A cutting anti-wrinkle textile new material cutting device

CN224769107UActive Publication Date: 2026-09-18JIANGSU SUCHUANG TEXTILE NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202522334293.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-04
Publication Date
2026-09-18
Estimated Expiration
2035-11-04

AI Technical Summary

Technical Problem

[0006]本实用新型的目的在于提供一种切割防褶皱的纺织新材料断切装置,以解决上述背景技术提出的目前市场上通过平整组件和下压组件将布料压紧,以确保面料在切割过程中的稳定性,但设置的切割位置固定,无法根据不同面料的要求进行灵活调整,导致设备的灵活性和通用性受到限制,并且下压组件在工作过程中可能产生夹持力不稳定的情况,无法始终保持均匀的压力,进而可能导致面料的松动或褶皱,从而影响切割精度和生产效率的问题

Benefits of technology

[0015]与现有技术相比,本实用新型的有益效果是:该切割防褶皱的纺织新材料断切装置,横向移动结构与竖向移动结构提高了装置的设计灵活性与适配性,夹持组件用于在切割前夹紧面料边缘,避免面料滑动,有效保证了切割前面料位置的稳定性,通过电磁进行夹持,夹持力度可控且稳定,既能确保面料在切割过程中不松动,又能避免因夹持力过大损伤面料,保护面料完整性,其具体内容如下:

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Abstract

The utility model discloses a cutting anti -wrinkle's textile new material broken cutting device, including setting's cutting seat, install guide rail on the cutting seat, the movable joint of guide rail has limit seat, be provided with clamping subassembly on the limit seat, clamping subassembly includes the fixed clamping seat and the adjusting clamping seat of installation on the limit seat, the inside through -connection of adjusting clamping seat has guide rod, the auxiliary magnetic block is installed below adjusting clamping seat, the electromagnetic block is installed in guide rod bottom end. The cutting anti -wrinkle's textile new material broken cutting device, transverse movement structure and vertical movement structure have improved the design flexibility and adaptability of device, and clamping subassembly is used for clamping the edge of fabric before cutting, avoids fabric sliding, effectively guarantees the stability of fabric position before cutting, clamps through the electromagnet, and the clamping strength is controllable and stable, can ensure that fabric does not slacken in the cutting process, can also avoid the damage of fabric because of the clamping force too big, protects fabric integrity.
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Description

Technical Field

[0001] This utility model relates to the technical field of textile new material processing, specifically a cutting device for cutting wrinkle-resistant textile new materials. Background Technology

[0002] New textile materials refer to textiles with special properties or functions produced through the research and development of innovative technologies and new materials. In the textile processing process, when the fabric is processed to a certain length, it usually needs to be cut using a cutting device. However, existing cutting devices often lack effective fabric fixing devices, which makes the fabric prone to wrinkles during the cutting process, thus affecting the cutting accuracy and overall production efficiency.

[0003] To overcome the aforementioned deficiencies, existing technology (Chinese Patent Publication No. CN222119759U, Publication Date: December 6, 2024) discloses a textile material cutting device, comprising a base plate, a base fixedly connected to the lower end of the base plate, a flattening component fixedly connected to the right side of the base plate, a pressing component disposed at the upper end of the flattening component, and a pressure strip component disposed on the left side of the pressing component. This textile material cutting device can iron and wrinkle-removing the textile fabric using an ironing roller. Through the cooperation of the two sets of flattening components, pressing components, and pressure strip components, the fabric can be pressed tightly and moved outwards to tighten the center of the fabric, making the center of the fabric flat and preventing movement of the fabric during cutting, further preventing wrinkles. The rubber pressure strip body of the pressure strip component increases friction when in contact with the fabric, better pressing and flattening the fabric. The matching structure of the cutter head and the V-shaped groove facilitates better cutting of the fabric.

[0004] In the existing technology, although the fabric is pressed tightly by the flattening component and the pressing component to ensure the stability of the fabric during the cutting process, the cutting position is fixed and cannot be flexibly adjusted according to the requirements of different fabrics. This limits the flexibility and versatility of the equipment. Furthermore, the pressing component may experience unstable clamping force during operation, and cannot maintain uniform pressure at all times. This may lead to loosening or wrinkling of the fabric, thereby affecting the cutting accuracy and production efficiency.

