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Comfort behaviour of woven bamboo-cotton ring and MJS yarn fabrics

机译:机织竹棉圈和MJS纱线织物的舒适性

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摘要

The thermal comfort characteristics of light weight bamboo-cotton blended apparel fabrics have been studied in relation to fibre composition, yarn linear density and spinning mode. The experimental results show that a denser fabric has higher thermal insulation, higher absorbency and yields higher air and water vapour permeabilities. The fabrics made from the MJS yarns display considerably higher air and water vapour permeabilities, higher thermal resistance and lower wickability as compared to their ring-spun counterparts. With increasing second jet pressure, the air and water vapour permeabilities improve initially but deteriorate thereafter as the second jet pressure is further raised beyond a particular level. Analysis of the fibre-mix reveals that the 70:30 bamboo-cotton fabrics are relatively less air and water vapour permeable, less thermal resistant and exhibit higher wickability than their 48:52 bamboo-cotton couples.
机译:研究了轻质竹棉混纺服装面料的热舒适特性,涉及纤维成分,纱线线密度和纺丝模式。实验结果表明,较密实的织物具有较高的隔热性,较高的吸收性,并具有较高的空气和水蒸气渗透性。与环锭纺纱相比,由MJS纱制成的织物具有更高的空气和水蒸气渗透性,更高的耐热性和更低的芯吸性。随着第二喷射压力的增加,空气和水蒸气的渗透率开始提高,但是随后随着第二喷射压力进一步升高超过特定水平而恶化。对纤维混合物的分析显示,与48:52的竹棉织物相比,70:30的竹棉织物相对不透气和不透水蒸气,耐热性较低,并且具有较高的毛细作用。

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