Anti-static knitted fabric and preparation method thereof
A knitted fabric and anti-static technology, applied in the field of fabric processing, can solve problems such as inability to meet demand, and achieve the effects of improving wearing comfort, improving anti-static properties and good drape.
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Embodiment 1
[0047]An antistatic knitted fabric, comprising the following components by weight:
[0048] 90 parts of graphene conductive composite fiber, 22 parts of tencel, 10 parts of cupro ammonia fiber, 32 parts of cotton, 10 parts of antistatic agent; wherein, graphene conductive composite fiber includes 0.5 part of graphene and 80 parts of matrix fiber.
[0049] The preparation steps of graphene conductive composite fiber are as follows:
[0050] S1. Pretreatment: put 0.5 parts of graphene and 80 parts of matrix fiber into a vacuum oven for drying, the drying temperature is 70°C, and the drying time is 6 hours;
[0051] S2, dry mixing: put the dried graphene and matrix fibers into a high-speed mixer, adjust the rotating speed to 250rpm, mix for 1min, then adjust the rotating speed to 850rpm, and continue mixing for 1min to obtain a conductive matrix fiber premix;
[0052] S3. Blending and granulation: Put the conductive matrix fiber premix into a twin-screw blender for blending and ...
Embodiment 2
[0063] An antistatic knitted fabric, comprising the following components by weight:
[0064] 110 parts of graphene conductive composite fiber, 26 parts of tencel, 12 parts of cupro ammonia fiber, 38 parts of cotton, 11 parts of antistatic agent; wherein, graphene conductive composite fiber includes 0.7 part of graphene and 90 parts of matrix fiber.
[0065] The preparation steps of graphene conductive composite fiber are as follows:
[0066] S1. Pretreatment: Dry the graphene and matrix fibers in a vacuum oven at a drying temperature of 75°C and a drying time of 7 hours;
[0067] S2, dry mixing: put graphene and matrix fibers into a high-speed mixer, adjust the rotating speed to 270rpm, mix for 1min, then adjust the rotating speed to 870rpm, and continue mixing for 1min to obtain a conductive matrix fiber premix;
[0068] S3. Blending and granulation: Put the conductive matrix fiber premix into a twin-screw blender for blending and granulation. The melt blending temperature i...
Embodiment 3
[0079] An antistatic knitted fabric, comprising the following components by weight:
[0080] 130 parts of graphene conductive composite fiber, 30 parts of tencel, 14 parts of cupro ammonia fiber, 40 parts of cotton, 12 parts of antistatic agent; wherein, graphene conductive composite fiber includes 0.9 part of graphene and 100 parts of matrix fiber.
[0081] The preparation steps of graphene conductive composite fiber are as follows:
[0082] S1. Pretreatment: Dry the graphene and matrix fibers in a vacuum oven at a drying temperature of 80°C and a drying time of 8 hours;
[0083] S2, dry mixing: put graphene and matrix fibers into a high-speed mixer, adjust the rotating speed to 280rpm, mix for 2min, then adjust the rotating speed to 890rpm, and continue mixing for 1.5min to obtain a conductive matrix fiber premix;
[0084] S3. Blending and granulation: Put the conductive matrix fiber premix into a twin-screw blender for blending and granulation. The melt blending temperatur...
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