Fabric crease-resistant treatment device
By integrating drying, lint removal, and flattening mechanisms, the fabric anti-wrinkle treatment device solves the problems of low efficiency and high energy consumption of traditional methods, achieving efficient and multifunctional fabric treatment and improving the smoothness and aesthetics of the fabric.
Patent Information
- Application Number
- CN202520398478.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-07
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-03-07
AI Technical Summary
Traditional methods for preventing wrinkles on fabrics are inefficient and energy-intensive, and they cannot simultaneously solve the problem of pilling on the fabric surface, affecting both aesthetics and quality consistency.
Design a fabric anti-wrinkle treatment device that includes drying, lint removal and flattening mechanisms, integrated on a base. It removes moisture by drying, removes lint by lint removal, and flattens the fabric to make it smooth, adapting to fabrics of different specifications.
It achieves one-stop efficient processing, improves production efficiency, enhances fabric smoothness and aesthetics, reduces labor and time costs, and is suitable for various fabric types.
Smart Images

Figure CN223823909U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of fabric production and processing, and particularly relates to a fabric anti-wrinkle treatment device. BACKGROUND
[0002] In the field of printing and dyeing, the quality of the finished fabric depends not only on the brightness of the color and the accuracy of the pattern, but also greatly on the flatness and aesthetic appearance of the surface. In the traditional process, the anti-wrinkle treatment of the fabric is mainly concentrated in the finishing stage, and the wrinkles are reduced or eliminated by chemical methods, heat setting or mechanical ironing. However, these methods often have the disadvantages of low efficiency, high energy consumption, damage to the fabric material, etc., and it is difficult to solve the problem of pilling on the surface of the fabric at the same time, resulting in uneven quality of the final product and affecting the aesthetic appearance of the fabric.
[0003] In view of this, the utility model is proposed. CONTENT OF THE UTILITY MODEL
[0004] The utility model discloses a fabric anti-wrinkle treatment device to solve the technical problems of the prior art.
[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme:
[0006] A fabric anti-wrinkle treatment device, comprising a base, the base is sequentially provided with a drying mechanism, a lint removing mechanism and a flattening mechanism, the drying mechanism comprises two oppositely arranged drying pieces; the lint removing mechanism comprises a first lint removing assembly and a second lint removing assembly, which are used to remove lint impurities on both sides of the fabric respectively; the flattening mechanism comprises a cloth guiding assembly and a cloth pressing assembly, the cloth pressing assembly comprises an adjusting assembly and an expanding roller, the adjusting assembly is used to adjust the height of the expanding roller, and is suitable for different specifications of the fabric.
[0007] The drying mechanism comprises a first frame body, first cloth guiding rollers are arranged on both sides of the first frame body, and the drying mechanism is arranged between the two first cloth guiding rollers, that is, the fabric is conveyed between the two oppositely arranged drying pieces, so that the upper and lower surfaces of the fabric can be dried at the same time.
[0008] Second cloth guiding rollers are arranged between the first lint removing assembly and the second lint removing assembly, the first lint removing assembly comprises a first lint removing piece and a first lint removing pipe, and the second lint removing assembly comprises a second lint removing piece and a second lint removing pipe, the fabric is conveyed in an S shape through the first lint removing piece, the second cloth guiding roller and the second lint removing piece, so that the two surfaces of the fabric can be removed of lint impurities.
[0009] The lint removing mechanism further comprises a collecting box, the first lint removing pipe and the second lint removing pipe are connected with the collecting box respectively, so that the lint impurities removed from both surfaces of the fabric can be uniformly collected and treated.
[0010] The flattening mechanism includes a second frame, on which the fabric guide assembly and the fabric pressing assembly are both mounted. The fabric guide assembly includes a conveyor belt and several third fabric guide rollers. The spreading rollers are configured in conjunction with the conveyor belt, meaning that when the fabric is conveyed on the conveyor belt, the spreading rollers press the fabric on the conveyor belt, effectively removing wrinkles and making the fabric smoother.
[0011] The adjustment assembly includes telescopic components and fixed plates disposed on both sides of the second frame. A crossbar is provided between the two fixed plates, and connecting rods are respectively provided at both ends of the crossbar. The two ends of the two connecting rods are rotatably connected to the crossbar and the expansion roller, respectively. The telescopic rod of the telescopic component is fixedly connected to the connecting rod. After driving the telescopic component, the telescopic rod will drive the connecting rod to rotate on the crossbar, thereby changing the distance between the expansion roller and the conveyor belt. The position of the expansion roller can be adjusted according to the fabric of different thicknesses, so that the expansion roller can press against the various specifications of fabric conveyed on the conveyor belt.
[0012] The beneficial effects of this utility model are as follows:
[0013] This application achieves one-stop processing of fabrics by sequentially setting a drying mechanism, a lint removal mechanism, and a flattening mechanism on a base; this not only simplifies the operation process and reduces the equipment footprint, but also greatly improves production efficiency, allowing the fabric to complete a comprehensive process from moisture removal to surface flattening in a continuous process.
