Dacron woven fabric wrinkling device

By designing a pleating device for polyester woven fabric, the elastic deformation of metal springs and lateral compression combined with the softening of electric heating wires and hot steam are used to solve the problems of fabric fiber breakage and uneven pleating in traditional devices, achieving high-quality and stable pleating effect.

CN223880078UActive Publication Date: 2026-02-06SHAOXING XUANJING TEXTILE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520478676.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2026-02-06
Estimated Expiration
2035-03-19

AI Technical Summary

Technical Problem

Traditional polyester woven fabric pleating devices apply pressure to the lower folding plate by directly pressing the upper folding plate, which can easily lead to fabric fiber breakage or deformation. In particular, polyester woven fabric has weak tensile and compressive deformation resistance, affecting quality and performance. Furthermore, if the pressure is too low, the pleating effect is not obvious, which cannot meet the requirements of production process and product quality.

Method used

Design a pleating device for polyester woven fabric. The device uses a base plate, telescopic cylinder and pleating components to form pleats through the elastic deformation of metal springs and lateral compression. Combined with electric heating wire and hot steam to soften the fabric, it achieves uniform heating and shaping.

Benefits of technology

It avoids fabric stretching damage, forms clear and beautiful pleats, improves pleating quality and stability, extends fabric lifespan, and meets production process and product quality requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a polyester woven fabric wrinkling device which comprises a device bottom plate, supporting plate bodies are installed at the front end and the rear end of the top of the device bottom plate, a control host is installed on the surface of the supporting plate body located at the front end, a rotating roller is rotatably installed on one side between the two supporting plate bodies, and supporting rods are fixed to the two sides of the top of each supporting plate body. A device top plate is fixed to the tops of the supporting rods, a first telescopic cylinder body is installed at the bottom of the device top plate, a second telescopic cylinder body is installed at the top of the device bottom plate, and a wrinkle assembly is arranged between the first telescopic cylinder body and the second telescopic cylinder body. The cloth is tightly attached and extruded to form deep and uniform pleats, the cloth is prevented from being stretched and damaged, the original texture and elasticity of the cloth are kept through elastic deformation and side face extrusion of the metal elastic pieces, clear and attractive pleats are formed, the pleating quality and stability are improved, the service life of the cloth is prolonged, and the good appearance is kept.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cloth processing field, concretely is a polyester woven cloth wrinkle device. BACKGROUND

[0002] The pleating machine is a process of shaping cloth into a series of pointed or round pleats under certain temperature and humidity conditions by using certain pressure. In addition to hand pleating, clamp ironing machine or iron pressing, there is also a special pleating equipment.

[0003] According to the public patent 202322440473.0 a clothing fabric is pressed and folded device can know, including base, the top of base is installed with support, the middle part of support is installed with lifting rod, the end of lifting rod is connected with pressing plate, the top of pressing plate both sides is provided with guide rod, the bottom of pressing plate is installed with upper folding plate, the top of pressing plate is provided with heating module, the lower part of pressing plate is provided with mounting mechanism;Through setting up mounting mechanism, the whole cloth can be pressed and folded by the folding mark between the upper folding plate and the lower folding plate on the top, and the upper folding plate on the top is provided with a heating module. Only need to place the cloth on the top of the lower folding plate, and drive the pressing plate to rise and fall by controlling the lifting rod, it is convenient to press and fold, ensure the effect of equipment use, ensure that the equipment can stably and conveniently fold, without manual folding, save time and effort.

