Flame-retardant and anti-static fiberglass core-spun yarn
A glass fiber, flame retardant viscose fiber technology, used in the field of textile fabrics, can solve the problems of inability to meet high requirements, poor flame retardant performance durability, reduced fabric strength, etc., to achieve excellent texture, improve strength, and reduce smoothness. Effect
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Embodiment 1
[0014] The weight ratio of the aramid fiber, the flame-retardant viscose fiber and the conductive fiber is: 3:1.2:0.6, and the conductive fiber is an organic conductive fiber.
Embodiment 2
[0016] The weight ratio of the aramid fiber, the flame-retardant viscose fiber and the conductive fiber is 2:0.8:0.4, and the conductive fiber is a metal fiber.
Embodiment 3
[0018] The weight ratio of the aramid fiber, the flame-retardant viscose fiber and the conductive fiber is 2.5:1:0.5, and the conductive fiber is carbon fiber.
[0019] During specific implementation, the preparation method of the above-mentioned covering layer is as follows: blending aramid fiber and flame-retardant fiber to form high-strength flame-retardant yarn, then twisting high-strength flame-retardant yarn and conductive fiber filament to form mixed yarn, and then mixing The yarn is interwoven with the high-strength flame-retardant yarn along the warp direction in a strip structure to form a covering layer. The distance where the conductive fiber is embedded in the cladding layer is 1 mm. The reason why the double-twisted mixed yarn process is added before interweaving is to make the conductive fibers mixed into the fabric as evenly as possible, so as to improve its compatibility and exert its best antistatic and flame-retardant properties.
[0020] The fire and flame...
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