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Evaluation of the Moisture Transfer Property of Waterproof Breathable Fabric Under Low-Temperature Conditions Depending on the Pore Size and Distribution

机译:评估在低温条件下防水透气织物的水分转移特性,具体取决于孔径和分布

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摘要

The moisture transfer properties of four types of waterproof breathable fabrics with different pore sizes and distributions under low temperatures were examined. The structure, thickness, and pore shape of the fabric by scanning electron microscopy and capillary flow porometer compared depending on the manufacturing method. The effects of these parameters on the wearing comfort as determined by water vapor transmission rate and analyzing the temperature/humidity changes in the microclimate using the human-clothing-environment simulator. The coating type membrane was the thickest, whereas the nano web specimen was the thinnest. The results showed that at subzero temperatures, there was little difference in the vapor pressure change of the microclimate depending on the pore size. In the case of the waterproof breathable fabric produced in various forms depending on the function, however, the evaluation should performed based on the actual clothing wearing conditions, rather than in the standard state, is needed.
机译:在低温下检查了四种具有不同孔径和分布的四种类型的防水透气织物的水分传递性能。根据制造方法,通过扫描电子显微镜和毛细管流动仪的结构,厚度和孔形形状。这些参数对水蒸气传输速率确定的舒适性的影响以及使用人透明环境模拟器分析微气候的温度/湿度变化。涂层型膜最厚,而纳米纤维标本最薄。结果表明,在亚零温度下,微气候的蒸气压变化几乎没有差异,具体取决于孔径。但是,根据功能,以各种形式生产的防水透气织物,但是,应根据实际的服装佩戴条件而不是标准状态进行评估。

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