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无线电力传输至电热液晶弹性体致动器。

Wireless Power Transfer to Electrothermal Liquid Crystal Elastomer Actuators.

作者信息

Zhang Huan, Yang Xiao, Valenzuela Cristian, Chen Yuanhao, Yang Yanzhao, Ma Shaoshuai, Wang Ling, Feng Wei

机构信息

School of Materials Science and Engineering, Tianjin University, Tianjin 300350, P. R. China.

Tianjin Key Laboratory of Composite and Functional Materials, Tianjin 300350 P. R. China.

出版信息

ACS Appl Mater Interfaces. 2023 Jun 7;15(22):27195-27205. doi: 10.1021/acsami.3c03817. Epub 2023 May 25.

Abstract

Wireless actuation of electrically driven soft actuators is of paramount importance for the development of bioinspired soft robotics without physical connection or on-board batteries. Here, we demonstrate untethered electrothermal liquid crystal elastomer (LCE) actuators based on emerging wireless power transfer (WPT) technology. We first design and fabricate electrothermal LCE-based soft actuators that consist of an active LCE layer, a conductive liquid metal-filled polyacrylic acid (LM-PA) layer, and a passive polyimide layer. LM can function not only as an electrothermal transducer to endow resulting soft actuators with electrothermal responsiveness but also as an embedded sensor to track the resistance changes. Various shape-morphing and locomotive modes such as directional bending, chiral helical deformation, and inchworm-inspired crawling can be facilely obtained through appropriately controlling the molecular alignment direction of monodomain LCEs, and the reversible shape-deformation behaviors of resulting soft actuators can be monitored in real-time through resistance changes. Interestingly, untethered electrothermal LCE-based soft actuators have been achieved by designing a closed conductive LM circuit within the actuators and combining it with inductive-coupling WPT technology. When the resulting soft actuator approaches a commercially available wireless power supply system, an induced electromotive force can be generated within the closed LM circuit, which results in Joule heating and wireless actuation. As proof-of-concept illustrations, wirelessly driven soft actuators that can exhibit programmable shape-morphing behaviors are demonstrated. The research disclosed herein can provide insights into the development of bioinspired somatosensory soft actuators, battery-free wireless soft robots, and beyond.

摘要

对于无物理连接或无车载电池的仿生软机器人的发展而言,电动软致动器的无线驱动至关重要。在此,我们展示了基于新兴无线电力传输(WPT)技术的无系绳电热液晶弹性体(LCE)致动器。我们首先设计并制造了基于电热LCE的软致动器,其由活性LCE层、填充导电液态金属的聚丙烯酸(LM-PA)层和无源聚酰亚胺层组成。液态金属不仅可以作为电热换能器,赋予所得软致动器电热响应性,还可以作为嵌入式传感器来跟踪电阻变化。通过适当地控制单畴LCE的分子排列方向,可以轻松获得各种形状变形和运动模式,如定向弯曲、手性螺旋变形和受尺蠖启发的爬行,并且可以通过电阻变化实时监测所得软致动器的可逆形状变形行为。有趣的是,通过在致动器内设计一个封闭的导电液态金属电路,并将其与电感耦合WPT技术相结合,实现了无系绳电热LCE基软致动器。当所得软致动器靠近市售无线电源系统时,在封闭的液态金属电路中会产生感应电动势,从而导致焦耳热和无线驱动。作为概念验证示例,展示了能够呈现可编程形状变形行为的无线驱动软致动器。本文所披露的研究可为仿生体感软致动器、无电池无线软机器人等的发展提供见解。

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