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Thermophysiological comfort properties of selected knitted fabrics and design of T-shirts

机译:所选针织面料的热生理舒适性和T恤的设计

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Thermal comfort is one of the most important components of comfort which shows physiological, psychological, and physical harmony between human body and environment. The heat and moisture transfer capacity of fabric from skin to environment affects the thermal comfort of garments. The transfer capacity depends on the characteristic features of raw materials and fabric structural properties. In this study, it is aimed to determine the advantages of knitted fabric types, taking into account the environmental condition and activity level by measuring the thermal comfort properties such as air permeability, wicking, moisture management, thermal and water vapor resistances. Two knitted structures composed of tuck and float combinations and six raw materials were chosen for the fabrics produced. According to the measurement results, the polyester and cotton/Coolmax fabrics with float stitches have had good liquid moisture transport properties. Besides, high air permeability and low water vapor resistance have been obtained in viscose and Tencel LF fabrics with tuck stitches. On the basis of the results obtained in this investigation, and taking into consideration thermal behavior of human body, four women's and five men's T-shirts are designed. These T-shirt designs may be helpful for further approaches on the optimization of thermal comfort for sports activities in hot environment.
机译:热舒适度是舒适度最重要的组成部分之一,它显示出人体与环境之间的生理,心理和物理和谐。织物从皮肤到环境的热量和水分传递能力会影响服装的热舒适性。转移能力取决于原料的特征和织物的结构特性。在这项研究中,旨在通过测量热舒适性(例如透气性,芯吸,湿度管理,耐热性和耐水蒸气性)来考虑环境条件和活性水平,从而确定针织面料类型的优势。选择了两种由褶皱和浮法组合构成的针织结构以及六种原料作为生产的面料。根据测量结果,具有浮动针脚的聚酯和棉/ Coolmax织物具有良好的液体水分传输性能。此外,在具有褶皱针迹的粘胶和天丝LF织物中,获得了高透气性和低耐水蒸气性。根据本次调查的结果,并考虑到人体的热行为,设计了四件女式和五件男式T恤。这些T恤设计可能有助于进一步优化在炎热环境下进行的体育活动的热舒适性。

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