Winding device for textile fabric
By introducing an antistatic roller brush and a dust collection system into the fabric winding device, the problem of cleaning impurities on the fabric surface has been solved, improving the product's appearance and cleaning effect.
Patent Information
- Application Number
- CN202520554738.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-03-27
AI Technical Summary
Traditional fabric winding devices are not convenient for cleaning surface particulate impurities, resulting in a decrease in the product's appearance.
It employs an anti-static roller brush and a dust collection device. The anti-static roller brush made of nylon fiber removes static electricity and cleans dust. At the same time, the dust collection hood and fan generate negative pressure to adsorb impurities, and the adjustment device increases the dust collection range.
It improves the cleanliness of the fabric surface, avoids friction damage, and enhances the cleaning effect and the stability of the device.
Smart Images

Figure CN223892081U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of textile fabric winding technology, and in particular to a textile fabric winding device. Background Technology
[0002] Textile technology is the core link in textile fabric production, mainly including complex processes such as spinning, weaving, dyeing, printing, embroidery, and finishing. Among them, spinning is the process of processing fiber raw materials into yarn, while weaving is the process of interlacing yarn into fabric according to certain rules. With the development of modern industry, textile technology has been continuously improved and innovated, which has significantly improved the production efficiency and quality of textile fabrics.
[0003] During the production process, textile fabrics need to be wound up by a winding device. Traditional fabric winding machines typically consist of a motor, winding rollers, and a tension control system. The motor provides power to drive the winding rollers to rotate, and the winding rollers are responsible for winding the fabric. The tension control system ensures that the fabric maintains constant tension during the winding process, preventing the fabric from becoming loose or overstretched.
[0004] During the production of textiles, multiple processes are involved, which causes tiny particulate impurities to float in the air inside the workshop. In addition, due to the static electricity generated by the machines, some particulate impurities will adhere to the textiles being wound up. Since the winding device is not convenient for cleaning particulate impurities from the surface of the textiles, these impurities tend to stick to the surface of the textiles and easily form stains or spots, thereby reducing the appearance of the product. Utility Model Content
[0005] The purpose of this invention is to solve the problem that existing fabric winding devices are not convenient for cleaning dust, thus reducing the aesthetics of the product, and to propose a textile fabric winding device.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A textile fabric winding device includes a frame with a winding roller mounted on top, and further includes: an antistatic brush installed inside the frame, wherein the frame is provided with a drive component for driving the antistatic brush and the winding roller to rotate; and a dust suction hood installed inside the frame, wherein the frame is provided with an adsorption component for generating a continuous negative pressure inside the dust suction hood and an adjustment component for driving the dust suction hood to swing up and down.
[0008] In order to drive the antistatic brush and the take-up roller to rotate simultaneously, preferably, the driving component includes a motor fixedly mounted on the frame. The output end of the motor is respectively fitted with a second gear and a first synchronous pulley. The second gear is meshed with the first gear. The first gear is fixedly fitted on the take-up roller. The first synchronous pulley is drivenly connected to the second synchronous pulley. The second synchronous pulley is fixedly connected to the antistatic brush.
[0009] For adsorbing and collecting dust on the surface of textile fabrics, preferably, the adsorption component includes a fan fixedly installed on the frame, the input end of the fan is fixedly connected to a dust collection shell, a filter element is fixedly installed inside the dust collection shell, and the air inlet end of the dust collection shell is fixedly connected to a dust suction hood.
[0010] To secure the dust collection housing, preferably, a limiting bracket is fixedly installed on the frame, and the limiting bracket is snapped onto the surface of the dust collection housing.
[0011] To increase the suction range of the dust hood, preferably, the adjusting component includes: a first cam, fixedly installed at the end of the antistatic roller brush away from the second synchronous wheel; a round rod, rotatably installed inside the frame, the dust hood being fixedly connected to the round rod, one end of the round rod extending outside the frame and fixedly connected to a second cam, the protruding point of the second cam contacting the protruding point of the first cam, wherein a first torsion spring is provided on one side of the second cam and fixedly connected to the frame and the second cam.
[0012] In order to reset the dust hood, preferably, a circular plate is fixedly connected to the end of the circular rod away from the second cam, and a second torsion spring is provided on one side of the circular plate, which is fixedly connected to the frame and the circular plate.
[0013] Compared with the prior art, the present invention provides a winding device for textile fabrics, which has the following beneficial effects:
[0014] 1. The textile fabric winding device uses an antistatic roller brush made of nylon fiber to add an antistatic agent to its surface, which not only achieves the effect of eliminating static electricity, but also avoids friction damage to the textile fabric, thereby improving the safety of cleaning the textile fabric.
[0015] 2. The fabric winding device, through the cooperation of a circular plate and a second torsion spring, can reset and adjust the dust collection hood, thereby improving its stability in use.