[0014] The adjusting components in the flattening mechanism can adjust the height of the spreading roller as needed to accommodate fabrics of different specifications. This flexibility ensures that the device can be widely used in the processing of various types of fabrics, increasing the applicability and market competitiveness of the equipment.
[0015] (3) The first and second lint suction components in the lint suction mechanism can clean the lint and impurities on both sides of the fabric respectively, ensuring that both sides of the fabric can be thoroughly cleaned, improving the quality of the final product and making it more beautiful and tidy; combined with the drying and flattening steps, the flatness and beauty of the fabric are further enhanced, which helps to improve the quality standards of the finished product.
[0016] (4) This application integrates multiple functions and can operate efficiently, reducing the need for multiple handling and repeated processing of fabrics, thereby reducing labor costs and time costs. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of a fabric anti-wrinkle treatment device according to the present invention. Figure One ;
[0018] Figure 2 This is a schematic diagram of the structure of a fabric anti-wrinkle treatment device according to the present invention.Figure Two ;
[0019] The components are labeled as follows: 1. Base; 21. First frame; 22. First guide roller; 23. Drying component; 24. Telescopic motor; 31. First lint suction assembly; 311. First lint suction piece; 312. First lint suction tube; 32. Second lint suction assembly; 321. Second lint suction piece; 322. Second lint suction tube; 33. Collection box; 41. Second frame; 411. Third guide roller; 412. Conveyor belt; 413. Wiring roller; 414. Telescopic component; 415. Fixing plate; 416. Crossbar; 417. Connecting rod. Detailed Implementation
[0020] The present invention will be further described below with reference to specific embodiments.
[0021] In the following description, all directional (or orientational) concepts involving up, down, left, right, front, and back refer to the position of the figure being described, and are intended to facilitate public understanding. Therefore, they should not be construed as a special limitation on the technical solution provided by this utility model.
[0022] like Figure 1 and Figure 2 As shown, a fabric anti-wrinkle treatment device includes a base 1, on which a drying mechanism, a lint suction mechanism, and a flattening mechanism are sequentially arranged. The drying mechanism includes two drying components 23 arranged opposite to each other. The lint suction mechanism includes a first lint suction component 31 and a second lint suction component 32, which are used to remove lint and impurities from both sides of the fabric respectively. The flattening mechanism includes a fabric guide component and a fabric pressing component. The fabric pressing component includes an adjustment component and a widening roller 413. The adjustment component is used to adjust the height of the widening roller 413 to adapt to fabrics of different specifications.
[0023] The drying mechanism includes a first frame 21, with first guide rollers 22 on both sides of the first frame 21. The drying mechanism is positioned between the two first guide rollers 22, meaning the fabric is conveyed between two oppositely positioned drying elements 23 (which can be heated by electric heating wires or dried by fan ventilation), facilitating simultaneous drying of both the top and bottom sides of the fabric. A telescopic motor 24 can also be installed on one side of the two drying elements 23 to control their movement closer or further apart, adapting to fabrics of different thicknesses.
[0024] A second guide roller is provided between the first lint-collecting component 31 and the second lint-collecting component 32. The first lint-collecting component 31 includes a first lint-collecting element 311 and a first lint-collecting tube 312. The second lint-collecting component 32 includes a second lint-collecting element 321 and a second lint-collecting tube 322. The fabric is transported in an S-shape between the first lint-collecting element 311, the second guide roller, and the second lint-collecting element 321 (both the first lint-collecting element 311 and the second lint-collecting element 321 can be vacuum lint-collecting elements or electrostatic lint-collecting elements), so that lint and impurities can be removed from both sides of the fabric. The lint-collecting mechanism also includes a collection box 33. The first lint-collecting tube 312 and the second lint-collecting tube 322 are respectively connected to the collection box 33, so that the lint and impurities removed from both sides of the fabric can be collected and processed uniformly.
[0025] The flattening mechanism includes a second frame 41, on which both the fabric guiding assembly and the fabric pressing assembly are mounted. The fabric guiding assembly includes a conveyor belt 412 and several third fabric guiding rollers 411. A spreading roller 413 is configured to cooperate with the conveyor belt 412; that is, when the fabric is conveyed on the conveyor belt 412, the spreading roller 413 presses the fabric on the conveyor belt 412, resulting in a smoother fabric. The adjusting assembly also includes telescopic components 414 and fixed plates 415 on both sides of the second frame 41. A crossbar 416 is provided between the two fixed plates 415, and connecting rods 417 are provided at both ends of the crossbar 416. The two ends of the two connecting rods 417 are rotatably connected to the crossbar 416 and the spreading roller 413, respectively. The telescopic rods of the telescopic components 414 are fixedly connected to the connecting rods 417. After the telescopic component 414 is driven, the telescopic rod will drive the connecting rod 417 to rotate on the crossbar 416, thereby changing the distance between the expansion roller 413 and the conveyor belt 412. The position of the expansion roller 413 can be adjusted according to the fabric of different thicknesses, so that the expansion roller 413 can press against the various specifications of fabrics conveyed on the conveyor belt 412.