[0005] To address the aforementioned issues, there is an urgent need for innovative design based on existing anti-wrinkle cutting devices for textile materials. Therefore, we propose an anti-wrinkle cutting device for textile materials that can effectively solve the above problems. Utility Model Content

[0006] The purpose of this invention is to provide a new type of textile material cutting device for preventing wrinkles, in order to solve the problems mentioned in the background art. Currently, the fabric is pressed tightly by a flattening component and a pressing component to ensure the stability of the fabric during the cutting process. However, the cutting position is fixed and cannot be flexibly adjusted according to the requirements of different fabrics, which limits the flexibility and versatility of the equipment. Furthermore, the pressing component may experience unstable clamping force during operation, failing to maintain uniform pressure, which may lead to loosening or wrinkling of the fabric, thereby affecting cutting accuracy and production efficiency.

[0007] To achieve the above objectives, this utility model provides the following technical solution: a cutting device for cutting wrinkle-resistant textile materials, comprising a cutting seat, a moving part connected to the cutting seat via a driving assembly, a cutting blade connected to the moving part via a bolt structure, a guide rail mounted on the cutting seat, a limiting seat movably connected to the guide rail, a clamping assembly mounted on the limiting seat, the clamping assembly comprising a fixed clamping seat and an adjustable clamping seat mounted on the limiting seat, the fixed clamping seat and the adjustable clamping seat being symmetrically arranged, a guide rod penetrating through the adjustable clamping seat, a first spring sleeved on the outer side of the guide rod, an auxiliary magnetic block mounted under the adjustable clamping seat, an electromagnetic block mounted at the bottom end of the guide rod, the electromagnetic block being electrically connected to an external electromagnetic structure, and the electromagnetic block being located directly below the auxiliary magnetic block.

[0008] Preferably, the drive assembly includes a lateral moving structure mounted on a cutting seat, a movable seat mounted on the lateral moving structure, a vertical moving structure provided on the movable seat, and a movable component connected to the vertical moving structure.

[0009] Preferably, the fixed clamping seat and the adjusting clamping seat have through holes on opposite sides, and a rubber sheet is installed inside the through holes.

[0010] Preferably, a pressure rod is installed on the side end of the limiting seat, and a negative pressure assembly is installed on the cutting seat. The negative pressure assembly includes a conveying cylinder installed on the cutting seat.

[0011] Preferably, a piston is connected through the inside of the conveying cylinder, a second spring is provided on the outside of the piston, the piston is located at the side end of the pressure rod, and the pressure rod contacts the piston after the limiting seat moves.

[0012] Preferably, the inside of the conveying cylinder is connected to the inner cavity of the adjusting clamping seat via a conveying pipe, the conveying pipe is located on the other side of the piston, and the inner cavity of the adjusting clamping seat is connected to the inner cavity of the fixed clamping seat via a pipe.

[0013] Preferably, an auxiliary component is provided below the moving part, the auxiliary component including a buffer component installed at the bottom of the moving part, and a pressure roller is provided below the buffer component.

[0014] Preferably, the bottom of the movable component is provided with an air blower, the air blower is connected to the outside hot gas through a pipe, the bottom and side of the air blower are provided with through grooves, and a monitor is provided at the bottom of the movable component.

[0015] Compared with the prior art, the beneficial effects of this utility model are as follows: This new textile material cutting device for preventing wrinkles features a lateral and vertical moving structure, which improves the design flexibility and adaptability of the device. The clamping component is used to clamp the fabric edge before cutting to prevent the fabric from slipping, effectively ensuring the stability of the fabric position before cutting. Electromagnetic clamping provides controllable and stable clamping force, ensuring that the fabric does not loosen during cutting and preventing damage to the fabric due to excessive clamping force, thus protecting the integrity of the fabric. The specific details are as follows: The horizontal moving structure drives the moving base to move horizontally, which can flexibly adjust the horizontal cutting position to meet different horizontal cutting needs. The vertical moving structure precisely controls the vertical height of the cutting blade, adapts to fabrics of different thicknesses, and improves the cutting flexibility of the device.

[0016] The moving parts are connected to the cutting blade by bolts. When the cutting blade is worn or needs to be replaced with a different type, it can be replaced quickly, effectively reducing equipment downtime, ensuring the continuity of cutting operations, significantly improving overall cutting efficiency, and reducing production delays caused by blade problems.

[0017] The clamping assembly facilitates fabric placement via a movable limiting seat. The electromagnetic drive combined with the first spring-assisted clamping method ensures that the fixed and adjustable clamping seat can stably clamp the fabric with controllable force. This prevents the fabric from loosening during cutting and avoids damage to the fabric due to excessive clamping force. At the same time, the limiting seat is easy to move, laying the foundation for precise cutting.

