherein the rubber wheel is rotatably mounted on the concave frame via a round shaft, wherein the round shaft is driven by a motor.

[0018] The effect achieved by the above components is as follows: By setting up a feeding assembly, when the perforated rod moves, it drives the L-shaped rod to move, which in turn drives the spring rod and the concave frame to move. This causes the concave frame to drive the rubber wheel to move. When the perforated rod moves to the position where it is in contact with the fabric surface, the rubber wheel is pushed to the position where it is in contact with the fabric surface under the reaction force of the spring. At this time, the motor drives the round shaft to rotate, which in turn drives the rubber wheel to rotate. As the rubber wheel rotates, it pushes the fabric forward, thereby achieving auxiliary feeding of the fabric. This allows the fabric to move forward by itself during the cutting process, eliminating the need for manual pushing and improving the convenience of cutting fabric.

[0019] Preferably, the surface of the rubber wheel is provided with multiple rubber protrusions.

[0020] The effect achieved by the above components is that by setting multiple rubber protrusions on the rubber wheel, the friction between the rubber wheel and the fabric surface can be increased, reducing the slippage between the rubber wheel and the fabric when pushing the fabric.

[0021] The beneficial effects of this utility model are:

[0022] By setting up a clamping component, the edges of the fabric can be clamped and reinforced, reducing the chance of the fabric edge being lifted by the cutting head during cutting, which could cause the fabric to curl or wrinkle, resulting in skewed cutting and affecting the cutting quality. This improves the stability of the fabric during cutting. Attached Figure Description

[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0024] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0025] Figure 2 This is a three-dimensional structural diagram of the pressure bar of this utility model;

[0026] Figure 3 This is a three-dimensional structural diagram of the multi-hole rod of this utility model;

[0027] Figure 4 This is a three-dimensional structural diagram of the rubber wheel of this utility model.

[0028] Legend: 1. Workbench; 2. Track; 3. Machine head; 4. Fabric rack; 5. Fabric; 6. Pressing assembly; 61. Drive rail; 62. Perforated rod; 63. Slide rail; 64. Magnetic ring; 65. Positioning rod; 66. Pressure rod; 67. Pin; 68. Handle; 69. Rubber pad; 7. Feed assembly; 71. L-shaped rod; 72. Spring rod; 73. Concave frame; 74. Rubber wheel. Detailed Implementation

[0029] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the present invention, and therefore only show the components relevant to the present invention.

[0030] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0031] Figure 1-4 The illustrated equipment for processing and cutting fabric in a rain jacket includes: a workbench 1, placed on the ground for laying and processing fabric 5; a track 2, which clamps the fabric 5 by inserting into a tripod; a cutting head 3, which slides left and right on the track 2, wherein the cutting head 3 is driven by a motor to rotate a circular blade at high speed to cut the fabric 5; a fabric frame 4, which is fixed to the workbench 1 to support and place the fabric 5; and a clamping assembly 6, which is placed on the workbench 1 to clamp the edges of the fabric 5 to prevent the fabric 5 from curling or wrinkling.

[0032] Figure 2 and Figure 3The clamping assembly 6 shown includes: a drive rail 61, which is fixed to the worktable 1. A screw is rotatably mounted inside the drive rail 61 via a bearing, and the screw is driven by a motor; a perforated rod 62, which is placed inside the drive rail 61 and driven by the screw, and has a slide rail 63; and a pressure rod 66, the inner wall of which is slidably connected to a metal pin 67. The pressure rod 66 is slidably mounted in the slide rail 63, and the pin 67 is fixed to the pressure rod 66 by inserting into the holes of the perforated rod 62 and the pressure rod 66. By setting up the clamping assembly 6, the fabric 5 is first laid on the worktable 1, so that the fabric 5 is placed between the pressure rod 66 and the worktable 1. At this time, the pressure rod 66 is manually moved left and right along the inside of the slide rail 63. When the pressure rod 66 moves to... When the position corresponds to the edge of the fabric 5, the hole on the pressure rod 66 aligns with the hole on the perforated rod 62. At this point, the pin 67 is manually inserted into the holes of the perforated rod 62 and the pressure rod 66 to fix the pressure rod 66, thus adjusting its position. Then, the screw inside the transmission rail 61 is rotated by the motor, causing the screw to move the perforated rod 62 up and down, which in turn moves the pressure rod 66 up and down, moving the pressure rod 66 to the position where it presses and squeezes the fabric 5, thereby tightening and reinforcing the edge of the fabric 5. This reduces the risk of the machine head 3 lifting the edge of the fabric 5 during cutting, which could cause the fabric 5 to curl or wrinkle, resulting in skewed cutting and affecting the cutting quality. This improves the stability of the fabric 5 during cutting.

