Translucent soft robots driven by frameless fluid electrode dielectric elastomer actuators

弹性体 电极 机器人 执行机构 材料科学 介电弹性体 机械工程 复合材料 计算机科学 电介质 光电子学 工程类 人工智能 物理 量子力学
作者
Caleb Christianson,Nathaniel N. Goldberg,Dimitri D. Deheyn,Shengqiang Cai,Michael T. Tolley
出处
期刊:Science robotics [American Association for the Advancement of Science]
卷期号:3 (17) 被引量:286
标识
DOI:10.1126/scirobotics.aat1893
摘要

Dielectric elastomer actuators (DEAs) are a promising enabling technology for a wide range of emerging applications, including robotics, artificial muscles, and microfluidics. This is due to their large actuation strains, rapid response rate, low cost and low noise, high energy density, and high efficiency when compared with alternative actuators. These properties make DEAs ideal for the actuation of soft submersible devices, although their use has been limited because of three main challenges: (i) developing suitable, compliant electrode materials; (ii) the need to effectively insulate the actuator electrodes from the surrounding fluid; and (iii) the rigid frames typically required to prestrain the dielectric layers. We explored the use of a frameless, submersible DEA design that uses an internal chamber filled with liquid as one of the electrodes and the surrounding environmental liquid as the second electrode, thus simplifying the implementation of soft, actuated submersible devices. We demonstrated the feasibility of this approach with a prototype swimming robot composed of transparent bimorph actuator segments and inspired by transparent eel larvae, leptocephali. This design achieved undulatory swimming with a maximum forward swimming speed of 1.9 millimeters per second and a Froude efficiency of 52%. We also demonstrated the capability for camouflage and display through the body of the robot, which has an average transmittance of 94% across the visible spectrum, similar to a leptocephalus. These results suggest a potential for DEAs with fluid electrodes to serve as artificial muscles for quiet, translucent, swimming soft robots for applications including surveillance and the unobtrusive study of marine life.
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