[0026] The working principle is as follows:
[0027] First, the staff drives the telescopic motor 24 to adjust the distance between the upper and lower drying components 23 according to the thickness and material of the fabric; then drives the telescopic component 414 to adjust the position of the expansion roller 413, that is, to control the distance between the expansion roller 413 and the conveyor belt 412.
[0028] The fabric is then conveyed between two first guide rollers 22 and two drying components 23. After drying, the fabric is conveyed in an S-shape to the first lint suction component 311, the second guide roller, and the second lint suction component 321. Lint suction is performed on both sides of the dried fabric by the first lint suction component 311 and the second lint suction component 321. The lint and impurities removed are passed into the collection box 33 through the first lint suction pipe 312 and the second lint suction pipe 322 for unified collection.
[0029] After removing lint and impurities, the fabric is then conveyed by the third guide roller 411 on the second frame 41 and the conveyor belt 412. The widening roller 413 is used to press the fabric conveyed on the conveyor belt 412, making the fabric surface smoother and more aesthetically pleasing.
[0030] This application achieves one-stop processing of fabrics by sequentially arranging a drying mechanism, a lint suction mechanism, and a flattening mechanism on a base 1. This not only simplifies the operation process and reduces the equipment's footprint, but also greatly improves production efficiency, allowing the fabric to undergo comprehensive processing from moisture removal to surface flattening in a continuous process. It integrates multiple functions into one unit, has a reasonable design, a simple structure, and can operate efficiently, reducing the need for multiple handling and repetitive processing of the fabric, thereby reducing labor and time costs.
[0031] The adjusting components in the flattening mechanism can adjust the height of the spreading roller 413 as needed to adapt to fabrics of different specifications. This flexibility ensures that the device can be widely used in the processing of various types of fabrics, increasing the applicability and market competitiveness of the equipment. The first lint suction component 31 and the second lint suction component 32 in the lint suction mechanism can clean the lint and impurities on both sides of the fabric respectively, ensuring that both sides of the fabric are thoroughly cleaned, improving the quality of the final product and making it more beautiful and neat. Combined with the drying and flattening steps, the flatness and aesthetics of the fabric are further enhanced, which helps to improve the quality standards of the finished product.
[0032] The above content is a further detailed description of the technical solution provided in conjunction with the preferred embodiments of this patent. It should not be considered that the specific implementation of this utility model is limited to the above description. For those skilled in the art to which this patent pertains, several simple deductions or substitutions can be made without departing from the concept of this patent, and all of these should be considered to fall within the protection scope of this patent.
Claims
1. A fabric anti-wrinkle treatment device, characterized in that: The device includes a base on which a drying mechanism, a lint suction mechanism, and a flattening mechanism are sequentially arranged. The drying mechanism includes two drying components arranged opposite each other. The lint suction mechanism includes a first lint suction component and a second lint suction component, which are used to remove lint and impurities from both sides of the fabric, respectively. The flattening mechanism includes a fabric guide component and a fabric pressing component. The fabric pressing component includes an adjustment component and a spreading roller. The adjustment component is used to adjust the height of the spreading roller to adapt to fabrics of different specifications.
2. The fabric anti-wrinkle treatment device as described in claim 1, characterized in that: The drying mechanism includes a first frame, with first guide rollers on both sides of the first frame, and the drying mechanism is disposed between the two first guide rollers.
3. The fabric anti-wrinkle treatment device as described in claim 1, characterized in that: A second guide roller is provided between the first and second lint suction components. The first lint suction component includes a first lint suction element and a first lint suction tube, and the second lint suction component includes a second lint suction element and a second lint suction tube.
4. The fabric anti-wrinkle treatment device as described in claim 3, characterized in that: The hair suction mechanism also includes a collection box, and the first and second hair suction tubes are respectively connected to the collection box.
5. The fabric anti-wrinkle treatment device as described in claim 1, characterized in that: The flattening mechanism includes a second frame, on which the fabric guiding assembly and the fabric pressing assembly are both mounted; the fabric guiding assembly includes a conveyor belt and several third fabric guiding rollers, and the expansion rollers are configured in conjunction with the conveyor belt.
6. A fabric anti-wrinkle treatment device as described in claim 1 or 5, characterized in that: The adjustment assembly includes telescopic components and fixed plates disposed on both sides of the second frame. A crossbar is provided between the two fixed plates, and connecting rods are provided at both ends of the crossbar. The two ends of the two connecting rods are rotatably connected to the crossbar and the expansion roller, respectively. The telescopic rod of the telescopic component is fixedly connected to the connecting rod.