[0033] Figure 2 and Figure 3 The clamping assembly 6 shown also includes a rubber pad 69, which is fixed to the side of the pressure rod 66 near the worktable 1. The surface of the rubber pad 69 is provided with multiple raised L-shaped stripes. By setting the rubber pad 69, the adhesion between the pressure rod 66 and the surface of the fabric 5 can be increased, and the friction between the pressure rod 66 and the fabric 5 can be increased, reducing the possibility of slippage between the fabric 5 and the pressure rod 66. The clamping assembly 6 also includes a positioning rod 65, which is fixed to the worktable 1. The positioning rod 65 is placed inside the perforated rod 62 and limits its position. By setting the positioning rod 65, the positioning rod 65 can be located inside the perforated rod 62 and limit the perforated rod 62, reducing the possibility of the perforated rod 62 shaking on the side away from the transmission rail 61.

[0034] Figure 2 and Figure 3The clamping assembly 6 shown also includes a handle 68, which is fixed to the pin 67. The inner side of the handle 68 is provided with multiple anti-slip protrusions. By setting the handle 68, a force point can be provided for personnel to manually move the pin 67, improving the convenience of manually pulling out the pin 67. The clamping assembly 6 also includes a magnetic ring 64, which uses magnetic force to attract and fix the pin 67. By setting the magnetic ring 64, the pin 67 inserted into the multi-hole rod 62 can be attracted and fixed, reducing the shaking of the pin 67 during use.

[0035] Figure 4 The feed assembly also includes: an L-shaped rod 71, which is fixedly connected to the middle of the perforated rod 62; a concave frame 73, which is slidably mounted on the L-shaped rod 71 via a spring rod 72, wherein the other end of the spring in the spring rod 72 is fixedly connected to the L-shaped rod 71; and a rubber wheel 74, which is rotatably mounted on the concave frame 73 via a round shaft driven by a motor. By setting the feed assembly 7, when the perforated rod 62 moves, it drives the L-shaped rod 71 to move, so that the L-shaped rod 71 drives the spring rod 72 and the concave frame 73. The movement of the concave frame 73 causes the rubber wheel 74 to move. When the perforated rod 62 moves to the position where it is in contact with the surface of the fabric 5, the rubber wheel 74 is pushed to the position where it is in contact with the surface of the fabric 5 under the reaction force of the spring. At this time, the motor drives the round shaft to rotate, which in turn drives the rubber wheel 74 to rotate. As the rubber wheel 74 rotates, it pushes the fabric 5 forward, thereby achieving auxiliary feeding of the fabric 5. This allows the fabric 5 to move forward on its own during the cutting process, without the need for manual pushing, thus improving the convenience of cutting the fabric 5.

[0036] Figure 4 The surface of the rubber wheel 74 shown is provided with multiple rubber protrusions. By providing multiple rubber protrusions on the rubber wheel 74, the friction between the rubber wheel 74 and the surface of the fabric 5 can be increased, reducing the slippage between the rubber wheel 74 and the fabric 5 when pushing the fabric 5.

[0037] Working principle: First, the fabric 5 needed for producing the jacket is rolled up on the fabric frame 4 and laid on the workbench 1, so that the fabric 5 is positioned between the pressure rod 66 and the workbench 1. At this time, the pressure rod 66 is manually moved left and right along the inside of the slide rail 63. When the pressure rod 66 moves to the position corresponding to the edge of the fabric 5, the hole on the pressure rod 66 aligns with the hole on the perforated rod 62. Then, the pin 67 is manually inserted into the hole of the perforated rod 62 and the pressure rod 66 to fix the pressure rod 66, thereby adjusting the position of the pressure rod 66. At this time, the motor drives... The screw inside the drive rail 61 rotates, causing the screw to drive the perforated rod 62 to move up and down. The perforated rod 62 then drives the pressure rod 66 to move up and down, causing the pressure rod 66 to move to the position where it adheres to and squeezes the fabric 5, thus pressing it tightly. This achieves the pressing and reinforcement of the edge of the fabric 5. Then, the track 2 is placed in the tripod and fixed, and placed on the fabric 5 to press the cutting position tightly. Then, the machine head 3 is manually moved left and right on the track 2. At the same time, the motor inside the machine head 3 drives the circular blade to rotate at high speed and cut the fabric 5, thus achieving rapid cutting of the fabric 5.

