Cold-proof high-strength polyester fabric composite device

By using a dust suction roller and a limit roller structure, combined with a servo motor-driven spraying frame and conveying roller, the problems of dust cleaning and uneven glue spraying during the fabric lamination process are solved, thereby improving the firmness of fabric bonding and production quality.

CN224348437UActive Publication Date: 2026-06-12HUZHOU WUXINGDA SILK COATING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUZHOU WUXINGDA SILK COATING CO LTD
Filing Date
2025-07-18
Publication Date
2026-06-12

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    Figure CN224348437U_ABST
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Abstract

The utility model discloses a kind of cold-proof high-strength polyester fabric composite devices, including integrated frame and first support frame, the top of integrated frame is provided with first support frame, the inside of integrated frame in the side of first support frame is symmetric with third support frame up and down, the top of integrated frame in the side of first support frame is provided with second support frame, the top of integrated frame in the side of second support frame is provided with drying box, the inside of third support frame is movably installed with dust absorption roller, the outer wall of third support frame is provided with adapter sleeve, and dust absorption roller is movably connected with adapter sleeve, the side wall of integrated frame in the side of third support frame is provided with fan. The utility model not only realizes suction and cleaning the dust particles on the surface of fabric and limit roller pressure two groups of fabric to make fabric bonding more firm, facilitate to the surface of fabric reciprocating swing even spraying glue, and improve the quality of fabric composite production and processing.
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Description

Technical Field

[0001] This utility model relates to the field of fabric processing technology, specifically to a composite device for cold-resistant high-strength polyester fabric. Background Technology

[0002] Composite fabrics typically refer to a new type of textile fabric made by combining multiple fabrics or fabrics with a polymer film. They are widely used in various garments, such as the waterproof and breathable fabric used in outdoor jackets, which is a composite fabric made of fabrics and microporous membranes. In the production of composite fabrics, adhesive is usually applied to one type of fabric first, and then this adhesive-coated fabric is bonded to another fabric or polymer film. When bonding the two fabrics, it is necessary to ensure a tight bond to prevent air bubbles from forming, which would affect the fabric's forming effect. Dust and impurities adhering to the fabrics can also affect the composite effect. Before the fabric is laminated, it needs to be cleaned. Traditional cleaning methods often involve manually blowing air through the fabric surface with a handheld air gun, which is inefficient. To improve this, a cold-resistant, high-strength polyester fabric lamination device has been proposed.

[0003] For example, the fabric composite device disclosed in the authorization announcement number CN220163421U includes a base, and a composite mechanism is provided on one side of the top of the base. The composite mechanism includes two symmetrically arranged support columns, and two rotatable composite rollers are provided between the two support columns. At the same time, a support rod is also vertically provided on the top of the base on one side of the composite mechanism. A dust removal mechanism is installed on the support rod. The dust removal mechanism includes an upper dust suction device and a lower dust suction device that are arranged vertically and vertically to support each other. A connecting pipe is provided on one side of the support rod corresponding to the upper dust suction device and the lower dust suction device, and a dust suction device is connected to the outside through the connecting pipe.

[0004] Although it achieves a simple structure, is easy to use, and can perform multi-faceted dust removal on the fabric before fabric lamination with high dust removal efficiency, it does not solve the problems of existing lamination devices being unable to effectively suck up and clean dust particles from the fabric surface, and the limitations of the limiting rollers pressing the two sets of fabric to make the fabric bond more firmly, and the difficulty in uniformly spraying glue onto the fabric surface by reciprocating swings, which affects the quality of fabric lamination production and processing. Utility Model Content

