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Knitted Carbon-Nanotube-Sheath/Spandex-Core Elastomeric Yarns for Artificial Muscles and Strain Sensing

机译:用于人造肌肉和应变传感的针织碳纳米管鞘/氨纶芯弹力纱

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摘要

Highly stretchable, actuatable, electrically conductive knitted textiles based on Spandex (SPX)/CNT (carbon nanotube) composite yarns were prepared by an integrated knitting procedure. SPX filaments were continuously wrapped with CNT aerogel sheets and supplied directly to an interlocking circular knitting machine to form three-dimensional electrically conductive and stretchable textiles. By adjusting the SPX/CNT feed ratio, the fabric electrical conductivities could) be tailored in the range of 870 to 7092 S/m. The electrical conductivity depended on tensile strain, with a linear and largely hysteresis-free resistance change occurring on loading and unloading between 0% and 80% strain. Electrothermal heating of the stretched fabric caused large tensile contractions of up to 33% and generated a gravimetric mechanical work capacity during contraction of up to 0.64 kJ/kg and a maximum specific power output of 1.28 kW/kg, which far exceeds that of mammalian skeletal muscle. The knitted textile provides the combination of strain sensing and the ability to control dimensions required for smart clothing that simultaneously monitors the wearer's movements and adjusts the garment fit or exerts forces or pressures on the wearer, according to needs. The developed processing method is scalable for the fabrication of industrial quantities of strain sensing and actuating smart textiles.
机译:通过集成编织程序,制备了基于氨纶(SPX)/ CNT(碳纳米管)复合纱线的高伸缩性,可驱动,导电的针织纺织品。 SPX长丝用CNT气凝胶片连续包裹,并直接提供给联锁的圆型编织机,以形成三维导电和可拉伸的纺织品。通过调节SPX / CNT进料比,可以将织物的电导率调整为870至7092 S / m。电导率取决于拉伸应变,在加载和卸载应变介于0%和80%之间时会发生线性且基本上无磁滞的电阻变化。拉伸织物的电热加热导致高达33%的大拉伸收缩,并在收缩过程中产生重量分析的机械功,最大可达0.64 kJ / kg,最大比功率输出为1.28 kW / kg,这远远超过了哺乳动物骨骼的功率。肌肉。针织纺织品结合了应变感应和控制智能服装所需尺寸的能力,这些服装可根据需要同时监视穿着者的运动并调节衣服的合身性或对穿着者施加力或压力。所开发的处理方法可扩展用于制造工业量的应变感应和驱动智能纺织品。

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