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Characterization of liquid transport in needle-punched nonwovens. I. Wicking under infinite liquid reservoir

机译:针刺无纺布中液体传输的表征。一,无限储液下的芯吸

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The study of wicking characteristics of fibrous materials has received significant attention from both academic and industry over many decades. Wicking describes the liquid transport behavior of fibrous assemblies, and plays a critical role in the processing and end use of nonwovens in many application areas including medical, geotextiles, filtration, etc. However, the analysis of wicking in a nonwoven materials is complex because of random arrangement of capillary tubes formed by fibers, and therefore, we must have to rely on the experimental techniques to appraise their wicking performance. In the present work, the wicking characteristics (rate and amount of liquid rise) of different nonwovens (made from polypropylene fibers) under an unlimited or infinite liquid reservoir system has been analyzed using a newly developed computerized wicking apparatus based on capacitance principle. Some factors, i.e., fiber denier, mass per unit area and needling density, were chosen for the experimental plan to find their significance on the vertical wicking. It has been found that the rate and extent of wicking is significantly affected by changing the levels of above factors (p < 0.05). The rate and amount of liquid rise was increasing with increase in needling density and mass per unit area of nonwoven samples. Samples made from higher fiber denier (15 denier) were showing poor wicking results compared to lower denier samples (2.5 and 6 denier). Further work is still needed to examine other factors on the wicking to further improve our understanding of liquid transport in such highly complex porous networks.
机译:数十年来,纤维材料的芯吸特性的研究受到了学术界和工业界的极大关注。芯吸描述了纤维组件的液体传输行为,并且在许多应用领域(包括医疗,土工布,过滤等)中,在非织造布的加工和最终使用中起着至关重要的作用。然而,由于以下原因,非织造材料中的芯吸分析非常复杂由纤维形成的毛细管的随机排列,因此,我们必须依靠实验技术来评估其芯吸性能。在目前的工作中,已经使用一种新开发的基于电容原理的计算机芯吸装置,分析了无限或无限储液系统下不同无纺布(由聚丙烯纤维制成)的芯吸特性(速率和液体上升量)。实验计划选择了一些因素,即纤维旦数,单位面积质量和针刺密度,以发现它们对垂直芯吸的重要性。已经发现,通过改变上述因素的水平,芯吸的速率和程度受到显着影响(p <0.05)。随着针刺密度和非织造样品单位面积质量的增加,液体上升的速率和数量也增加。与较低旦数的样品(2.5和6旦)相比,由较高旦数的纤维(15旦)制成的样品显示出较差的芯吸结果。仍然需要进一步的工作来研究芯吸的其他因素,以进一步提高我们对这种高度复杂的多孔网络中液体传输的理解。

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