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Investigation on hydrostatic resistance and thermal performance of layered waterproof breathable fabrics

机译:分层防水透气织物静压抗性及热性能研究

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AbstractWaterproof breathable layered fabrics allow water vapor passing through, but resist liquid water to pass. This ability of the fabrics to protect rain and snow water while allowing sweat vapor to evaporate from inside to outside atmosphere, leads them to be used as outdoor sportswear or protective clothing. The big challenge of enhanced hydrostatic resistance of these fabrics with proper breathability and thermal comfort has widened the research scope. This study presents an experimental investigation on hydrostatic resistance and thermal behavior of layered waterproof breathable fabrics. Six different types of hydrophobic and hydrophilic membrane laminated layered fabrics were evaluated by varying different fabric parameters in the experiment. Hydrostatic resistance and water vapor permeability of the laminated fabrics were measured by SDL ATLAS Hydrostatic Head Tester and PERMETEST respectively. Thermal properties were evaluated by ALAMBETA instrument. Moreover, FX-3300 air permeability tester was used to measure air permeability which represents the porosity of the fabrics and computer based See System software was used for water contact angle measurement on the outer fabric surface in order to determine the hydrophobic and hydrophilic properties. This experiment clearly discusses the influence of different fabric characteristics and parameters on hydrostatic resistance and thermal properties of the breathable laminated fabrics. The results show that fabric material composition, density, thickness, and hydrophobic and hydrophilic membranes have significant effects on hydrostatic resistance, breathability and thermal properties of different laminated fabrics.
机译:<标题>抽象 ara>防水透气分层织物允许水蒸气通过,但抵抗液体水通过。这种织物来保护雨水和雪水的这种能力,同时允许汗水蒸汽从内部蒸发到外部大气中,导致它们用作户外运动服或防护服。通过适当的透气性和热舒适性提高这些织物的静水抗性的巨大挑战,扩大了研究范围。本研究提出了对层状防水透气织物的静压性和热行为的实验研究。通过在实验中改变不同的织物参数来评价六种不同类型的疏水性和亲水膜层压层织物。通过SDL ATLAS静压头测试仪和最依赖性测量层叠织物的静压性和水蒸气渗透性。通过Alambeta仪器评估热性质。此外,FX-3300透气性测试仪用于测量表示织物的孔隙率,并且基于计算机的孔隙率,参见系统软件用于外织物表面上的水接触角度测量,以确定疏水性和亲水性。该实验清楚地探讨了不同织物特性和参数对透气层压织物的静压性能和热性能的影响。结果表明,织物材料组成,密度,厚度和疏水性和亲水膜对不同层压织物的静压性,透气性和热性能具有显着影响。

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