Heat storage fiber fabric and preparation method thereof
A heat storage and fabric technology, applied in the field of textile fabrics, can solve the problems of limited washing resistance and heat storage performance, cumbersome preparation process, low preparation efficiency, etc., and achieves high preparation efficiency and yield rate, good wearing comfort, and skin-friendly. Excellent effect of durability and durability
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[0034] Another object of the present invention is to provide a method for preparing the heat storage fiber fabric, which is characterized in that it includes the following steps:
[0035] Step S101, preparing materials: preparing heat storage filaments by solution composite spinning method;
[0036] Step S102, warping: warping the heat storage yarn and polyester yarn produced in step S101 through a warping machine;
[0037] Step S103, weaving: the raw materials warped in step S102 are used in proportion for warp knitting machine weaving to obtain gray cloth, and then cut into width to obtain the cut gray cloth;
[0038] Step S104, post-finishing: combing - ironing - pre-setting - dyeing (printing) - washing and softening - dehydration and finishing - drying - napping - combing - shearing - ironing - shaking grains - finished product finalizing treatment in sequence, to obtain the stored Thermal fiber fabric finished product.
[0039] Preferably, the warping site temperature ...
Embodiment 1
[0043] This example provides a heat storage fiber fabric, which is characterized in that the heat storage fiber fabric is woven from polyester yarn and heat storage yarn after plying; the heat storage yarn has a weight percentage content of 30wt% in the fabric, so The heat storage filament is made by the following components in parts by weight through a solution composite spinning method: 5 parts of pumice powder, 10 parts of far-infrared ceramic powder, 15 parts of hyperbranched polyglycerol, 2 parts of coupling agent, graphene 1 part of quantum dots, 60 parts of hydroxyl-terminated hyperbranched polyester.
[0044]The fineness of the polyester filament is 50D; the fineness of the polyester filament is 100D; the particle diameter of the pumice powder is 1000 mesh; the particle diameter of the far-infrared ceramic powder is 1000 mesh; the hyperbranched polyglycerol is the first The fourth-generation hyperbranched polyglycerol is provided by Shanghai Jiaotong University or purc...
Embodiment 2
[0053] This example provides a heat storage fiber fabric and its preparation method, which is basically the same as in Example 1, except that the heat storage filament is made of the following components in parts by weight through a solution composite spinning method: 6 parts of pumice powder, 13 parts of far-infrared ceramic powder, 16 parts of hyperbranched polyglycerol, 2.5 parts of coupling agent, 1.5 parts of graphene quantum dots, 65 parts of hydroxyl-terminated hyperbranched polyester.
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