[0004] However, in the process of use, the traditional polyester woven cloth wrinkle forming device usually adopts the way of directly pressing the upper folding plate on the lower folding plate to apply pressure to the cloth. This pleating method relies on the pressure to form the pleat, but in actual operation, when the upper folding plate applies excessive pressure to the lower folding plate, the cloth will be stretched and extruded excessively. This excessive effect not only easily leads to the breakage or deformation of the cloth fiber, but also may damage the overall structure of the cloth, affecting the quality and use performance of the cloth. Especially for polyester woven cloth, which is a synthetic fiber material, its tensile and compression deformation resistance is relatively weak, so it is more easily affected by excessive pressure. On the contrary, if the pressure of the upper folding plate on the lower folding plate is too small, the forming effect of the pleat will not be obvious, and the depth, uniformity and stability of the pleat will be affected, which cannot meet the requirements of production process and product quality. Therefore, it is necessary to design a new technical scheme to solve the problem. UTILITY MODEL CONTENTS

[0005] The utility model discloses a purpose at overcoming prior art's insufficient, adapting reality needs, provide a kind of terylene woven cloth wrinkle forming device, to solve current traditional terylene woven cloth wrinkle forming device, usually adopt the way of upper folding plate directly compressing lower folding plate to exert pressure on cloth and fold, this pressure fold method relies on the pressure exerted to form crease, but in actual operation, when upper folding plate exerts excessive pressure on lower folding plate, cloth can be subjected to excessive stretching and extrusion, this excessive effect not only easily leads to the rupture or deformation of cloth fiber, also possibly damage the overall structure of cloth, affect the quality and service performance of cloth, especially for terylene woven cloth this synthetic fiber material, the tensile and compression deformation resistance is relatively weak, thus more easily affected by excessive pressure, on the contrary, if the pressure of upper folding plate on lower folding plate is too small, the forming effect of wrinkle will not be obvious, the depth, uniformity and stability of wrinkle will be affected, cannot satisfy the technical problem of production process and product quality requirement.

[0006] In order to realize the purpose of the utility model, the technical scheme adopted by the utility model is: a terylene woven cloth wrinkle forming device is designed, which comprises a device bottom plate, support plate bodies are installed at the top of the device bottom plate and at the front and rear ends, a control host is installed on the surface of the support plate body at the front end, a rotating roller is rotatably installed between the two support plate bodies, support rods are fixed at the top of the two sides of the support plate body, a device top plate is fixed at the top of the support rods, a first telescopic cylinder body is installed at the bottom of the device top plate, a second telescopic cylinder body is installed at the top of the device bottom plate, and a wrinkle assembly is arranged between the first telescopic cylinder body and the second telescopic cylinder body.

[0007] Preferably, the wrinkle assembly comprises a fixed plate body, a fixed shell, a square hole, a motor, a threaded rod, a hinge, a moving plate body, metal spring sheets, and a conical pressing block.

[0008] Preferably, the fixed shell is installed at the top of the second telescopic cylinder body, a plurality of metal spring sheets are arranged on the surface of the fixed shell, the metal spring sheets are connected by hinges, and the bottom of the metal spring sheets at both ends is fixed with a moving plate body.

[0009] Preferably, the bottom of the moving plate body passes through the square hole arranged on the surface of the fixed shell and extends into the fixed shell, a threaded rod penetrates one end of the moving plate body in the fixed shell, opposite threads are arranged on the surface of the threaded rod, and the threads are connected with the screw holes in the moving plate body.

[0010] Preferably, a bearing is rotatably connected to one end of the threaded rod, a motor is connected to the other end of the threaded rod through the fixed shell, and the motor is installed at the front end of the fixed shell.

[0011] Preferably, the fixed plate body is installed at the bottom of the first telescopic cylinder body, and a plurality of conical pressing blocks are installed at the bottom of the fixed plate body.

[0012] Preferably, the metal spring surface is provided with a groove, and an electric heating wire is arranged in the groove.

[0013] Preferably, a water tank is arranged on the other side between the two support plate bodies, a mesh is arranged on the top of the water tank, and an electric heating pipe is arranged in the water tank; one end of a drain pipe is communicated with the bottom of the water tank, and a pipe cover is detachably connected to the other end of the drain pipe.