[0005] The purpose of this utility model is to provide a cold-resistant high-strength polyester fabric composite device to solve the problems mentioned in the background art, such as the inconvenience of the composite device in sucking and cleaning dust particles on the fabric surface, the limitation roller pressing the two sets of fabric to make the fabric bond more firmly, the difficulty in spraying glue evenly on the fabric surface by reciprocating swing, and the impact on the quality of fabric composite production and processing.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a cold-resistant high-strength polyester fabric composite device, comprising an integrated frame and a first support frame. The first support frame is provided at the top of the integrated frame. A third support frame is symmetrically arranged inside the integrated frame on one side of the first support frame. A second support frame is provided at the top of the integrated frame on the other side of the first support frame. A drying box is provided at the top of the integrated frame on one side of the second support frame. A dust-collecting roller is movably installed inside each of the third support frames. An adapter sleeve is provided on the outer wall of each of the third support frames, and the dust-collecting roller is movably connected to the adapter sleeve. A fan is provided on the side wall of the integrated frame on one side of the third support frame. An air extraction pipe is provided at the top of each fan, and the air extraction pipe extends into the interior of the adapter sleeve. Two sets of cylinders are provided inside the first support frame. A moving plate is provided outside each cylinder, and the output end of the cylinder is connected to the moving plate. A drive frame is provided on the side wall of the moving plate.

[0007] Preferably, a first servo motor is provided on the outer wall of the drive frame, and a worm gear is provided at the output end of the first servo motor.

[0008] Preferably, a worm wheel is movably disposed inside the drive frame on one side of the worm, and a long connecting arm is movably disposed at an eccentric position on the side wall of the worm wheel.

[0009] Preferably, a short connecting arm is movably provided at the end of the long connecting arm away from the worm gear, and a movable shaft is fixedly installed at the end of the short connecting arm away from the long connecting arm.

[0010] Preferably, the movable shaft is movably connected to the drive frame, and a spraying frame is provided on the surface of the movable shaft, and the spraying frame is connected to the glue tank through a flexible hose.

[0011] Preferably, a second servo motor is provided on the side wall of the second support frame, and a conveying roller is provided at the output end of the second servo motor, and the conveying roller is movably connected to the second support frame.

[0012] Preferably, the second support frame has symmetrically arranged sliders inside, and the sliders are slidably connected to the second support frame.

[0013] Preferably, each slider is provided with a spring at its top end, and the spring is connected to the second support frame, and a limit roller is movably installed between the two sets of sliders.

[0014] Compared with the prior art, the beneficial effects of this utility model are: the composite device not only realizes the suction and cleaning of dust particles on the fabric surface and the limiting roller pressing of the two sets of fabrics to make the fabric more firmly bonded, but also facilitates the uniform spraying of glue onto the fabric surface by reciprocating swing, and improves the quality of fabric composite production and processing.

[0015] (1) Two types of cold-resistant high-strength polyester fabrics are pulled onto the take-up rollers from the surface of the two sets of dust collection rollers, between the conveying rollers and the limiting rollers, and inside the drying box. The take-up rollers take up the fabrics and continuously pull them. When the fabrics pass over the surface of the dust collection rollers, the fan draws air into the dust collection rollers through the air extraction pipe and the adapter sleeve. Dust particles on the surface of the fabrics enter the dust collection rollers through the holes on the surface of the dust collection rollers to clean the fabrics. The cleaned fabrics continue to move, and the cylinder drives the moving plate and the drive frame to move. The drive frame drives the spraying. The frame moves and approaches the fabric surface, turning on the water pump in the glue tank to pump the glue through a flexible hose into the spray frame and spray it onto the surface of a set of fabrics. To make the glue spraying more even, the first servo motor drives the worm gear to rotate, which in turn drives the long connecting arm to rotate. The long connecting arm drives the short connecting arm to swing back and forth, and the short connecting arm drives the spray frame to swing back and forth through the movable shaft. This back-and-forth swinging motion evenly sprays the glue onto the fabric surface, effectively sucking up and cleaning dust particles from the fabric surface and facilitating the even spraying of glue onto the fabric surface.

