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Evaluation of thermal and moisture management properties on knitted fabrics and comparison with a physiological model in warm conditions

机译:针织物热湿管理性能的评估以及在温暖条件下与生理模型的比较

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摘要

This study reports on an experimental investigation of physical properties on the textile thermal comfort. Textile properties, such as thickness, relative porosity, air permeability, moisture regain, thermal conductivity, drying time and water-vapour transmission rate have been considered and correlated to the thermal and vapour resistance, permeability index, thermal effusivity and moisture management capability in order to determine the overall comfort performance of underwear fabrics. The results suggested that the fibre type, together with moisture regain and knitted structure characteristics appeared to affect some comfort-related properties of the fabrics. Additionally, thermal sensations, temperature and skin wetness predicted by Caseto software for three distinct activity levels were investigated. Results show that the data obtained from this model in transient state are correlated to the thermal conductivity for the temperature and to Ret, moisture regain and drying time for the skin wetness. This provides potential information to determine the end uses of these fabrics according to the selected activity level.
机译:该研究报告了对纺织品热舒适性的物理性质的实验研究。已考虑了纺织品的特性,例如厚度,相对孔隙率,透气性,回潮率,导热性,干燥时间和水蒸气透过率,并依次与耐热性和耐蒸汽性,渗透性指数,热释放性和湿度管理能力相关以确定内衣面料的整体舒适性能。结果表明,纤维类型,回潮率和针织结构特性似乎会影响织物的某些舒适性。另外,研究了由Caseto软件预测的三种不同活动水平的热感,温度和皮肤湿度。结果表明,在瞬态下从该模型获得的数据与温度的热导率相关,与皮肤湿度的Ret,回潮率和干燥时间相关。这提供了潜在信息,可根据所选活动级别确定这些结构的最终用途。

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