[0014] Compared with the prior art, the utility model has the beneficial effects that:

[0015] 1. The utility model discloses a device bottom plate, telescopic cylinder body and the combination of wrinkle assembly, utilize first telescopic cylinder body to drive a plurality of conical pressure blocks, and the cloth is guided into and is pressed into between a group of closely arranged multiple metal springs, then, the device will exert pressure on these metal springs from both sides, can make the metal spring compress deformation when being subjected to external force, with the compression of the metal spring, will be closely attached and extruded from the side cloth, thereby forming the deep and uniform wrinkle, this kind of pressure creasing method avoids the condition that the cloth is stretched and damaged due to directly exerting excessive pressure in traditional method, through the elastic deformation and side extrusion of the metal spring, the cloth can form clear, beautiful wrinkle effect while keeping its original texture and elasticity, not only improves the quality and stability of pressure creasing, but also effectively prolongs the service life of the cloth and keeps its good appearance performance, solve traditional polyester shute cloth wrinkle formation device, usually adopt the way of upper folding plate directly pressing lower folding plate to exert pressure creasing effect on cloth, this kind of pressure creasing method relies on the pressure to form the wrinkle, but in actual operation, when the upper folding plate exerts excessive pressure on the lower folding plate, the cloth will be subjected to excessive stretching and extrusion, this excessive effect not only easily leads to the breakage or deformation of cloth fiber, but also can damage the overall structure of the cloth, influence the quality and use performance of the cloth, especially for polyester shute cloth this synthetic fiber material, its tensile and compression deformation resistance is relatively weak, therefore, is more susceptible to excessive pressure, on the contrary, if the pressure of the upper folding plate on the lower folding plate is too small, the forming effect of the wrinkle will not be obvious, and the depth, uniformity and stability of the wrinkle will be affected, cannot satisfy the production process and product quality requirement technical problem.

[0016] 2.The utility model discloses a combination of metal spring, groove and electric heating wire, groove is arranged on the surface of multiple metal springs, and electric heating wire is embedded in the groove, when the metal spring extrudes the cloth, the electric heating wire can conduct heat to the metal spring, in the extrusion process, the heated metal spring not only exerts physical pressure on the cloth, but also transmits heat to the cloth, the combination of heating and extrusion makes the cloth receive heat while receiving pressure, thereby promoting the setting effect of the cloth, since multiple metal springs are closely attached to the pleated surface of the cloth, heat can be uniformly transmitted to each pleated surface of the cloth, and the uniform heating and setting effect makes the formed pleats of the cloth more clear and durable, further improving the overall effect of pleating.

[0017] 3.The utility model discloses a combination of water tank, electric heating tube and screen, when the cloth passes through the pleat component, the electric heating tube is used to heat the water in the water tank, thereby generating hot steam, the hot steam rises and contacts the surface of the cloth, and the cloth is softened, through the softening effect of the hot steam, the fiber of the cloth becomes more flexible and is more likely to form clear pleats under the action of the pleating element such as the metal spring, and meanwhile, the softened cloth can better adapt to the shape change in the pleating process, reducing the situation of uneven pleats or damage caused by the stiffness of the cloth. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the overall structure schematic diagram of the utility model;

[0019] Figure 2 It is the pleat component structure schematic diagram of the utility model;

[0020] Figure 3 It is the groove structure schematic diagram of the utility model;

[0021] Figure 4 It is the water tank overall structure schematic diagram of the utility model.

[0022] In the drawing: 1, device bottom plate;101, support plate body;102, control host computer;103, support rod;104, device top plate;105, rotating roller;2, first telescopic cylinder body;201, fixed plate body;202, second telescopic cylinder body;203, fixed shell;204, motor;205, threaded rod;206, bearing;207, square hole;208, moving plate body;209, metal spring;210, hinge;211, conical pressing block;212, groove;213, electric heating wire;3, water tank;301, electric heating tube;302, screen;303, drain pipe;304, pipe cover. DETAILED DESCRIPTION

[0023] The utility model is further illustrated in connection with the drawings and examples as follows:

