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Estimation of Pore Size and Porosity of Modified Polyester/PVA Blended Spun Yarn

机译:改性聚酯/ PVA混纺纱的孔径和孔隙率估算

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The performance of a textile material depends on the arrangement of its constituent fibres. For good mechanical behaviour strong inter fibre cohesion is necessary. In order to impart comfort characteristics, a permeable structure is desired. Staple fibre, by virtue of its limited length and other constraints, cannot produce fully compacted structure. For an optimum performance, a balance between the permeable and cohesive characteristics is necessary. An estimation of the openness of the structure may help in designing product for specific requirement. The degree of openness, however, may be varied through necessary modifications during and post manufacturing stage. In the present study empirical relations have been developed to calculate the equivalent pore diameter and porosity for three different modes of packing in yarns. Theoretical calculation was done for all three possible modes of packing while the experimental evaluations were made using the cross sectional images. The change in pore size and porosity were also estimated for a polyester/PVA blended yarn on removal of PVA component. A comparison of experimentally measured porosity was made with the results obtained theoretically. Hexagonal close packing resulted lowest porosity and experimentally measured values were in close association with the theoretically measured porosity.
机译:纺织材料的性能取决于其组成纤维的排列。为了获得良好的机械性能,必须具有强的纤维间粘合力。为了赋予舒适特性,需要可渗透的结构。短纤维由于其有限的长度和其他限制而不能产生完全密实的结构。为了获得最佳性能,必须在渗透特性和内聚特性之间取得平衡。对结构开放度的估计可能有助于设计针对特定要求的产品。然而,开放度可以在制造阶段和制造后阶段通过必要的修改而改变。在本研究中,已经建立了经验关系来计算三种不同填充方式下的等效孔径和孔隙率。对所有三种可能的填充模式进行了理论计算,同时使用横截面图像进行了实验评估。聚酯/ PVA混纺纱在除去PVA组分后,还估计了孔径和孔隙率的变化。将实验测量的孔隙率与理论上获得的结果进行了比较。六角密堆积导致最低的孔隙率,并且实验测量值与理论测量的孔隙率密切相关。

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