Publication | Closed Access
Modeling of dielectric elastomer as electromechanical resonator
42
Citations
42
References
2014
Year
Electroactive MaterialElectrical EngineeringNonlinear ElasticityEngineeringMechanicsFeature Nonlinear DynamicsMechanical EngineeringMechanical SystemsMechanical ModelingNonlinear DynamicsDielectric ElastomerActuationElectronic-mechanical SystemNonlinear ResonanceDielectric ElastomersNonlinear VibrationElectrical InsulationElectromagnetic Compatibility
Dielectric elastomers (DEs) feature nonlinear dynamics resulting from an electromechanical coupling. Under alternating voltage, the DE resonates with tunable performances. We present an analysis of the nonlinear dynamics of a DE as electromechanical resonator (DEER) configured as a pure shear actuator. A theoretical model is developed to characterize the complex performance under different boundary conditions. Physical mechanisms are presented and discussed. Chaotic behavior is also predicted, illustrating instabilities in the dynamics. The results provide a guide to the design and application of DEER in haptic devices.
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