[0024] Example 1: A creasing device for polyester woven fabric, see Figures 1 to 4, including device bottom plate 1, device bottom plate 1 top front and rear ends are provided with support plate body 101, the surface of the support plate body 101 located at the front end is provided with control host 102, rotatable installation is arranged between the two support plate bodies 101 on one side with rotating roller 105, the top of both sides of support plate body 101 is fixed with support rod 103, the top of support rod 103 is fixed with device top plate 104, the bottom of device top plate 104 is provided with first telescopic cylinder body 2, the top of device bottom plate 1 is provided with second telescopic cylinder body 202, the first telescopic cylinder body 2 and the second telescopic cylinder body 202 are provided with wrinkle assembly, when the equipment is in the initial state, the cloth is located between the fixed plate body 201 and the fixed shell 203, next, start the first telescopic cylinder body 2, the first telescopic cylinder body 2 will drive multiple conical pressing blocks 211 to move to the bottom, guide the cloth into and press into a group of closely arranged multiple metal springs 209, after the cloth is successfully guided into the metal spring 209 group, next, open the motor 204, drive the threaded rod 205 to rotate, the surface of the threaded rod 205 is provided with opposite threads, when the threaded rod 205 rotates, it will simultaneously drive the two moving plate bodies 208 to move in opposite directions, the two moving plate bodies 208 are respectively located on both sides of the metal spring 209, and the metal spring 209 is subjected to pressure, with the movement of the moving plate body 208, the metal spring 209 starts to be compressed and deformed, at the same time, the metal spring 209 is connected through the hinge 210, this connection mode enables the metal spring 209 to adjust the shape more flexibly when subjected to pressure, assisting multiple metal springs 209 to compress, with the compression of the metal spring 209, it will closely adhere and extrude the cloth from the side, this extrusion makes the cloth form a deep and uniform crease under the pressure of the metal spring 209, because the metal spring 209 is closely and uniformly arranged, the formed crease also has consistency and beauty, avoiding the damage of the cloth caused by directly applying excessive pressure in the traditional method, in the traditional method, the way of directly applying pressure to the cloth is often used to form the crease, this way is easy to cause the cloth to stretch and deform or even damage when subjected to excessive pressure, but in the equipment, through the compression deformation and side extrusion of the metal spring 209, the cloth can form clear and beautiful wrinkle effect while maintaining its original texture and elasticity, this compression creasing method not only improves the quality and stability of the compression creasing, but also effectively prolongs the service life of the cloth and maintains its good appearance,The ability of the anti-stretching and compression deformation is relatively weak, so it is more susceptible to excessive pressure, on the contrary, if the pressure of the upper folding plate to the lower folding plate is too small, the effect of forming the pleats will not be obvious, the depth, uniformity and stability of the pleats will be affected, which cannot meet the requirements of production process and product quality.

[0025] Specifically, referring to Figure 2 , the pleat assembly comprises a fixed plate body 201, a fixed shell 203, a square hole 207, a motor 204, a threaded rod 205, a hinge 210, a moving plate body 208, a metal spring piece 209, and a conical pressing block 211.

[0026] More specifically, referring to Figure 2 , the fixed shell 203 is installed on the top of the second telescopic cylinder body 202, and a plurality of metal spring pieces 209 are arranged on the surface of the fixed shell 203. The plurality of metal spring pieces 209 are connected by the hinge 210, and the moving plate body 208 is fixed to the bottom of the metal spring piece 209 at both ends.

[0027] Further, referring to Figure 2 , the moving plate body 208 penetrates through the square hole 207 arranged on the surface of the fixed shell 203 and extends into the fixed shell 203. One end of the moving plate body 208 in the fixed shell 203 penetrates the threaded rod 205, and the surface of the threaded rod 205 is provided with opposite threads connected with the screw hole in the moving plate body 208.

[0028] Still further, referring to Figure 2 , one end of the threaded rod 205 is rotatably connected with the bearing 206, and the other end of the threaded rod 205 is connected with the motor 204 penetrating through the fixed shell 203, and the motor 204 is installed on the front end of the fixed shell 203.

[0029] It is worth noting that, referring to Figure 2 , the fixed plate body 201 is installed on the bottom of the first telescopic cylinder body 2, and a plurality of conical pressing blocks 211 are installed on the bottom of the fixed plate body 201.

