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首页> 外文期刊>Journal of Engineered Fibers and Fabrics >Analysis of Frictional Behavior of Woven Fabrics by a Multi-directional Tactile Sensing Mechanism
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Analysis of Frictional Behavior of Woven Fabrics by a Multi-directional Tactile Sensing Mechanism

机译:多方向触觉机制分析机织物的摩擦行为

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摘要

The frictional property of woven fabrics is one of the prominent surface characteristics which influence the performance of fabrics in a variety of applications. In this paper a novel methodology and instrument is proposed to measure the tactile force between fabric and simulated skin in different directions, and the obtained data are used for assessing fabric frictional property. In this regard, nine groups of woven fabrics consisting of three weave structures and three different weft densities were tested. By fitting the data with a proper equation, the tactile force in terms of fabric direction was predicted. The mentioned equation is also utilized for estimation of frictional behavior of fabric in various directions. Moreover, a single, new parameter called “frictional energy” is defined which has the ability to properly quantify the fabric frictional behavior. Statistical analysis of results reveals that the effect of weave structure and weft density is significant on the fabric friction. Being aware of the effect of fabric construction on friction is a guide for selecting the suitable fabric for various end uses.
机译:机织织物的摩擦性能是显着的表面特性之一,在多种应用中会影响织物的性能。本文提出了一种新颖的方法和仪器来测量织物和模拟皮肤之间在不同方向上的触觉力,并将获得的数据用于评估织物的摩擦性能。在这方面,测试了由三种编织结构和三种不同的纬密度组成的九种机织织物。通过用合适的方程式拟合数据,可以预测织物方向的触觉力。所提及的方程式还用于估计织物在各个方向上的摩擦性能。此外,定义了一个称为“摩擦能量”的新参数,该参数可以正确量化织物的摩擦性能。结果的统计分析表明,编织结构和纬纱密度对织物摩擦力有显着影响。意识到织物结构对摩擦的影响是选择适合各种最终用途的织物的指南。

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