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Thermo-physiological properties of polyester–cotton plated fabrics in relation to fibre linear density and yarn type

机译:聚酯-棉镀层织物的热生理特性与纤维线密度和纱线类型的关系

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Abstract Thermo-physiological properties of textiles are crucial in determining the heat and moisture transport from skin to environment and in the assessment of overall wearer comfort. Engineering fabrics with desirable thermo-physiological properties suited for specific applications such as active wear, intimate wear is a big challenge for textile manufacturers as gamut of fibre, yarn and fabric parameters are known to influence the thermo-physiological properties. The present study was undertaken with an aim to explore suitable combination of fibre and yarn variables for engineering polyester–cotton plated fabrics with good thermo-physiological properties. Categorical variables i.e. outer layer yarn type and inner layer fibre linear density were found to affect the thermal, moisture vapour and liquid moisture transfer properties of developed test samples. Fabrics knitted with carded yarn and polyester fibre of high linear density showed high thermal resistance and would feel warmer on initial skin contact owing to low thermal absorptivity. However, the air permeability and moisture vapour transmission rate increased with combination of combed cotton yarn in the outer and coarse polyester fibre in the inner layer. Combed yarn fabrics were superior in trans planar wicking compared to carded yarn fabrics which showed higher water absorbency and would be slow drying fabrics.
机译:摘要纺织品的热生理特性对于确定从皮肤到环境的热量和水分传输以及评估整体穿着舒适度至关重要。具有理想的热生理特性的工程织物适合于特定应用,例如主动磨损,内在磨损,这对纺织制造商来说是一个巨大的挑战,因为已知纤维,纱线和织物参数的色域会影响热生理特性。进行本研究的目的是探索纤维和纱线变量的适当组合,以用于具有良好热生理特性的工程聚酯-棉镀层织物。发现分类变量,即外层纱线的类型和内层纤维的线密度会影响已开发的测试样品的热,湿气和液体湿气传递特性。用梳理纱和高线密度的聚酯纤维编织的织物表现出较高的耐热性,并且由于较低的热吸收率,在初次接触皮肤时会感觉较热。然而,透气性和湿气透过率随着外层精梳棉纱和内层粗聚酯纤维的结合而增加。与梳理纱线织物相比,精梳纱线织物在反平面芯吸方面更胜一筹,后者具有更高的吸水性,并且是慢干织物。

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