[0016] (2) The fabric after the glue has been sprayed and another set of fabrics are continuously moved. The two sets of fabrics come into contact between the conveying roller and the limiting roller. Under the elastic cooperation of the spring, the spring drives the slider to slide inside the second support frame. The slider drives the limiting roller to move towards the position of the conveying roller, so that the conveying roller and the limiting roller clamp the two sets of fabrics. In order to prevent the conveying roller and the limiting roller from clamping and fixing the fabric, the second servo motor drives the conveying roller to rotate. Under the limiting cooperation of the limiting roller, while the conveying roller drives the fabric to move, the conveying roller and the limiting roller roll the fabric to stick the two sets of fabrics together. The rolled fabric is moved to the drying box, where the glue in the fabric interlayer is dried. Then the take-up roller takes up the dried fabric to complete the composite production of cold-proof high-strength polyester fabric. The limiting roller presses the two sets of fabrics to make the fabrics bond more firmly and improves the quality of fabric composite production and processing. Attached Figure Description

[0017] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0018] Figure 2 This is a three-dimensional structural diagram of the present invention;

[0019] Figure 3 This is a frontal cross-sectional view of the present invention.

[0020] Figure 4 This is a three-dimensional structural diagram of the dust collection roller of this utility model;

[0021] Figure 5 This is a top cross-sectional view and a three-dimensional structural diagram of the drive frame of this utility model;

[0022] Figure 6 This is a three-dimensional structural diagram of the slider of this utility model.

[0023] In the diagram: 1. Integrated frame; 2. First support frame; 3. Second support frame; 4. Drying oven; 5. Cylinder; 6. Moving plate; 7. Drive frame; 8. Dust suction roller; 9. Spraying frame; 10. Conveying roller; 11. Limiting roller; 12. Fan; 13. Air extraction pipe; 14. Adapter sleeve; 15. Third support frame; 16. First servo motor; 17. Worm gear; 18. Worm wheel; 19. Long connecting arm; 20. Short connecting arm; 21. Movable shaft; 22. Spring; 23. Slider; 24. Second servo motor. Detailed Implementation

[0024] 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.

[0025] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0026] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0027] Example 1

[0028] Please see Figure 1-6This utility model provides an embodiment of a cold-resistant high-strength polyester fabric composite device, comprising an integrated frame 1 and a first support frame 2. The first support frame 2 is disposed at the top of the integrated frame 1. A third support frame 15 is symmetrically disposed vertically inside the integrated frame 1 on one side of the first support frame 2. A second support frame 3 is disposed at the top of the integrated frame 1 on the other side of the first support frame 2. A drying box 4 is disposed at the top of the integrated frame 1 on one side of the second support frame 3. Dust suction rollers 8 are movably installed inside each of the third support frames 15. All outer walls are provided with adapter sleeves 14, and the dust suction roller 8 is movably connected to the adapter sleeve 14. All integrated frame 1 side walls of the third support frame 15 are provided with fans 12, and the top of each fan 12 is provided with an exhaust pipe 13, which extends into the interior of the adapter sleeve 14. The interior of the first support frame 2 is provided with two sets of cylinders 5, which serve as power drives. The outside of the cylinders 5 is provided with a moving plate 6, and the output end of the cylinders 5 is connected to the moving plate 6. The side wall of the moving plate 6 is provided with a drive frame 7.

[0029] A first servo motor 16 is provided on the outer wall of the drive frame 7. The first servo motor 16 plays the role of power drive. A worm gear 17 is provided at the output end of the first servo motor 16. A worm wheel 18 is movably provided inside the drive frame 7 on one side of the worm gear 17. A long connecting arm 19 is movably provided at the eccentric position on the side wall of the worm wheel 18.

[0030] A short connecting arm 20 is movably provided at the end of the long connecting arm 19 away from the worm gear 18. A movable shaft 21 is fixedly installed at the end of the short connecting arm 20 away from the long connecting arm 19. The movable shaft 21 is movably connected to the drive frame 7, and a spraying frame 9 is provided on the surface of the movable shaft 21. The spraying frame 9 is connected to the glue tank through a flexible hose.

