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用于旋转微发动机的液晶弹性体扭转纤维。

Liquid Crystal Elastomer Twist Fibers toward Rotating Microengines.

作者信息

Wang Yunpeng, Sun Jiahao, Liao Wei, Yang Zhongqiang

机构信息

Key Laboratory of Organic Optoelectronics & Molecular Engineering of the Ministry of Education, Department of Chemistry, Tsinghua University, Beijing, 100084, China.

出版信息

Adv Mater. 2022 Mar;34(9):e2107840. doi: 10.1002/adma.202107840. Epub 2022 Jan 24.

Abstract

Untethered twist fibers do not require end-anchoring structures to hold their twist orientation and offer simple designs and convenient operation. The reversible responsiveness of these fibers allows them to generate torque and rotational deformation continuously upon the application of external stimuli. The fibers therefore have potential in rotating microengines. In practical applications, high torque and rotational deformation are desirable to meet work capacity requirements. However, the simultaneous endowment of reversible responsiveness and high rotational performance to untethered twist fibers remains a challenge. In this study, a liquid crystal elastomer twist fiber (LCETF) is designed and developed with a fixed twisting alignment of mesogens to provide untethered and reversible responsiveness. Outstanding rotational performance can be achieved when the mesogenic orientation is disrupted through heat triggering. Owing to the significant intrinsic contractile ratio of the LCE material, the rotational deformation of the LCETF can reach 243.6° mm . More importantly, the specific torque can reach 10.1 N m kg , which exceeds previously reported values. In addition, the LCETF can be exploited in a rotating microengine to convert heat into electricity with an induction voltage as high as 9.4 V. This work broadens the applications of LCEs for energy harvesters, micromachines, and soft robots.

摘要

无束缚扭转纤维不需要端部锚固结构来保持其扭转方向,并且设计简单、操作方便。这些纤维的可逆响应性使其在受到外部刺激时能够持续产生扭矩和旋转变形。因此,这些纤维在旋转微发动机方面具有潜力。在实际应用中,需要高扭矩和旋转变形来满足工作能力要求。然而,同时赋予无束缚扭转纤维可逆响应性和高旋转性能仍然是一个挑战。在本研究中,设计并开发了一种液晶弹性体扭转纤维(LCETF),其液晶元具有固定的扭转排列,以提供无束缚和可逆的响应性。当通过热触发破坏液晶元取向时,可以实现出色的旋转性能。由于LCE材料具有显著的固有收缩率,LCETF的旋转变形可达243.6°·mm。更重要的是,比扭矩可达10.1 N·m/kg,超过了先前报道的值。此外,LCETF可用于旋转微发动机,将热量转化为电能,感应电压高达9.4 V。这项工作拓宽了LCE在能量收集器、微机器和软机器人方面的应用。

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