[0016] The parts not mentioned in this device are the same as or can be implemented using existing technology. This utility model drives the winding roller and the antistatic brush to rotate through the driving component, which can simultaneously wind up the textile fabric and clean the dust adhering to the surface of the textile fabric. In addition, the angle of the dust collection hood can be adjusted by the adjusting component to increase the dust collection range, thereby improving the cleaning quality of the dust on the surface of the textile fabric. Attached Figure Description
[0017] Figure 1 This is a first-view isometric structural diagram of a textile fabric winding device proposed in this utility model.
[0018] Figure 2 This is a second-view isometric structural diagram of a textile fabric winding device proposed in this utility model.
[0019] Figure 3 This is a partial isometric structural diagram of a textile fabric winding device proposed in this utility model;
[0020] Figure 4 This is a schematic diagram of the antistatic roller brush structure of a textile fabric winding device proposed in this utility model.
[0021] Figure 5 This is a cross-sectional schematic diagram of the dust collection hood structure of a textile fabric winding device proposed in this utility model;
[0022] Figure 6 This utility model proposes a winding device for textile fabrics. Figure 5 Enlarged view of the structure at point A in the middle.
[0023] In the diagram: 1. Frame; 2. Take-up roller; 3. Antistatic brush; 4. Dust hood; 5. First gear; 6. Motor; 61. Second gear; 62. First synchronous pulley; 63. Second synchronous pulley; 7. Fan; 71. Dust collection shell; 72. Filter element; 8. Limiting frame; 9. First cam; 91. Round rod; 92. Second cam; 93. First torsion spring; 94. Round plate; 95. Second torsion spring. 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 of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0025] In the description of this utility model, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0026] Example:
[0027] Reference Figures 1-6A textile fabric winding device includes a frame 1 and a winding roller 2 mounted on the frame 1. It also includes an antistatic roller brush 3 mounted inside the frame 1. The bristles of the antistatic roller brush 3 are made of nylon fiber, and an antistatic agent is added to its surface to achieve the effect of eliminating static electricity and preventing friction damage to the textile fabric. The frame 1 is equipped with a drive component for driving the antistatic roller brush 3 and the winding roller 2 to rotate. A dust collection hood 4 is mounted inside the frame 1. The frame 1 is equipped with an adsorption component that generates continuous negative pressure inside the dust collection hood 4 and an adjustment component that drives the dust collection hood 4 to swing up and down.
[0028] Specifically, by driving the winding roller 2 and the antistatic brush 3 to rotate, the textile fabric can be wound up while the dust adhering to the surface of the textile fabric is cleaned. Furthermore, by adjusting the angle of the dust suction hood 4 using the adjusting component, the dust suction range can be increased, thereby improving the cleaning quality of the dust on the surface of the textile fabric.
[0029] The driving component includes a motor 6, which is fixedly mounted on the frame 1. The output end of the motor 6 is respectively fitted with a second gear 61 and a first synchronous pulley 62. A first gear 5 is meshed on the second gear 61. The first gear 5 is fixedly fitted on the take-up roller 2. A second synchronous pulley 63 is connected to the first synchronous pulley 62 via a belt drive. The second synchronous pulley 63 is fixedly connected to the antistatic roller brush 3.
[0030] Specifically, by setting up a driving component, when the output end of the motor 6 rotates, it can simultaneously drive the winding roller 2 and the antistatic brush 3 to rotate, thereby achieving both high winding efficiency and high cleaning quality for the textile fabric.
[0031] The adsorption component includes a fan 7, which is fixedly mounted on the frame 1. The input end of the fan 7 is fixedly connected to a dust collection shell 71 via a hose. A filter element 72 is fixedly installed inside the dust collection shell 71. The filter element 72 is conical. The air inlet end of the dust collection shell 71 is fixedly connected to a dust suction hood 4 via a hose. A limit frame 8 is fixedly mounted on the frame 1 and is snapped onto the surface of the dust collection shell 71.
[0032] Specifically, by setting up an adsorption component, the fan 7 draws air into the dust collection shell 71, creating a negative pressure inside. This allows dust from the surface of the textile fabric to be drawn into the dust collection shell 71. The conical filter element 72 helps to create a vortex effect in the airflow. When air passes through the conical filter element 72, the airflow rotates due to the cone's guidance. This rotation helps to capture fine particles and impurities more effectively. At the same time, the limiting frame 8 improves the stability of the dust collection shell 71 during use.
[0033] The adjusting component includes a first cam 9, which is fixedly installed at the end of the antistatic roller brush 3 away from the second synchronous wheel 63; a round rod 91 rotatably installed inside the frame 1; a dust collection hood 4 is fixedly connected to the round rod 91; one end of the round rod 91 extends through to the outside of the frame 1 and is fixedly connected to a second cam 92; the protruding point of the second cam 92 contacts the protruding point of the first cam 9; a first torsion spring 93 is provided on one side of the second cam 92 and is fixedly connected to the frame 1 and the second cam 92; a round plate 94 is fixedly connected to the end of the round rod 91 away from the second cam 92; and a second torsion spring 95 is provided on one side of the round plate 94 and is fixedly connected to the frame 1 and the round plate 94.
