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THERMOPHYSIOLOGICAL PROPERTIES OF INTEGRATED TEXTILE LAYERS DESIGNED FOR AN EXTREMELY LOW TEMPERATURE ENVIRONMENT

机译:设计用于极端低温环境的集成纺织层的热生理学特性

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摘要

The paper deals with the thermophysiological properties of integrated textile layers designed for an extremely low temperatures environment. An integrated model textile layer consists of a lower layer A, an inner layer B+i+B and upper layer C, according to the following scheme A+(B+i+B)+C. We focused on the thermal resistance of the inner thermal-isolating layer i and the thermal-humidity profile of the lower textile layer A. We designed an integrated textile layer with a suitable thickness for the thermal-isolating layer i from a non-woven PET textile which would assure the thermal isolation of a body during minimal physical effort and a minimal outside temperature. The thermal-humidity profile of the lower textile layer was monitored using time shrinkage. We evaluated the synergic effect of the textile layer B to the time shrinkage of the textile layer A.
机译:本文涉及为极低温环境设计的集成纺织品层的热生理特性。根据以下方案A +(B + i + B)+ C,集成模型纺织品层由下层A,内层B + i + B和上层C组成。我们着眼于内部隔热层i的热阻和下部织物层A的热湿分布。我们设计了一种集成的织物层,该层的厚度适合非织造PET的隔热层i这种织物可以在最小的体力劳动和最小的外部温度下确保人体的热隔离。使用时间收缩来监测下部纺织品层的热-湿度分布。我们评估了纺织层B对纺织层A时间收缩的协同作用。

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