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Effects of Imposing a Temperature Gradient on Moisture Vapor Transfer Through Water Resistant Breathable Fabrics

机译:施加温度梯度对通过耐水透气织物的水分蒸汽传递的影响

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摘要

Very often outerwear apparel is made of water resistant yet breathable fabrics, adn nonrmally these fabrics have multilayer structures of various polymeric materials. The working mechanisms of water vapor transmission through these fabrics are not well understood. The rate at which these breathable fabrics are able to transmit water vapor is most often measured under standard textile testing conditions of 20 deg C an 65 relative hymidity, but these tests are often little better than useless in preicting a fabric's perfomance under "real" conditions. The experiments described in this paper are designed to test breathable fabrics under more realistic conditions. Water is heated to 33 deg C in order to simulate a sweating body, and the rate at which the vapor is transmitted through various breathable fabrics is measured. Experiments involve ambient temperatures of 6, 10, 15, and 2 deg C, with the relative humidity held at a constant 65 throughout.
机译:通常,外套服装是由耐水但透气的织物制成的,并且通常这些织物具有多种聚合物材料的多层结构。通过这些织物的水蒸气传输的工作机理还没有被很好地理解。这些透气织物能够透过水蒸气的速率通常是在20摄氏度,相对湿度为65的标准纺织品测试条件下测得的,但这些测试通常比在“真实”条件下阻止织物的性能好多少没有用。 。本文所述的实验旨在在更实际的条件下测试透气性面料。为了模拟出汗的身体,将水加热到33摄氏度,然后测量蒸汽通过各种透气性织物的传输速率。实验涉及6、10、15和2摄氏度的环境温度,相对湿度始终保持恒定65。

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