[0018] When the limit seat moves to the cutting position, the pressure rod pushes the piston to generate negative pressure, which is transmitted through the pipe to the clamping seat and adsorbs the fabric from the through hole. The rubber sheet inside the through hole uses elasticity and friction to adapt to fabrics of different sizes, improve the adsorption stability, further enhance the fabric fixing effect, avoid displacement during cutting, ensure cutting accuracy, and improve the stability and practicality of the device.

[0019] The pressure roller, in conjunction with the buffer, presses down on the flat material before cutting. Hot gas from the bottom channel further smooths out wrinkles, and the lateral movement expands the smoothing range. Hot gas from the side channel heats the cutting blade, improving sharpness and reducing pulling, wrinkles, and adhesion, thus ensuring cutting quality from multiple aspects. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the surface structure of the cutting seat of this utility model; Figure 3 This is a cross-sectional view of the fixed clamping seat of this utility model; Figure 4 This is a schematic diagram of the internal structure of the conveyor cylinder of this utility model; Figure 5 This is a schematic diagram of the connection structure between the cutting seat and the transverse moving structure of this utility model; Figure 6 This is a bottom view of the moving part of this utility model. Figure 7 This is a cross-sectional structural diagram of the air blowing cylinder of this utility model.

[0021] In the diagram: 1. Cutting seat; 2. Lateral moving structure; 3. Moving seat; 4. Vertical moving structure; 5. Moving component; 6. Cutting blade; 7. Guide rail; 8. Limiting seat; 9. Fixed clamping seat; 10. Adjustable clamping seat; 11. Guide rod; 12. First spring; 13. Auxiliary magnetic block; 14. Electromagnetic block; 15. Through hole; 16. Rubber sheet; 17. Pressure rod; 18. Piston; 19. Conveying cylinder; 20. Second spring; 21. Conveying pipe; 22. Buffer component; 23. Pressure roller; 24. Air blower; 25. Through groove; 26. Monitor. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Example 1: In this example, the adjusting clamp 10 moves closer to the fixed clamp 9. The adjusting clamp 10 moves downwards with the auxiliary magnetic block 13, reducing the distance between it and the fixed clamp 9. This facilitates stable clamping of the fabric, ensuring it does not loosen during the cutting process. Figures 1-6The technical solution shown includes a cutting seat 1, a moving part 5 connected to the cutting seat 1 via a drive assembly, a cutting blade 6 connected to the moving part 5 via bolts, a guide rail 7 mounted on the cutting seat 1, a limit seat 8 movably connected to the guide rail 7, a clamping assembly on the limit seat 8, the clamping assembly including a fixed clamping seat 9 and an adjustable clamping seat 10 mounted on the limit seat 8, the fixed clamping seat 9 and the adjustable clamping seat 10 being symmetrically arranged, a guide rod 11 penetratingly connected inside the adjustable clamping seat 10, a first spring 12 sleeved on the outside of the guide rod 11, an auxiliary magnetic block 13 mounted below the adjustable clamping seat 10, and an electromagnetic block 14 mounted at the bottom end of the guide rod 11, the electromagnetic block 14 being electrically connected to an external electromagnetic structure. The electromagnetic block 14 is located directly below the auxiliary magnetic block 13. The driving assembly includes a horizontal moving structure 2 mounted on the cutting base 1, a moving base 3 mounted on the horizontal moving structure 2, a vertical moving structure 4 mounted on the moving base 3, and a moving component 5 connected to the vertical moving structure 4. The horizontal moving structure 2 drives the moving base 3 to move horizontally on the cutting base 1 to determine the horizontal position of the cut. The vertical moving structure 4 on the moving base 3 drives the moving component 5 to move up and down, which can precisely control the vertical height of the moving component 5 and the cutting blade 6, adapting to the cutting of fabrics of different thicknesses and enhancing the versatility of the device. In this application, both the horizontal moving structure 2 and the vertical moving structure 4 are threaded rods and guide rods driven by motors. The structure is simple and convenient, which not only reduces the manufacturing cost of the device but also facilitates later maintenance and repair. Furthermore, it allows for replacement with similar devices based on cost and actual conditions, further improving the design flexibility and adaptability of the device. The moving part 5, connected to the cutting blade 6 by bolts, moves up and down accordingly, facilitating cutting operations. The bolt connection method makes the assembly and disassembly of the cutting blade 6 more convenient. When the cutting blade 6 wears out or needs to be replaced with a different type, it can be quickly replaced, improving cutting efficiency. The clamping assembly is mounted on a limiting seat 8 that can move along the guide rail 7, used to clamp the edge of the fabric before cutting, preventing fabric slippage and effectively ensuring the stability of the fabric position before cutting. The limiting seat 8 can move along the guide rail 7. For easy carrying, the fabric edge is laid on the surface of the cutting seat 1. The fixed clamping seat 9 and the adjustable clamping seat 10 are symmetrically arranged, and the fabric edge is placed between them. After the external electromagnetic structure is energized, the electromagnetic block 14 generates magnetism, which attracts the auxiliary magnetic block 13 directly above. At this time, the first spring 12 on the outside of the guide rod 11 provides initial elastic force, pushing the adjustable clamping seat 10 closer to the fixed clamping seat 9. The adjustable clamping seat 10 moves down with the auxiliary magnetic block 13, reducing the distance between it and the fixed clamping seat 9, which facilitates stable clamping of the fabric. The clamping force is controllable and stable through electromagnetic clamping, which can ensure that the fabric does not loosen during the cutting process and avoid damage to the fabric due to excessive clamping force, thus protecting the integrity of the fabric.

