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通过一步电喷雾技术制备的单向导湿绿色织物。

Unidirectional moisture-conducting green fabrics prepared by a one-step electrospray technique.

作者信息

Bi Shumin, Yang Yueru, Pei Guangling, Yang Tianci, Hu Shui, Jia Qingxiu

机构信息

School of Materials Design and Engineering, Beijing Institute of Fashion Technology Beijing China

College of Materials Science and Engineering, Beijing University of Chemical Technology Beijing China

出版信息

RSC Adv. 2025 Jan 14;15(2):1125-1133. doi: 10.1039/d4ra08289c. eCollection 2025 Jan 9.

Abstract

Unidirectional moisture-conducting fabrics were prepared by electrospraying polyvinylidene fluoride (PVDF) and polyvinyl chloride (PVC) onto three green fabric substrates, namely cotton, hemp, and modal. Experiments were conducted to examine the effects of coating thickness, coating material, and substrate material on the moisture conductivity of the fabrics. The electrospraying technique was effective in forming uniform and strongly adhered PVDF and PVC coatings on the fabric substrates, and the coating thickness and material type had a significant effect on the fabric's moisture conductivity. The PVDF and PVC coatings significantly improved the unidirectional moisture conductivity of the fabric substrates, and although the unidirectional moisture conductivity effects differed among the substrates, all fabrics exhibited high directional water transport capacities ( values greater than 300%), high air permeabilities, and high water vapor transmission rates. Cotton and hemp substrates coated with hydrophobic layers showed more efficient unidirectional moisture transfer than modal fabrics. This study demonstrated that appropriate coating design and substrate selection can significantly improve the moisture conductivity of fabrics, providing a valuable reference for the development of high-performance functional textiles.

摘要

通过将聚偏氟乙烯(PVDF)和聚氯乙烯(PVC)电喷雾到三种绿色织物基材(即棉、麻和莫代尔)上制备了单向导湿织物。进行实验以研究涂层厚度、涂层材料和基材材料对织物导湿性的影响。电喷雾技术有效地在织物基材上形成了均匀且附着力强的PVDF和PVC涂层,涂层厚度和材料类型对织物的导湿性有显著影响。PVDF和PVC涂层显著提高了织物基材的单向导湿性,尽管不同基材之间的单向导湿效果有所不同,但所有织物都表现出高的定向输水能力(值大于300%)、高透气性和高水蒸气透过率。涂有疏水层的棉和麻基材比莫代尔织物表现出更高效的单向水分传递。本研究表明,适当的涂层设计和基材选择可以显著提高织物的导湿性,为高性能功能性纺织品的开发提供了有价值的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80ae/11729219/6de8cfde0cfd/d4ra08289c-f1.jpg

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