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Water Vapor Transfer and Condensation Effects in Multilayer Textile Combinations

机译:多层纺织组合物中水蒸气的转移和冷凝作用

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摘要

In cold environments, the moisture produced by the human body will partly condense within the layers of an ensemble. Water vapor transfer and moisture accumulation in the layers of different four-layer combinations are analyzed at several moderately cold temperatures with a sweating arm, which simulates the thermophysiological behavior of a man's arm. The permeability of the samples and their condensation rates strongly depend on the outside climate and the hydrophilicity of the outer layers. The differences in effective water vapor resistances between the ensembles are small in a climate of 20℃ and 65% RH, but become larger with decreasing outside temperature. The formation of condensation is the smallest for samples with a hydrophilic membrane laminated on the hydrophilic inner side. Hydrophilic layers placed underneath the outer shell generally absorb more moisture than similar hydrophobic layers, revealing probable liquid moisture transfer from the outer shell to the inner layers of the combinations.
机译:在寒冷的环境中,人体产生的水分将部分凝结在合奏层中。在几个中度寒冷的温度下,用出汗的手臂分析不同四层组合的各层中的水蒸气传递和水分积累,以模拟人手臂的热生理行为。样品的渗透性及其冷凝率在很大程度上取决于外部气候和外层的亲水性。在20℃和65%RH的气候下,集成体之间有效水蒸气阻力的差异很小,但随着外部温度的降低而增大。对于在亲水性内侧层压有亲水膜的样品,缩合的形成最小。与类似的疏水层相比,位于外壳下方的亲水层通常吸收更多的水分,这表明液体水分可能会从外壳传递到组合的内层。

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