[0024] Example 2: In this example, negative pressure adsorption further enhances the fabric fixation effect. Even when the fabric is subjected to tensile force during cutting, it remains stable, preventing fabric displacement from affecting cutting accuracy. Specifically, as follows... Figures 1-7 As shown, a through hole 15 is provided on the opposite side of the fixed clamping seat 9 and the adjusting clamping seat 10. A rubber sheet 16 is installed inside the through hole 15. A pressure rod 17 is installed on the side end of the limiting seat 8. A negative pressure assembly is installed on the cutting seat 1. The negative pressure assembly includes a conveying cylinder 19 installed on the cutting seat 1. A piston 18 is connected through the inside of the conveying cylinder 19. A second spring 20 is provided on the outside of the piston 18. The piston 18 is located on the side end of the pressure rod 17. After the limiting seat 8 moves, the pressure rod 17 contacts the piston 18. The inside of the conveying cylinder 19 is connected to the inner cavity of the adjusting clamping seat 10 through a conveying pipe 21. The conveying pipe 21 is located on the other side of the piston 18. The inner cavity of the adjusting clamping seat 10 is connected to the inner cavity of the fixed clamping seat 9 through a pipe. When the limiting seat 8 moves along the guide rail 7 to the cutting position, the pressure rod 17 on its side end... The piston 18 inside the conveying cylinder 19 comes into contact with the conveyor 19 and pushes the piston 18 to move. The movement of the piston 18 compresses the second spring 20, which at the same time creates a negative pressure inside the conveying cylinder 19. The negative pressure is transmitted to the inner cavity of the adjusting clamping seat 10 through the conveying pipe 21, and then to the inner cavity of the fixed clamping seat 9 through the connecting pipe. Finally, the fabric is adsorbed from the through hole 15. The adsorption by the negative pressure further enhances the fixing effect on the fabric. Even if the fabric is subjected to tension during the cutting process, it can remain stable and avoid the fabric displacement from affecting the cutting accuracy. Since rubber sheets 16 are installed in the through holes 15 on the opposite side of the fixed clamping seat 9 and the adjusting clamping seat 10, the rubber sheets 16 can be adapted to fabrics of different sizes and can better fit the fabric surface, improving the adsorption stability and further improving the overall stability and practicality.

[0025] Example 3: In this example, the buffer 22 drives the pressure roller 23 to flatten the fabric on both sides of the cutting blade 6, preventing wrinkles from forming during cutting and ensuring the flatness of the fabric in the cutting area. Specifically, as shown below... Figure 6 and Figure 7As shown, an auxiliary component is provided below the moving part 5. The auxiliary component includes a buffer 22 installed at the bottom of the moving part 5, a pressure roller 23 below the buffer 22, and an air blower 24 at the bottom of the moving part 5. The air blower 24 is connected to external hot gas through a pipe. The bottom and side of the air blower 24 have through grooves 25. A monitor 26 is provided at the bottom of the moving part 5. The buffer 22 at the bottom of the moving part 5 is connected to the pressure roller 23. When the cutting blade 6 presses down to cut, the pressure roller 23 first contacts the fabric. The elasticity of the buffer 22 flattens the fabric on both sides of the cutting blade 6, preventing wrinkles from forming at the moment of cutting and ensuring the flatness of the fabric in the cutting area, thereby improving the cutting quality. External hot gas enters the air blower 24 through the pipe, and part of it is blown onto the fabric surface from the bottom through groove 25 to further smooth the wrinkles, ensuring that the fabric remains flat throughout the cutting process and reducing cutting errors caused by fabric wrinkles. Therefore, the moving seat 3 is driven to move horizontally on the cutting seat 1 by the transverse moving structure 2, and the air blower 24 can move with the moving part 5. The moving part 5 moves synchronously and blows air onto a large area of ​​fabric surface to smooth it out, ensuring the overall flatness of the fabric. Another part of the air blows from the side channel 25 to the cutting blade 6, heating the cutting blade 6, improving the cutting sharpness, and reducing the stretching and wrinkling of the fabric caused by cutting resistance. At the same time, the heated cutting blade 6 can reduce adhesion to the fabric, making the cut surface cleaner. The monitor 26 at the bottom of the moving part 5 monitors the flatness of the fabric and the status of the cutting blade 6 in real time. Once unevenness of the fabric or abnormality of the cutting blade 6 is detected, a signal can be sent in time to remind the staff to adjust or deal with it, avoiding the generation of a large number of defective products due to the failure to detect problems in time, and improving the overall cutting quality. The contents not described in detail in this manual are existing technologies known to those skilled in the art.

