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Characterization of nonlinear effects in a two-dimensional dielectric elastomer actuator
Journal article   Peer reviewed

Characterization of nonlinear effects in a two-dimensional dielectric elastomer actuator

Y. Jhong, D. Mikolas, T. Yeh, W. Fang, D. Shaw, J. Chen and C. Fu
Smart Materials and Structures, Vol.19(10), 105027
10/2010

Abstract

Dielectric elastomer actuators (DEAs) possess great potential for the realization of lightweight and inexpensive multiple-degrees-of-freedom (multi-DOF) biomimetic robotics. In this study, a two-dimensional DEA was built and tested in order to characterize the issues associated with the use in multi-DOF actuation. The actuator is a single circular DEA film with four, electrically isolated quadrant electrode areas. The actuator was driven in a quasi-circular manner by applying sine and cosine signals to orthogonal pairs of electrodes, and the resultant motion was recorded using image processing techniques. The effects of nonlinear voltage-strain behavior, creep and stress relaxation on the motion were all pronounced and clearly differentiated. A simple six-parameter empirical model was used and showed excellent agreement with the measured data. © 2010 IOP Publishing Ltd.

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