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

Yi‐Ting Jhong, David Mikolas, T.‐J. Yeh, Weileun Fang, Dein Shaw, J Chen, Chien‐Chung Fu

Year
2010
Citations
7

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.

Keywords

Materials scienceElastomerActuatorNonlinear systemCharacterization (materials science)DielectricComposite materialDielectric elastomersOptoelectronicsEngineering

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