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用于透气性控制和热调节装置的电活性纺织致动器

Electroactive Textile Actuators for Breathability Control and Thermal Regulation Devices.

作者信息

Xiang Chaoqun, Guo Jianglong, Sun Rujie, Hinitt Andrew, Helps Tim, Taghavi Majid, Rossiter Jonathan

机构信息

SoftLab, Bristol Robotics Laboratory, University of Bristol, Bristol BS16 1QY, UK.

Bristol Composites Institute (ACCIS), University of Bristol, Bristol BS8 1TR, UK.

出版信息

Polymers (Basel). 2019 Jul 18;11(7):1199. doi: 10.3390/polym11071199.

Abstract

Smart fabrics offer the potential for a new generation of soft robotics and wearable technologies through the fusion of smart materials, textiles and electrical circuitries. Conductive and stretchable textiles have inherent compliance and low resistance that are suitable for driving artificial muscle actuators and are potentially safer electrode materials for soft actuation technologies. We demonstrate how soft electroactive actuating structures can be designed and fabricated from conducting textiles. We first quantitatively analyse a range of stretchable conductive textiles for dielectric elastomer actuators (DEAs). We found that conductive-knit textiles are more suitable for unidirectional DEA applications due to the largest difference (150%) in principle strain axes, whereas isotropic textiles are more suited to bidirectional DEA applications due to the smallest (11.1%) principle strain difference. Finally, we demonstrate controllable breathability through a planar e-textile DEA-driven skin and show thermal regulation in a wearable prototype that exploits soft actuation and kirigami.

摘要

智能织物通过智能材料、纺织品和电路的融合,为新一代软机器人技术和可穿戴技术提供了潜力。导电且可拉伸的纺织品具有固有的柔顺性和低电阻,适合驱动人工肌肉致动器,并且对于软致动技术而言可能是更安全的电极材料。我们展示了如何用导电纺织品设计和制造软电活性致动结构。我们首先对一系列用于介电弹性体致动器(DEA)的可拉伸导电纺织品进行了定量分析。我们发现,由于主应变轴的最大差异(150%),导电针织纺织品更适合单向DEA应用,而各向同性纺织品由于最小的主应变差异(11.1%)更适合双向DEA应用。最后,我们通过平面电子织物DEA驱动的皮肤展示了可控透气性,并在利用软致动和剪纸工艺的可穿戴原型中展示了热调节功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d394/6680543/a9ef5e9e4b2f/polymers-11-01199-g001.jpg

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