[0031] Two types of cold-resistant high-strength polyester fabrics are drawn onto the take-up rollers from the surfaces of the two sets of dust-collecting rollers 8, between the conveying rollers 10 and the limiting rollers 11, and inside the drying chamber 4. The take-up rollers take up the fabric and continuously pull it. When the fabric passes over the surface of the dust-collecting rollers 8, the fan 12 is turned on, and the fan 12 draws air into the dust-collecting rollers 8 through the air extraction pipe 13 and the adapter sleeve 14. Dust particles on the surface of the fabric enter the dust-collecting rollers 8 through the holes on the surface of the dust-collecting rollers 8 to clean the fabric. The cleaned fabric continues to move. At this time, the cylinder 5 is turned on, and the cylinder 5 drives the moving plate 6 and the drive frame 7 to move. The drive frame 7 drives the spraying frame 9 to move and approach the surface. On the material surface, the water pump in the glue tank is turned on to pump the glue through the flexible hose into the spray frame 9 and spray it onto the surface of a set of fabrics. In order to make the glue spraying more even, the first servo motor 16 is turned on, and the first servo motor 16 drives the worm gear 17 to rotate. Under the mutual meshing of the worm gear 17 and the worm wheel 18, the worm wheel 18 drives the long connecting arm 19 to rotate, and the long connecting arm 19 drives the short connecting arm 20 to swing back and forth. The short connecting arm 20 drives the spray frame 9 to swing back and forth through the movable shaft 21, thereby spraying the glue evenly onto the fabric surface by swinging back and forth. This realizes the suction and cleaning of dust particles on the fabric surface, and facilitates the even spraying of glue onto the fabric surface by swinging back and forth.

[0032] A second servo motor 24 is provided on the side wall of the second support frame 3. The second servo motor 24 plays the role of power drive. A conveying roller 10 is provided at the output end of the second servo motor 24, and the conveying roller 10 is movably connected to the second support frame 3.

[0033] The second support frame 3 is symmetrically provided with sliders 23 inside, and the sliders 23 are slidably connected to the second support frame 3. Each slider 23 is provided with a spring 22 at its top end, and the spring 22 is connected to the second support frame 3. A limit roller 11 is movably installed between the two sets of sliders 23.

[0034] The fabric coated with adhesive moves continuously with another set of fabrics. The two sets of fabrics come into contact between the conveyor roller 10 and the limiting roller 11. Under the elastic action of the spring 22, the spring 22 drives the slider 23 to slide inside the second support frame 3. The slider 23 drives the limiting roller 11 to move towards the position of the conveyor roller 10, so that the conveyor roller 10 and the limiting roller 11 clamp the two sets of fabrics. To prevent the conveyor roller 10 and the limiting roller 11 from clamping and fixing the fabrics, the second servo motor 24 is turned on, and the second servo motor 24 drives the conveyor roller 10... The fabric is rotated, and under the limiting action of the limiting roller 11, the fabric is moved by the conveying roller 10 while being rolled by the conveying roller 10 and the limiting roller 11 to bond the two sets of fabric together. After the fabric is rolled, it is moved into the drying box 4, where the adhesive in the fabric interlayer is dried. Then, the take-up roller rolls up the dried fabric to complete the composite production of cold-proof high-strength polyester fabric. The limiting roller pressing of the two sets of fabric makes the fabric bonded more firmly and improves the quality of fabric composite production and processing.

