CN-224199661-U - Anti-pilling function knitting belt surface treatment device
Abstract
The utility model belongs to the technical field of knitting belt processing and discloses a surface processing device with a pilling prevention function, which comprises a device shell, wherein a feed inlet is arranged on the device shell, a discharge outlet is arranged below the device shell, two groups of guide rollers are arranged in the device shell corresponding to the feed inlet and the discharge outlet, one side of each of the two groups of guide rollers is provided with a circular arc thermal head capable of horizontally moving, an adjustable depth component for driving the circular arc thermal head to move and a high-precision positioning component for detecting the position of the circular arc thermal head are arranged in the device shell, each circular arc thermal head comprises a circular arc hot plate, a structural block and a motion base block, and each adjustable depth component comprises a screw rod fixing plate, a motor fixing plate, a threaded screw rod, a servo motor, a screw rod motion block and a plurality of groups of guide rods.
Inventors
- LIU TAO
Assignees
- 成都市利友纺织有限公司
Dates
- Publication Date
- 20260505
- Application Date
- 20250519
Claims (5)
- 1. The utility model provides a prevent function of pilling knitting area surface treatment device, includes device shell (1), is provided with the feed inlet on device shell (1), is provided with the discharge gate below device shell (1), wherein, correspond feed inlet and discharge gate department in device shell (1) and be provided with two sets of guide rolls (2), one side of two sets of guide rolls (2) is provided with but horizontal migration's circular arc thermal head (4), is provided with adjustable advance deep subassembly (3) and high accurate positioning subassembly (5) of detection circular arc thermal head (4) position of the motion of drive circular arc thermal head (4) in device shell (1).
- 2. The surface treatment device for the anti-pilling functional knitted belt is characterized in that the arc thermal head (4) comprises an arc hot plate (6), a structural block (7) and a motion base block (8), the arc hot plate (6) is arranged on one side, close to the guide roller (2), of the structural block (7), heating resistance wires are arranged in the structural block (7), and the motion base block (8) is connected on one side, away from the arc hot plate (6), of the structural block (7).
- 3. The anti-pilling functional knitted belt surface treatment device according to claim 2, wherein the adjustable deep-feeding component (3) comprises a screw rod fixing plate (9), a motor fixing plate (10), a threaded screw rod (11), a servo motor (12), a screw rod moving block (13) and a plurality of groups of guide rods (14), the screw rod fixing plate (9) and the motor fixing plate (10) are fixedly installed in a device shell (1), the threaded screw rod (11) is arranged between the screw rod fixing plate (9) and the motor fixing plate (10), the threaded screw rod (11) is in bearing connection with the screw rod fixing plate (9) and the motor fixing plate (10), the servo motor (12) is fixedly installed on the motor fixing plate (10), the servo motor (12) is coaxially connected with the threaded screw rod (11), the screw rod moving block (13) is in threaded connection with the threaded screw rod moving block (11), the plurality of groups of guide rods (14) are fixedly connected with the screw rod fixing plate (9) and the motor fixing plate (10), and the plurality of groups of guide rods (14) penetrate through the screw rod moving block (13).
- 4. The surface treatment device for the anti-pilling functional knitted belt is characterized in that two groups of support sliding rods (15) are arranged on two sides of the motion base block (8), support sliding blocks (16) are arranged on the inner wall of the device shell (1) corresponding to the support sliding rods (15), the support sliding rods (15) are in sliding connection with the support sliding blocks (16), and a high-precision positioning component (5) is arranged on one group of support sliding rods (15).
- 5. The anti-pilling functional knitted belt surface treatment device according to claim 4, wherein the high-precision positioning assembly (5) comprises an electrode slice fixing block (17), an electric brush head (18), a first electrode slice (19), a second electrode slice (20) and a detection circuit assembly (21), the electric brush head (18) is fixedly installed on the support sliding rod (15), the electrode slice fixing block (17) is arranged on the device shell (1) corresponding to the electric brush head (18), the first electrode slice (19) and the second electrode slice (20) are installed on the electrode slice fixing block (17), the electric brush head (18) is clamped between the first electrode slice (19) and the second electrode slice (20) in a sliding mode, the electric brush head (18) is electrically connected with the first electrode slice (19) and the second electrode slice (20), and the detection circuit assembly (21) is arranged on one side of the first electrode slice (19) and one side of the second electrode slice (20).