[0034] Specifically, by setting an adjusting component, when the driving component drives the antistatic roller brush 3 to rotate, the first cam 9 rotates with the antistatic roller brush 3 and will push the second cam 92 to rotate. The angle of the dust collection hood 4 can be adjusted by the second cam 92, which can increase the dust collection range and improve the dust removal quality of textile fabrics. In addition, the dust collection hood 4 can be reset by the cooperation of the circular plate 94 and the second torsion spring 95 to improve the stability of its angle adjustment.
[0035] Working principle: When in use, the operator starts the motor 6 using an external control switch. When the output end of the motor 6 rotates, it drives the second gear 61 and the first synchronous pulley 62 to rotate. When the second gear 61 rotates, it drives the first gear 5 and the winding roller 2 to rotate, which can perform winding processing on the textile fabric. When the first synchronous pulley 62 rotates, it drives the belt to drive the transmission. When the belt drives the transmission, it drives the second synchronous pulley 63 to rotate. When the second synchronous pulley 63 rotates, it drives the antistatic roller brush 3 to rotate. The antistatic roller brush 3 can clean the particulate dust and impurities adhering to the surface of the textile fabric.
[0036] Meanwhile, during the cleaning process, the staff used an external control switch to start the fan 7. The fan 7 draws air into the dust collection shell 71, making it negative pressure. At this time, under the influence of the negative pressure inside the dust collection shell 71, the air intake of the dust suction hood 4 draws air to the bottom, which can suck impurities on the surface of the textile fabric into the dust collection shell 71.
[0037] Furthermore, during the cleaning process, the antistatic roller brush 3 will drive the first cam 9 to rotate. Since the protrusion of the second cam 92 is located above the protrusion of the first cam 9, the rotation of the first cam 9 will cause the second cam 92 to rotate. When the second cam 92 rotates, it will squeeze the first torsion spring 93 and drive the round rod 91 to rotate. When the round rod 91 rotates, it will drive the dust cover 4 to rotate. When the first cam 9 disengages from the second cam 92, the reaction force of the first torsion spring 93 can reset the round rod 91 and the dust cover 4, so that the dust cover 4 can swing up and down, thereby increasing the dust collection range of the dust cover 4.
[0038] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A winding device for textile fabric, comprising a frame (1) with a winding roller (2) mounted on its top, characterized in that, Also includes: An antistatic roller brush (3) is installed inside the frame (1). The frame (1) is provided with a drive unit for driving the antistatic brush (3) and the take-up roller (2) to rotate; A dust collection hood (4) is installed inside the frame (1). The frame (1) is provided with an adsorption component for generating a continuous negative pressure inside the dust collection hood (4) and an adjustment component for driving the dust collection hood (4) to swing up and down.
2. The textile fabric winding device according to claim 1, characterized in that, The driving component includes a motor (6) fixedly mounted on the frame (1). The output end of the motor (6) is respectively fitted with a second gear (61) and a first synchronous pulley (62). The second gear (61) is meshed with a first gear (5). The first gear (5) is fixedly mounted on the take-up roller (2). The first synchronous pulley (62) is driven by a second synchronous pulley (63). The second synchronous pulley (63) is fixedly connected to the antistatic roller brush (3).
3. The textile fabric winding device according to claim 1, characterized in that, The adsorption component includes a fan (7) fixedly installed on the frame (1), the input end of the fan (7) is fixedly connected to a dust collection shell (71), a filter element (72) is fixedly installed inside the dust collection shell (71), and the air inlet end of the dust collection shell (71) is fixedly connected to the dust collection hood (4).
4. The textile fabric winding device according to claim 1, characterized in that, A limiting frame (8) is fixedly installed on the frame (1), and the limiting frame (8) is snapped onto the surface of the dust collection shell (71).
5. A winding device for textile fabric according to claim 1, characterized in that, The adjusting components include: The first cam (9) is fixedly installed at the end of the antistatic roller brush (3) away from the second synchronous wheel (63); A round rod (91) is rotatably mounted inside the frame (1). The dust hood (4) is fixedly connected to the round rod (91). One end of the round rod (91) extends through the frame (1) and is fixedly connected to a second cam (92). The protruding point of the second cam (92) contacts the protruding point of the first cam (9). The second cam (92) is provided with a first torsion spring (93) on one side, which is fixedly connected to the frame (1) and the second cam (92).
6. A winding device for textile fabric according to claim 5, characterized in that, A circular plate (94) is fixedly connected to one end of the rod (91) away from the second cam (92), and a second torsion spring (95) is provided on one side of the circular plate (94) and fixedly connected to the frame (1) and the circular plate (94).