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Piezoelectric Nylon-11 Fibers for Electronic Textiles, Energy Harvesting and Sensing

机译:用于电子纺织品,能量收集和传感的压电尼龙-11纤维

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摘要

Electronic textiles and functional fabrics are among the key constituents envisioned for wearable electronics applications. For e-textiles, the challenge is to process materials of desired electronic properties such as piezoelectricity into fibers to be integrated as wefts or wraps in the fabrics. Nylons, first introduced in the 1940s for stockings, are among the most widely used synthetic fibers in textiles. However, realization of nylon-based e-textiles has remained elusive due to the difficulty of achieving the piezoelectric phase in the nylon fibers. Here, piezoelectric nylon-11 fibers are demonstrated and it is shown that the resulting fibers are viable for applications in energy harvesting from low frequency mechanical vibrations and in motion sensors. A simulation study is presented that elucidates on the sensitivity of the nylon-11 fibers toward external mechanical stimuli. Moreover, a strategy is proposed and validated to significantly boost the electrical performance of the fibers. Since a large fraction of the textile industry is based on nylon fibers, the demonstration of piezoelectric nylon fibers will be a major step toward realization of electronic textiles for applications in apparels, health monitoring, sportswear, and portable energy generation.
机译:电子纺织品和功能织物是用于可穿戴电子应用的关键成分之一。对于电子纺织品,挑战是处理所需电子性质的材料,例如压电成纤维,以融入织物中的纬纱或包裹物。尼龙,首先在20世纪40年代推出的织物,是纺织品中最广泛使用的合成纤维中。然而,由于难以在尼龙纤维中实现压电相,基于尼龙的电子纺织品的实现仍然难以实现。这里,证明了压电尼龙-11纤维,并显示所得纤维对于从低频机械振动和运动传感器的能量收集中的应用是可行的。提出了一种阐明尼龙-11纤维对外部机械刺激的敏感性的模拟研究。此外,提出并验证了一种策略,以显着提高纤维的电气性能。由于纺织工业的大部分基于尼龙纤维,压电尼龙纤维的示范将成为在服装,健康监测,运动装和便携式能源发电中实现电子纺织品的重要步骤。

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