Far infrared glue-free cotton and preparing method thereof
A far-infrared, non-adhesive cotton technology, applied in the field of non-woven fabrics, can solve the problems of easy breeding of bacteria and skin allergies in the cotton body, and achieve the effects of promoting blood circulation and metabolism, relieving pain symptoms and eliminating fatigue.
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Embodiment 1
[0012] The preparation method of above-mentioned far-infrared non-glue cotton, its step comprises:
[0013] The far-infrared glue-free cotton of the present embodiment comprises: a far-infrared fiber layer, an ES staple fiber layer and a polyester fiber layer stacked up and down successively, and the mass percentages of each component are far-infrared fiber 20%, ES staple fiber 25%. %, polyester fiber 55%.
[0014] The preparation method of above-mentioned far-infrared non-glue cotton, its step comprises:
[0015] (1) The ceramic powder with far-infrared radiation function is sintered, pulverized and mixed, and spun by the masterbatch method. The temperature of the spinning machine is 290°C to obtain far-infrared fibers. Among them, the ceramic powder with far-infrared radiation function The components and mass percentages are: silicon dioxide 50%, zirconium dioxide 25%, ferric oxide 20%, copper oxide 5%;
[0016] (2) Take 20% far-infrared fiber, 25% ES staple fiber, and 55%...
Embodiment 2
[0019] The preparation method of above-mentioned far-infrared non-glue cotton, its step comprises:
[0020] The far-infrared glue-free cotton of the present embodiment comprises: a far-infrared fiber layer, an ES staple fiber layer and a polyester fiber layer stacked up and down successively, and the mass percentages of each component are far-infrared fiber 10%, ES staple fiber 20% %, polyester fiber 70%.
[0021] The preparation method of above-mentioned far-infrared non-glue cotton, its step comprises:
[0022] (1) The ceramic powder with far-infrared radiation function is sintered, crushed and mixed, and spun by the masterbatch method. The temperature of the spinning machine is 280°C to obtain far-infrared fibers. Among them, the ceramic powder with far-infrared radiation function The components and mass percentages are: silicon dioxide 52%, zirconium dioxide 20%, ferric oxide 20%, copper oxide 8%;
[0023] (2) According to the mass percentage, 10% far-infrared fiber, 20%...
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