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含金属丝的多功能可拉伸导电织物,在X波段具有持久的结构稳定性和电磁屏蔽性能。

Multifunctional Stretchable Conductive Woven Fabric Containing Metal Wire with Durable Structural Stability and Electromagnetic Shielding in the X-Band.

作者信息

Wang Yong, Gordon Stuart, Baum Thomas, Xu Zhenzhen

机构信息

College of Textiles and Garments, Anhui Polytechnic University, Wuhu 241000, China.

CSIRO Manufacturing, Waurn Ponds, VIC 3216, Australia.

出版信息

Polymers (Basel). 2020 Feb 10;12(2):399. doi: 10.3390/polym12020399.

Abstract

Elastomeric, conductive composite yarns have recently received attention around the opportunity for them to offer special protective fields. A straightforward approach for fabricating tri-component elastic-conductive composite yarns (t-ECCYs) containing stainless steel wire (SSW) was proposed previously. This work mainly focuses on the electromagnetic shielding effectiveness (EMSE) of weft-stretchable woven fabric containing t-ECCY over the X-band under different testing conditions, e.g., single step-by-step elongation, cyclic stretch and lamination events. Results showed that a woven cotton fabric with weft yarn of t-ECCY not only exhibited superior weft stretch-ability to a higher elongation (>40%) compared with a pure cotton control but also had an acceptable 15-cyclic stability with 80% shape recovery retention. The t-ECCY weft fabric was effective in shielding electromagnetic radiation, and its EMSE was also enhanced at elevated elongations during stretch at parallel polarization of EM waves. There was also no decay in EMSE before and after the t-ECCY fabric was subject to 15 stretch cycles at extension of 20%. In addition, a 90° by 90° cross lamination of t-ECCY fabric remarkably improved the EMSE compared to a 0°/90° one. The scalable fabrication strategy and excellent EMSE seen in t-ECCY-incorporated fabrics represent a significant step forward in protective fields.

摘要

弹性导电复合纱线最近因有机会提供特殊保护领域而受到关注。此前曾提出一种制造含不锈钢丝(SSW)的三组分弹性导电复合纱线(t-ECCY)的直接方法。这项工作主要关注含t-ECCY的纬向可拉伸机织物在不同测试条件下,如单步逐次伸长、循环拉伸和层压事件下,在X波段的电磁屏蔽效能(EMSE)。结果表明,与纯棉对照织物相比,纬纱为t-ECCY的机织棉织物不仅表现出更高的纬向拉伸能力,可实现更高的伸长率(>40%),而且在80%形状恢复保留率的情况下具有可接受的15次循环稳定性。t-ECCY纬向织物在屏蔽电磁辐射方面有效,并且在电磁波平行极化拉伸过程中,其EMSE在伸长率升高时也有所增强。在20%伸长率下对t-ECCY织物进行15次拉伸循环前后,其EMSE也没有衰减。此外,与0°/90°层压相比,t-ECCY织物90°×90°交叉层压显著提高了EMSE。在含t-ECCY的织物中看到的可扩展制造策略和优异的EMSE代表了保护领域向前迈出的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b2f/7077671/5e32d6f8b82e/polymers-12-00399-g001.jpg

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