[0035] Work steps

[0036] Two types of cold-resistant high-strength polyester fabrics are drawn onto the take-up rollers from the surfaces of the two sets of suction rollers 8, between the conveyor rollers 10 and the limiting rollers 11, and inside the drying chamber 4. The take-up rollers take the fabrics up and continuously pull them. When the fabrics pass over the surface of the suction rollers 8, the fan 12 draws air into the suction rollers 8 through the exhaust pipe 13 and the adapter sleeve 14. Dust particles on the surface of the fabric enter the suction rollers 8 through the holes on the surface of the suction rollers 8 to clean the fabrics. The cleaned fabrics continue to move. The cylinder 5 drives the moving plate 6 and the drive frame 7 to move. The drive frame 7 then drives the spraying frame 9 to move and approach the fabric surface. The water pump in the glue tank is turned on, and the glue is pumped through the flexible hose into the spraying frame 9 and sprayed onto the surface of a set of fabrics. To make the glue spraying more even, the first servo motor 16 drives the worm gear 17 to rotate. The worm wheel 18 drives the long connecting arm 19 to rotate. The long connecting arm 19 drives the short connecting arm 20 to swing back and forth. The short connecting arm 20 drives the spraying frame through the movable shaft 21. 9. The rollers reciprocate, spraying the adhesive evenly onto the fabric surface. The adhesive-coated fabric moves continuously with another set of fabrics, bringing them into contact between the conveyor roller 10 and the limiting roller 11. Under the elastic action of the spring 22, the spring 22 drives the slider 23 to slide inside the second support frame 3. The slider 23 then moves the limiting roller 11 towards the conveyor roller 10, causing the conveyor roller 10 and the limiting roller 11 to clamp the two sets of fabrics. To prevent the conveyor roller 10 and the limiting roller 11 from interfering with each other... 1. The fabric is clamped and fixed, and the second servo motor 24 drives the conveyor roller 10 to rotate. With the limiting roller 11 in a limiting position, the conveyor roller 10 and the limiting roller 11 roll the fabric while the fabric moves, so as to stick the two sets of fabrics together. After the fabric is rolled, it is moved into the drying box 4, where the adhesive in the fabric interlayer is dried. Then, the take-up roller rolls up the dried fabric to complete the composite production of cold-proof high-strength polyester fabric.

[0037] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A composite device for cold-resistant high-strength polyester fabric, comprising an integrated frame and a first support frame, characterized in that: The integrated frame has a first support frame at its top. A third support frame is symmetrically arranged vertically inside the integrated frame on one side of the first support frame. A second support frame is located at the top of the integrated frame on the other side of the first support frame. A drying chamber is located at the top of the integrated frame on one side of the second support frame. A dust-collecting roller is movably installed inside each of the third support frames. An adapter sleeve is provided on the outer wall of each of the third support frames, and the dust-collecting roller is movably connected to the adapter sleeve. A fan is installed on the side wall of the integrated frame on one side of the third support frame. An exhaust pipe is located at the top of each fan and extends into the interior of the adapter sleeve. Two sets of cylinders are installed inside the first support frame. A movable plate is located outside each cylinder, and the output end of the cylinder is connected to the movable plate. A drive frame is located on the side wall of the movable plate.

2. The cold-resistant high-strength polyester fabric composite device according to claim 1, characterized in that: A first servo motor is provided on the outer wall of the drive frame, and a worm gear is provided at the output end of the first servo motor.

3. The cold-resistant high-strength polyester fabric composite device according to claim 2, characterized in that: A worm wheel is movably disposed inside the drive frame on one side of the worm, and a long connecting arm is movably disposed at an eccentric position on the side wall of the worm wheel.

4. The cold-resistant high-strength polyester fabric composite device according to claim 3, characterized in that: A short connecting arm is movably provided at the end of the long connecting arm away from the worm gear, and a movable shaft is fixedly installed at the end of the short connecting arm away from the long connecting arm.

5. The cold-resistant high-strength polyester fabric composite device according to claim 4, characterized in that: The movable shaft is movably connected to the drive frame, and a spraying frame is provided on the surface of the movable shaft. The spraying frame is connected to the glue tank through a flexible hose.

6. The cold-resistant high-strength polyester fabric composite device according to claim 1, characterized in that: A second servo motor is provided on the side wall of the second support frame, and a conveying roller is provided at the output end of the second servo motor, and the conveying roller is movably connected to the second support frame.

7. The cold-resistant high-strength polyester fabric composite device according to claim 1, characterized in that: The second support frame has symmetrically arranged sliders inside, and the sliders are slidably connected to the second support frame.

8. The cold-resistant high-strength polyester fabric composite device according to claim 7, characterized in that: Each slider is equipped with a spring at its top, and the spring is connected to the second support frame. A limit roller is movably installed between the two sets of sliders.

Citation Information

Patent Citations

  • Fabric compounding device

    CN220163421U