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Wicking Performance of Profiled Fibre Part B: Assessment of Fabric

机译:芯片纤维纤维部分B:织物评估

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摘要

For moisture regulation, careful selection of fibre, fibre packing in yarns and fabric structure are necessary. Introducing selective porosity in yarn can significantly influence moisture transport properties in fabrics made out of profiled fibre yarn. The arrangement of fibres in the yarn and that of yarn in fabric provide wide variability in the size and shape of the passage of liquid to flow. A change in the cross sectional diameter of the capillary leads to a change in interfacial speed for liquid. The mechanism of liquid transmission in fabric is expected to be different from that in yarn in isolated state. Generally, openness in fabric offers least resistance to flow. However, at each cross over points of threads the pressure exerted by one set of yarn on another can influence the capillary geometry affecting flow of liquid. The present work reports on the investigation made to study the wicking performance of five sets of fabrics made out of five homogeneous profiled fibre yarns as weft and respective double yarns as warp. It was observed that the wicking time and height in the weft direction were different than that in the corresponding yarns. Interestingly, wicking height attained in warp direction and individual yarn in isolation does not show any significant difference. It was observed that the points of interlacements between warps and wefts were constantly splitting the fluid flow both in horizontal and vertical directions.
机译:为了调节水分,必须仔细选择纤维、纱线中的纤维包装和织物结构。在纱线中引入选择性孔隙率可以显著影响异形纤维纱线织物的水分传输性能。纱线中纤维的排列和织物中纱线的排列使液体流动通道的大小和形状有很大的差异。毛细管横截面直径的变化导致液体界面速度的变化。预计液体在织物中的传输机制将不同于孤立状态下在纱线中的传输机制。一般来说,织物的开放性对流动的阻力最小。然而,在纱线的每个交叉点,一组纱线对另一组纱线施加的压力会影响影响液体流动的毛细管几何形状。本文报道了用五种均匀异形纤维纱线作为纬纱,分别以双纱作为经纱,研究五组织物的芯吸性能。观察到纬纱方向的芯吸时间和芯吸高度与相应纱线的芯吸时间和芯吸高度不同。有趣的是,在经纱方向上获得的芯吸高度和单独纱线的芯吸高度没有显示出任何显著差异。据观察,经纱和纬纱之间的交织点在水平和垂直方向上不断分裂流体流动。

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