Electromechanical response of silicone dielectric elastomers

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Abstract

This paper presents an experimental technique to investigate the electromechanical properties of silicone dielectric elastomers actuated with high DC electric fields. A non-contact measurement technique is used to capture and monitor the thickness strain (contraction) of a circular film placed between two metallic disks electrodes. Two active fillers such as silica (10, 15 and 30 wt%) and barium titanate (5 and 15 wt%) were incorporated in order to increase the actuation performance. Thickness strain was measured at HV stimuli up to 4.5 kV and showed a quadratic dependence against applied electric field indicating that the induced strain is triggered by the Maxwell effect and/or electrostriction phenomenon as reported in literature. The actuation process evidences a rapid contraction upon HV activation and a slowly relaxation when the electrodes are short-circuit due to visco-elastic nature of elastomers. A maximum of 1.22 % thickness strain was obtained at low actuating field intensity (1.5 V/μm) comparable with those reported in literature for similar dielectric elastomer materials.

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Cârlescu, V., PrisǍcaru, G., & Olaru, D. (2016). Electromechanical response of silicone dielectric elastomers. In IOP Conference Series: Materials Science and Engineering (Vol. 147). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/147/1/012057

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