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Investigation of Thermo-Physiological Comfort and Mechanical Properties of Fine Cotton Fabrics for Ladies' Summer Apparel

机译:女士夏季服饰微棉织物热生理舒适性和力学性能研究

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摘要

Fine cotton fabrics such as "Lawns" for ladies' apparel are extremely popular in the subcontinent and all those parts of the world where summers are scorching and the subsequent rainy seasons quite hot and humid. The required fabrics should neither be too thin to be weak nor too thick to be uncomfortable. The main objective of this study was to investigate thermo-physiological comfort and mechanical properties of cotton fabrics ranging from approx. 50 to 80 g/m(2) areal densities (GSM) using 80, 70, 60, and 50 Ne yarn counts and to determine optimum fabric parameters for good fabric comfort and strength. Fabric of a specific areal density could be developed either by using coarser yarn counts with lower number of ends and picks per inch or by using finer yarn counts with higher number of ends and picks per inch. Results show that fabric of a specific areal density produced from coarser yarns with lower number of ends and picks results in better fabric air permeability and better tear strength, as compared to that made from finer yarns with higher number of ends and picks per inch. However, fabric thermal and water vapor resistance are not significantly affected by either approach used for the range of fabrics produced in this study. Based on response surface optimization, the optimum fabric parameters were found to be 60 Ne warp count, 50 Ne weft count, 90 ends/inch and 50 picks/inch for simultaneously achieving good fabric air permeability and strength properties.
机译:女士服装的“草坪”等细棉面料在次大陆和世界各地的所有部分都非常受欢迎,夏天烧焦,随后的多雨季节相当炎热和潮湿。所需的织物既不应该过于薄弱,弱也不太厚,无法舒服。本研究的主要目的是研究棉布织物的热生理舒适性和机械性能。使用80,70,60和50个NE纱线的50至80g / m(2)面部密度(GSM),并确定用于良好的织物舒适度和强度的最佳织物参数。可以通过使用较粗糙的纱线计数来开发特定的面密度的织物,并且每英寸的较数较小的末端或通过使用更高的纱线计数,并且每英寸的拾取率更高。结果表明,由较粗糙的纱线产生的特定面密度的织物具有较小的末端,并且选择较好的织物透气性和更好的撕裂强度,与由较高的纱线制成的末端和每英寸拾取的较高的纱线制成。然而,通过用于本研究中生产的织物的范围的方法不会显着影响织物的热和水蒸气抗性。基于响应面优化,发现最佳织物参数为60 NE翘曲计数,50个NE纬编数,90个末端/英寸和50个镐/英寸,用于同时实现良好的织物透气性和强度性能。

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