1, antistatic fabric
The methods for obtaining an antistatic fabric mainly include a weave conductive fiber method and a fabric surface finishing method. The method of interweaving conductive fibers (co-woven with wire) can enhance the antistatic property of the fabric, and the effect is long-lasting, and at the same time improve the moisture absorption and antifouling property of the fabric; the fabric surface finishing method is to carry out the synthetic fiber fabric. Antistatic resin finishing, these antistatic agents cover the surface of the fabric, and increase the electrical conductivity of the fiber by moisture absorption.
2, waterproof and moisture permeable fabric
The development of waterproof and moisture permeable fabrics mainly includes three methods of high-density weaving, fabric coating and micro-porous film lamination. Among them, polytetrafluoroethylene waterproof and moisture-permeable lamination composite processing is the most typical. Since the polytetrafluoroethylene microporous film has a certain contact angle and a micropore radius, it has a certain water pressure resistance and moisture permeability. The laminated fabric produced by the biaxially oriented polytetrafluoroethylene microporous film is waterproof and windproof. Features such as sex and moisture permeability.
3, antibacterial and deodorant fabric
The antibacterial health care fabric can be produced by a blend spinning method and a post-processing method. The blend spinning method is a method of adding an antibacterial agent to a fiber in a polymerization stage, a polymerization end or a spinning nozzle, and a spinning dope; the post-processing method is to heat the antibacterial agent on the fiber to achieve the purpose of antibacterial and deodorizing. .
4, flame retardant textiles
The flame retardant fabric is prepared by copolymerizing the flame retardant monomer with the high polymer or by adding a flame retardant to the polymer to form a blended fiber, and then woven into a flame retardant fabric; another method is to spray the flame retardant, The method of padding or coating treats the fabric and, when it encounters a fire, physical and chemical reactions occur to achieve a flame retardant effect.
In addition, dyeing and finishing can be used for anti-shrinkage and anti-mite treatment, and various functional dyes such as photochromism and far infrared absorption are used for dyeing and finishing. New dyeing and finishing technologies include bio-enzyme technology, low-temperature plasma technology, and microcapsules. Technology and other development of functional textiles. If the neutral or alkaline protease is used to prevent shrinkage processing of the wool fabric during the wet processing, the anti-caries agent is simultaneously treated with the wet processing of the wool fabric such as washing, boiling, shrinking, etc., to achieve the anti-mite and anti-shrinkage effect. The biological enzyme can remove impurities or fluff on the fiber or fabric, or reduce the fiber to improve the appearance and feel of the fabric; the low temperature plasma technology can improve the shrink-proof property of the wool and the hydrophilicity and antistatic property of the polyester; Microcapsule technology is mainly used for printing, anti-wrinkle, anti-shrinkage, anti-static, waterproof, oil-proof and flame retardant.
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