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Friction in textile fibers and its role in fiber processing

机译:纺织纤维中的摩擦及其在纤维加工中的作用

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摘要

Textile fibers are characterized by many parameters, used by both researchers and industrial users. Many studies focus on the effect of fiber length, fineness, maturity (only for cotton), tensile properties, etc. on the properties of intermediate products and yarns. Contrary, few studies concerning the fiber surface properties, especially the inter-fiber friction, appear in the scientific literature. A new and simple device is designed and used in this. It enables the measurement of inter-fiber friction force during the dissociation of an ordinary sliver. Contrary to what has previously been mentioned in the scientific literature, the study of a set of different cottons shows that the inter-fiber friction seems to obey the Amontons' law rather than a more complex power law model. The calculated inter-fiber friction coefficient helps to differentiate the different types of cotton and to bring to the fore the non-negligible effect of the friction on yarn irregularity and imperfections, affecting the yarn tenacity indirectly. Meanwhile, this work has revealed a curious grouping of different types of cotton, which is not observed before. This phenomenon is undoubtedly due to the surface properties of fibers.
机译:研究人员和工业用户都使用许多参数来表征纺织纤维。许多研究集中于纤维长度,细度,成熟度(仅适用于棉花),拉伸性能等对中间产品和纱线性能的影响。相反,在科学文献中很少有关于纤维表面性质,特别是纤维间摩擦的研究。设计并使用了一种新的简单设备。它可以测量普通条解离过程中的纤维间摩擦力。与先前在科学文献中提到的相反,对一组不同的棉花进行的研究表明,纤维间的摩擦似乎服从阿蒙顿定律,而不是更复杂的幂律模型。计算出的纤维间摩擦系数有助于区分不同类型的棉花,并突显出摩擦对纱线不规则性和瑕疵的不可忽略的影响,从而间接影响纱线的韧性。同时,这项工作揭示了不同类型棉花的奇特分组,这是以前从未观察到的。这种现象无疑是由于纤维的表面性质。

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