材料科学
导电体
织物
复合材料
可穿戴计算机
图层(电子)
纱线
蛋白质丝
可穿戴技术
纳米技术
可伸缩电子设备
柔性电子器件
导电的
拉伤
热传导
数码产品
电极
极限抗拉强度
电子设备和系统的热管理
芯(光纤)
光电子学
电阻式触摸屏
机织物
紧迫的
电导率
作者
Yong Wang,Kaikai Wen,Zihan Yuan,Zhao Dong,Changlong Li,Yi Zhang,Shuai Hou,Chao Zhi,Hongling Liu
标识
DOI:10.1002/adfm.202518220
摘要
Abstract Stretchable conductive yarn‐based textiles are crucial for smart wearable electronics, achieving both exceptional conductivity and stretchability at industrial scales remains challenging. Herein, a continuous strategy is proposed for manufacturing stretchable conductive wrapped yarns (SCWYs) with hierarchically core‐dual sheath architecture through industrialized hollow‐spindle wrap spinning. The elastane filament (EF) core provides SCWYs with excellent stretchability and resilience, and a silver‐plated nylon filament (SPNF) sub‐outer layer enables multifunctional characteristics. The linen yarn (LY) outermost layer provides skin‐contact comfort. The elastane draw ratio serves as a processing parameter that critically influences the tunable stretchability of SCWYs. Optimally, the exceptional stretchability and robust cyclic durability (200% strain at 3.0 draw ratio) of SCWY stem from its interlaced‐helical architecture and draw‐ratio tunability of EF. The coupled effects of initially tight helix of SPNF and the introduction of EF component create a strain‐dependent response profile, attenuating the responsiveness to low‐to‐moderate tensile strains versus higher strains (i.e., 150% and beyond). Furthermore, the SCWY also exhibits superior programmable electrothermal behavior, antibacterial efficacy, tactile comfort, environment‐friendly recyclability, and functions as a rapid‐response strain sensor for full‐range tracking. This work presents a scalable manufacturing protocol for stretch‐tunable conductive yarns that enable advanced multifunctional wearable electronics with seamless textile integration.
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