Wang Meng, Cheng Zhi-Wen, Zuo Bo, Chen Xu-Man, Huang Shuai, Yang Hong
School of Chemistry and Chemical Engineering, Jiangsu Province Hi-Tech Key Laboratory for Bio-medical Research, Institute of Advanced Materials, Southeast University, Nanjing, 211189, China.
ACS Macro Lett. 2020 Jun 16;9(6):860-865. doi: 10.1021/acsmacrolett.0c00333. Epub 2020 May 28.
In this letter, we present an electro-driven cylindrical actuator system composed of a bilayered liquid crystal elastomer/carbon black (LCE/CB) electro-driven soft actuator and a conductive track. The bilayered LCE/CB electro-driven actuator consists of an inner LCE circular band and several U-shaped CB conductive regions stuck on the outer surface of the LCE ring. Benefiting from the effective Joule heating of CB powder and the consequential inhomogeneous stress generated inside the bilayered LCE/CB film, the cylindrical actuator can roll forward with a rate of 1.6 mm/s along a stationary copper conductive track powered by a 50 V direct current supply. The dynamic connection between the rolling actuator and the conductive track effectively eliminates the limitation of electric wires in the complicated actuation set-ups of the LCE materials. This work might promote the development of electro-driven LCE actuators and have potential applications in the fields of soft robots and electric devices.
在这封信中,我们展示了一种电动圆柱形致动器系统,它由双层液晶弹性体/炭黑(LCE/CB)电动软致动器和导电轨道组成。双层LCE/CB电动致动器由一个内部LCE圆形带和几个粘贴在LCE环外表面的U形CB导电区域组成。得益于CB粉末的有效焦耳热以及双层LCE/CB薄膜内部产生的不均匀应力,该圆柱形致动器能够以1.6毫米/秒的速度沿着由50伏直流电源供电的固定铜导电轨道向前滚动。滚动致动器与导电轨道之间的动态连接有效地消除了LCE材料复杂致动装置中电线的限制。这项工作可能会推动电动LCE致动器的发展,并在软机器人和电子设备领域具有潜在应用。