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Influence of Fibre Cross-sectional Shape on Air Permeability of Nonwovens

机译:纤维截面形状对非织造布透气性的影响

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In this work, a series of needle-punched nonwoven fabrics was prepared by mixing polyester fibres of circular and deep-grooved cross-sections at different mass proportions and evaluated for their mean fibre shape, pore diameter and air flow behaviour. A simple and easy-to-use expression was developed for prediction of mean fibre shape in nonwoven fabrics prepared by mixing of fibres of different cross-sections. The mean fibre shape factor was found to be a weighted arithmetic mean of the shape factors of individual fibre components, where the weightage was determined by the product of volume and fineness fractions of individual fibre components. The nonwoven fabric prepared by circular fibres alone displayed the highest pore diameter, while the nonwoven fabric prepared by deep-grooved fibres alone exhibited the lowest pore diameter. The pore diameter was found to increase non-linearly with an increase in mass proportion of circular fibres in the nonwoven fabrics. The relationship between fibre shape and pore diameter was theoretically derived and experimentally verified. The air flow behaviour of nonwoven fabrics was found to be explained by Darcy's law reasonably well. The nonwoven fabric prepared by circular fibres alone exhibited the highest air permeability, while the nonwoven fabric prepared by deep-grooved fibres alone displayed the lowest air permeability. The air permeability was found to decrease with a higher proportion of non-circular fibres in the nonwoven fabrics. This behaviour could not be explained reasonably well by Hagen-Poiseuille's equation, however. But when the Reynolds number and the friction factor were taken into account, the predicted results were found in close agreement with the experimental ones.
机译:在这项工作中,通过将圆形和深槽横截面的聚酯纤维以不同的质量比例混合,制备了一系列针刺无纺布,并对其平均纤维形状,孔径和气流性能进行了评估。开发了一种简单易用的表达式,用于预测通过混合不同横截面的纤维制备的非织造织物中的平均纤维形状。发现平均纤维形状因子是单个纤维组分的形状因子的加权算术平均值,其中权重由单个纤维组分的体积和细度分数的乘积确定。仅由圆形纤维制成的无纺布显示出最大的孔径,而仅由深槽纤维制成的无纺布显示出最小的孔径。发现孔径随着非织造织物中圆形纤维的质量比例的增加而非线性地增加。从理论上推导并实验验证了纤维形状与孔径之间的关系。发现非织造织物的空气流动行为可以由达西定律很好地解释。仅由圆形纤维制成的无纺布表现出最高的透气性,而仅由深槽纤维制成的无纺布表现出最低的透气性。发现在非织造织物中,随着非圆形纤维比例的增加,透气性降低。但是,Hagen-Poiseuille方程无法很好地解释这种行为。但是,当考虑雷诺数和摩擦系数时,发现的预测结果与实验结果非常吻合。

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