纬编无缝织物的固定位置变化孔隙结构和热/湿传递机制

IF 1.6 4区 工程技术 Q2 MATERIALS SCIENCE, TEXTILES
Zhijia Dong, Xueming Fang, Yuqin Ding, Honglian Cong, Pibo Ma
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引用次数: 0

摘要

在这项工作中,我们选择了两种功能性超细聚酯纱线作为面纱,三种常规纱线作为地纱,并通过三种不同电镀结构的组合设计了 18 种织物。然后,通过接触角测量、湿度管理性能、热管理性能和透气性测试,评估了原材料、结构和孔隙特性对织物湿热舒适性的影响,并进一步使用范围分析评估了三个因素的优先级。结果表明,面纱为 75 D/288 F 的织物具有更好的亲水性,面纱为 50 D/216 F 的织物具有更好的温度控制效果。氨纶/涤纶包覆纱或氨纶/锦纶包覆纱的织物透湿性最好,单向透湿指数可达 300%。微观结构对透气性有很大影响,表面孔隙率与透气性呈正相关。结合运动人体的热湿分区,开发高效分区定位的热湿管理运动内衣,可为纬编无缝运动产品的设计提供一定的理论支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fixed position varying pore structure of weft-knitted seamless fabric and heat/moisture transfer mechanism
In this work, two functional superfine polyester yarns were selected as face yarns, three conventional yarns were selected as ground yarns, and 18 fabrics were designed by using a combination of three different plating structures. Then, through contact angle measurements, moisture management performance, thermal management performance, and breathability tests, we evaluated the effects of raw material, structure, and pore characteristics on the fabric’s hygrothermal comfort, and furthermore assessed the prioritization of the three factors using a range analysis. The results show that fabrics with face yarn of 75 D/288 F have better hydrophilicity, and fabrics with face yarn of 50 D/216 F have a better temperature control effect. The fabric with spandex/polyester covered yarn or spandex/nylon covered yarn has the best moisture transmission, and the unidirectional transfer index can reach 300%. The microstructure has a great influence on air permeability, and the surface porosity is positively correlated with air permeability. Combined with the heat and humidity division of the sports body, the development of efficient zonal positioning of heat and moisture management sports undershirts can provide certain theoretical support for the design of weft-knitted seamless sports products.
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来源期刊
Textile Research Journal
Textile Research Journal 工程技术-材料科学:纺织
CiteScore
4.00
自引率
21.70%
发文量
309
审稿时长
1.5 months
期刊介绍: The Textile Research Journal is the leading peer reviewed Journal for textile research. It is devoted to the dissemination of fundamental, theoretical and applied scientific knowledge in materials, chemistry, manufacture and system sciences related to fibers, fibrous assemblies and textiles. The Journal serves authors and subscribers worldwide, and it is selective in accepting contributions on the basis of merit, novelty and originality.
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