[0038] When the perforated rod 62 moves, it drives the L-shaped rod 71 to move, which in turn drives the spring rod 72 and the concave frame 73 to move. The concave frame 73 then drives the rubber wheel 74 to move. When the perforated rod 62 moves to the position where it is in contact with the surface of the fabric 5, the rubber wheel 74 is pushed to the position where it is in contact with the surface of the fabric 5 under the reaction force of the spring. At this time, the motor drives the round shaft to rotate, which in turn drives the rubber wheel 74 to rotate. As the rubber wheel 74 rotates, it pushes the fabric 5 forward, thereby achieving auxiliary feeding of the fabric 5.

[0039] Based on the above-described preferred embodiments of this utility model, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the technical concept of this utility model. The technical scope of this utility model is not limited to the contents of the specification, but must be determined according to the scope of the claims.

Claims

1. A device for processing broken threads of a parka, characterized by: include: Workbench (1), which is placed on the ground and is used for laying and processing fabric (5); Track (2), which presses the fabric (5) by being inserted into the tripod; The machine head (3) is placed on the track (2) and slides left and right. The machine head (3) is driven by a motor to rotate the circular knife at high speed to cut the fabric (5). Fabric rack (4), which is fixed to the workbench (1) to support and place the fabric (5); A pressing component (6) is placed on a workbench (1) to press the edge of the fabric (5) to prevent the fabric (5) from curling or wrinkling.

2. The apparatus according to claim 1, wherein: The clamping assembly (6) includes: a transmission rail (61), which is fixedly connected to the worktable (1), wherein a screw is rotatably mounted inside the transmission rail (61) via a bearing, and the screw is driven by a motor; A perforated rod (62) is placed inside the transmission rail (61) and driven by a screw. A slide rail (63) is provided on the perforated rod (62). The inner wall of the pressure rod (66) is slidably connected with a metal pin (67), wherein the pressure rod (66) is slidably installed in the slide rail (63), and the pin (67) is fixed by inserting into the hole of the multi-hole rod (62) and the hole of the pressure rod (66).

3. The apparatus according to claim 2, wherein: The clamping assembly (6) further includes a rubber pad (69), wherein the rubber pad (69) is fixed to the side of the pressure rod (66) near the worktable (1), and the surface of the rubber pad (69) is provided with a plurality of raised L-shaped stripes.

4. The apparatus according to claim 2, wherein: The clamping assembly (6) further includes a positioning rod (65), wherein the positioning rod (65) is fixed to the worktable (1), and wherein the positioning rod (65) is placed inside the perforated rod (62) to limit its movement.

5. The apparatus according to claim 2, wherein: The clamping assembly (6) further includes a handle (68), which is fixed to the pin (67), wherein the inner side of the handle (68) is provided with a plurality of anti-slip protrusions.

6. The fabric cutting equipment for processing down jackets according to claim 2, characterized in that: The clamping assembly (6) further includes a magnetic ring (64), wherein the magnetic ring (64) is fixed to it by magnetic attraction pin (67).

7. The fabric cutting equipment for processing down jackets according to claim 2, characterized in that: it also... include: The feeding assembly (7) includes an L-shaped rod (71) which is fixed to the middle of the porous rod (62); A concave frame (73) is slidably mounted on an L-shaped rod (71) via a spring rod (72), wherein the other end of the spring in the spring rod (72) is fixedly connected to the L-shaped rod (71); A rubber wheel (74) is rotatably mounted on a concave frame (73) via a round shaft driven by a motor.

8. The fabric cutting equipment for processing down jackets according to claim 7, characterized in that: The surface of the rubber wheel (74) is provided with multiple rubber protrusions.