[0030] It is worth noting that, referring to Figure 3The surface of the metal elastic sheet 209 is provided with a groove 212, and the electric heating wire 213 is installed in the groove 212. When the metal elastic sheet 209 extrudes the cloth, the electric heating wire 213 is started to heat. The electric heating wire 213 is connected with an external temperature controller (for example, an XMT-3000 intelligent digital display temperature controller) to realize accurate control of the temperature of the electric heating wire 213. The electric heating wire 213 conducts heat to the metal elastic sheet 209, so that the metal elastic sheet 209 not only extrudes the cloth but also transmits heat to the cloth. The combination of heating and extrusion makes the cloth not only bear pressure but also receive heat. The heat promotes the softening of the fibers of the cloth, so that the cloth is more easily formed into clear wrinkles under the pressure of the metal elastic sheet 209. Since the multiple metal elastic sheets 209 are closely attached to the wrinkle-pressed surface of the cloth, heat can be uniformly transmitted to each wrinkle-pressed surface of the cloth. The uniform heating and setting make the wrinkles of the cloth more clear and durable. Compared with the traditional wrinkle-pressing method, the combination of heating and extrusion avoids the stretching damage of the cloth caused by directly applying excessive pressure, and further improves the overall effect of wrinkle pressing.

[0031] It is worth mentioning that, referring to Figure 4 The other side between the two support plate bodies 101 is provided with a water tank 3. The top of the water tank 3 is provided with a mesh 302, and an electric heating tube 301 is installed in the inside. One end of a drain pipe 303 is communicated with the bottom of the water tank 3, and the other end of the drain pipe 303 is detachably connected with a pipe cover 304. Before the cloth passes through the wrinkle assembly, the electric heating tube 301 is started. The electric heating tube 301 is connected with an external temperature controller (for example, an XMT-3000 intelligent digital display temperature controller) to realize accurate control of the temperature of the electric heating tube 301. The electric heating tube 301 is located in the water tank 3 and functions to heat the water in the water tank 3. When the electric heating tube 301 is started, the generated heat is rapidly transmitted to the water in the water tank 3, so that the water temperature gradually rises. As the water temperature rises, the water begins to boil and generate hot steam. The hot steam rises through the opening at the top of the water tank 3 and contacts the surface of the cloth to start softening the cloth. The high temperature of the hot steam makes the cloth fibers absorb heat and become more flexible. The interaction between the softened cloth fibers is weakened, so that the cloth is more easily deformed under external force. This softening effect provides favorable conditions for the subsequent wrinkle pressing process, so that the cloth is more easily formed into clear wrinkles under the action of the wrinkle pressing elements such as the metal elastic sheet 209.

[0032] In the use of a polyester woven fabric creasing device, when the equipment is in the initial state, the cloth is located between the fixed plate body 201 and the fixed shell 203. Next, start the first telescopic cylinder 2, which will drive the multiple conical pressing blocks 211 to move towards the bottom, guiding and pressing the cloth into a group of closely arranged multiple metal springs 209. After the cloth is successfully introduced into the metal spring 209 group, next, open the motor 204 to drive the threaded rod 205 to rotate. The surface of the threaded rod 205 is provided with opposite threads. When the threaded rod 205 rotates, it will simultaneously drive the two moving plate bodies 208 to move in opposite directions. These two moving plate bodies 208 are respectively located on both sides of the metal spring 209, exerting pressure on the metal spring 209. With the movement of the moving plate body 208, the metal spring 209 begins to be compressed and deformed. At the same time, the metal springs 209 are connected by hinges 210, which allows the metal springs 209 to adjust their shape more flexibly when subjected to pressure, assisting multiple metal springs 209 in compression. With the compression of the metal spring 209, it will closely adhere and extrude the cloth from the side. This extrusion makes the cloth form deep and uniform creases under the pressure of the metal spring 209. Because the metal springs 209 are closely arranged and uniform, the creases formed are also consistent and beautiful, avoiding the damage to the cloth caused by directly applying excessive pressure in the traditional method. In the traditional method, a direct pressure method is often used to form creases, which easily leads to stretching and even damage of the cloth when it is subjected to excessive pressure. In this device, through the compression deformation and side extrusion of the metal spring 209, the cloth can form clear and beautiful creases while maintaining its original texture and elasticity. This compression method not only improves the quality and stability of the compression, but also effectively prolongs the service life of the cloth and maintains its good appearance. While the metal spring 209 is extruding the cloth, the electric heating wire 213 is started. The electric heating wire 213 is connected with the external temperature controller (model such as XMT-3000 intelligent digital display temperature controller) to realize accurate control of the temperature of the electric heating wire 213. The electric heating wire 213 conducts heat to the metal spring 209, so that the metal spring 209 not only extrudes the cloth but also transfers heat to it. This combination of heating and extrusion allows the cloth to be subjected to heat as well as pressure, which softens the fibers of the cloth and makes it easier to form clear creases under the pressure of the metal spring 209. Since the multiple metal springs 209 are closely attached to the cloth, heat can be evenly transferred to every creasing surface of the cloth. This uniform heating and setting action makes the cloth form clearer and more durable creases. Compared with the traditional compression method, this heating and extrusion combined compression method avoids the stretching and damage of the cloth caused by directly applying excessive pressure, further improving the overall effect of the compression.

