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首页> 外文期刊>The Journal of the Textile Institute >Modelling to predict thermophysiological properties of hollow/microporous yarn fabrics
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Modelling to predict thermophysiological properties of hollow/microporous yarn fabrics

机译:建模以预测中空/微孔纱线织物的热生理特性

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摘要

Hollow/microporous yarn spinning is a technique used to increase the bulk of yarn without increasing its weight. Hollowness in the cotton yarns has been introduced by various methods and techniques. Empirical models have been developed to predict the thermophysiological properties through structural parameters. Based on standardized multiple linear regression models, fabric's structural parameters are related with thermophysiological properties of hollow yarn fabrics. Three basic parameters i.e. yarns packing density, inter-yarn porosity and fabric thickness have been found to relate strongly with fabric thermophysiological properties except water vapour permeability.
机译:中空/微孔纱线纺丝是一种用于增加纱线体积而不增加其重量的技术。已经通过各种方法和技术引入了棉纱中的中空度。已经开发了经验模型以通过结构参数预测热生理特性。基于标准化的多元线性回归模型,织物的结构参数与中空纱织物的热生理特性有关。已经发现三个基本参数,即纱线的堆积密度,纱线间的孔隙率和织物的厚度与织物的热生理特性密切相关,除了水蒸气的渗透性。

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