[0026] 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 make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A cutting anti-wrinkle textile new material cutting device, comprising a cutting seat (1) arranged, characterized in that, The cutting seat (1) is connected to a moving part (5) via a drive assembly. The moving part (5) is connected to a cutting blade (6) via a bolt structure. The cutting seat (1) is equipped with a guide rail (7). The guide rail (7) is movably connected to a limiting seat (8). The limiting seat (8) is equipped with a clamping assembly. The clamping assembly includes a fixed clamping seat (9) and an adjustable clamping seat (10) installed on the limiting seat (8). The fixed clamping seat (9) and the adjustable clamping seat (10) are symmetrically arranged. A guide rod (11) is connected through the interior of the adjustable clamping seat (10). A first spring (12) is sleeved on the outside of the guide rod (11). An auxiliary magnetic block (13) is installed under the adjustable clamping seat (10). An electromagnetic block (14) is installed at the bottom of the guide rod (11). The electromagnetic block (14) is electrically connected to an external electromagnetic structure. The electromagnetic block (14) is located directly below the auxiliary magnetic block (13).

2. The cutting device for cutting wrinkle-resistant textile materials according to claim 1, characterized in that: The drive assembly includes a lateral moving structure (2) mounted on a cutting seat (1), a moving seat (3) mounted on the lateral moving structure (2), a vertical moving structure (4) provided on the moving seat (3), and a moving part (5) connected to the vertical moving structure (4).

3. The cutting anti-wrinkle textile new material cutting device according to claim 1, characterized in that: The fixed clamping seat (9) and the adjusting clamping seat (10) have through holes (15) on opposite sides, and a rubber sheet (16) is installed inside the through hole (15).

4. The cutting anti-wrinkle textile new material cutting device according to claim 1, characterized in that: A pressure rod (17) is installed on the side end of the limiting seat (8), and a negative pressure assembly is installed on the cutting seat (1). The negative pressure assembly includes a conveying cylinder (19) installed on the cutting seat (1).

5. The cutting anti-wrinkle textile new material cutting device according to claim 4, characterized in that: A piston (18) is connected through the inside of the conveying cylinder (19). A second spring (20) is provided on the outside of the piston (18). The piston (18) is located at the side end of the pressure rod (17). After the limiting seat (8) moves, the pressure rod (17) comes into contact with the piston (18).

6. The cutting device for cutting wrinkle-resistant textile new materials according to claim 5, characterized in that: The inside of the conveying cylinder (19) is connected to the inner cavity of the adjusting clamp seat (10) through the conveying pipe (21). The conveying pipe (21) is located on the other side of the piston (18). The inner cavity of the adjusting clamp seat (10) is connected to the inner cavity of the fixed clamp seat (9) through the pipe.

7. The cutting anti-wrinkle textile new material cutting device according to claim 2, characterized in that: An auxiliary component is provided under the moving part (5), the auxiliary component including a buffer (22) installed at the bottom of the moving part (5), and a pressure roller (23) is provided under the buffer (22).

8. The cutting anti-wrinkle textile new material cutting device according to claim 2, characterized in that: The bottom of the movable part (5) is provided with an air blower (24), which is connected to the outside hot gas through a pipe. The bottom and side of the air blower (24) are provided with through grooves (25), and the bottom of the movable part (5) is provided with a monitor (26).

Citation Information

Patent Citations

  • Textile material cutting device

    CN222119759U