[0033] In addition, the components designed in the utility model are all general standard components or components known by the person skilled in the art, the structure and principle of which can be known by the person skilled in the art through a technical manual or through a conventional experimental method, and the person skilled in the art can completely realize it without redundancy, and the content protected by the utility model does not involve improvement of the internal structure and method.

[0034] The utility model discloses the better embodiment, but is not limited to this, and the person skilled in the art, the person skilled in the art, very easily according to the above embodiment, the spirit of the utility model is appreciated, and different is drawn and changes, but as long as not departing from the spirit of the utility model, all are within the protection scope of the utility model.

Claims

1. A device for creasing a woven polyester fabric, comprising a device base plate (1), characterized in that, The device bottom plate (1) top front and back both ends are provided with support plate body (101), the surface of support plate body (101) located at the front is provided with control host (102), rotatable is installed between two support plate body (101) one side and has rotating roller (105), the top of support plate body (101) both sides are fixed with support rod (103), the top of support rod (103) is fixed with device top plate (104), the bottom of device top plate (104) is installed with first telescopic cylinder body (2), the top of device bottom plate (1) is installed with second telescopic cylinder body (202), be provided with wrinkle subassembly between first telescopic cylinder body (2) and second telescopic cylinder body (202), the wrinkle subassembly includes fixed plate body (201), fixed shell (203), square hole (207), motor (204), threaded rod (205), hinge (210), moving plate body (208), metal spring piece (209), conical compression block (211), the top of fixed shell (203) is installed on second telescopic cylinder body (202), the surface of fixed shell (203) is provided with multiple metal spring piece (209), multiple metal spring piece (209) are connected through hinge (210) between them, the bottom of metal spring piece (209) located at both ends is fixed with moving plate body (208), the bottom of moving plate body (208) passes through the square hole (207) of being set up on the surface of fixed shell (203), and extends into fixed shell (203), one end of moving plate body (208) in fixed shell (203) is penetrated with threaded rod (205), and the surface of threaded rod (205) is provided with opposite thread, and the screw hole in moving plate body (208) is connected with thread, one end of threaded rod (205) is rotatably connected with bearing (206), the other end of threaded rod (205) passes through fixed shell (203) and is connected with motor (204), and motor (204) is installed on the front end of fixed shell (203), the bottom of fixed plate body (201) is installed with multiple conical compression block (211).

2. The polyester woven fabric creping device according to claim 1, wherein The surface of metal spring piece (209) is provided with groove (212), and the inside of groove (212) is installed with electric heating wire (213).

3. The polyester woven fabric creping device according to claim 1, wherein The other side between two support plate body (101) is installed with water tank (3), and the top of water tank (3) is installed with screen (302), and the inside is installed with electric heating tube (301), the bottom of water tank (3) is communicated with one end of drain pipe (303), and the other end of drain pipe (303) is detachably connected with pipe cover (304).

Citation Information

Patent Citations

  • Pleating device for garment materials

    CN220813203U