Description
Anti-pilling function knitting belt surface treatment device Technical Field The utility model relates to the technical field of knitting belt processing, in particular to a surface treatment device for a knitting belt with a pilling prevention function. Background The knitted belt is widely applied to the fields of clothing, bags and industry by virtue of softness, elasticity and decoration, but the problem of pilling on the surface of the knitted belt is always a big pain point affecting the quality and the use experience of the product. The singeing treatment is used as a mature physical anti-pilling process, and the surface of the fabric can be burnt at high temperature to effectively remove the easy entangled floating hair, so that the probability of forming the hair bulb is reduced. However, with the development of diversification of the market demand for knitted belt products, the conventional singeing treatment device has difficulty in adapting to the production requirements of industry refinement and high efficiency. The woven belts are various in materials and specifications, from natural fibers to synthetic fibers, from light, thin, soft, thick, strong and tough, and various products have obvious differences in performance and morphology. However, the existing singeing treatment device is simple in structure and crude in distance adjustment mode between the hot roller and the knitting belt, and is operated by relying on manual experience. The lack of the precision adjusting mode makes equipment difficult to adapt to the processing requirements of knitting belts of different types, namely facing the problems that if the distance of a hot roller is controlled improperly, the fabric is extremely easy to damage excessively at high temperature, carbonization, embrittlement and the like, and when thicker materials are processed, floating hair is remained due to overlarge distance, the anti-pilling effect is greatly reduced, and finally the qualification rate and the stability of products are affected. Meanwhile, the traditional device lacks an effective depth detection mechanism, and an operator cannot timely master the actual distance between the heat roller and the knitting belt. The method not only greatly increases the difficulty and time cost of equipment debugging, but also makes singeing effects of different batches of products uneven, and is difficult to realize standardized production. At the moment that the requirements on product quality and production efficiency in the textile industry are continuously increased, the problems of low production efficiency, resource waste and the like caused by insufficient equipment adjustment capability and detection feedback deficiency seriously restrict the market competitiveness and sustainable development of enterprises. Therefore, it is urgent to develop a surface treatment device for a knitted belt with flexible adjustment capability and accurate positioning function. The device needs to be able to adjust the processing parameters rapidly and accurately according to the characteristics of different types of knitting belts, ensures the stable and reliable singeing process, thereby effectively improving the quality of knitting belts and pushing the textile processing technology to advance to the intelligent and flexible directions. Disclosure of utility model (One) solving the technical problems Aiming at the defects of the prior art, the utility model provides a surface treatment device for a knitting belt with a pilling prevention function, which solves the problems that the prior device proposed in the background art is not suitable for multi-number knitting belts and the like. (II) technical scheme In order to achieve the purpose, the technical scheme is that the anti-pilling functional knitted belt surface treatment device comprises a device shell, wherein a feed inlet is formed in the device shell, a discharge outlet is formed below the device shell, two groups of guide rollers are arranged in the device shell corresponding to the feed inlet and the discharge outlet, one side of each of the two groups of guide rollers is provided with a circular arc thermal head capable of horizontally moving, and an adjustable depth feeding component for driving the circular arc thermal head to move and a high-precision positioning component for detecting the position of the circular arc thermal head are arranged in the device shell. Preferably, the arc thermal head comprises an arc hot plate, a structural block and a motion base block, wherein the arc hot plate is arranged on one side, close to the guide roller, of the structural block, a heating resistance wire is arranged in the structural block, and the motion base block is connected on one side, deviating from the arc hot plate, of the structural block. Preferably, the adjustable deep assembly comprises a screw rod fixing plate, a motor fixing plate, a screw rod, a servo motor, a screw rod moving block and a