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Giant, voltage-actuated deformation of a dielectric elastomer under dead load
190
Citations
19
References
2012
Year
EngineeringMechanical EngineeringSoft RoboticsElasticity (Physics)MechanicsNonlinear ModelMaterial NonlinearitiesElectrical EngineeringNonlinear ElasticityMechanical DesignMechanical BehaviorVoltage Ramp RateDielectric ElastomerSolid MechanicsActuationMechanical DeformationDead LoadFlexible ElectronicsMechanics Of MaterialsElectrical Insulation
Far greater voltage-actuated deformation is achievable for a dielectric elastomer under equal-biaxial dead load than under rigid constraint usually employed. Areal strains of 488% are demonstrated. The dead load suppresses electric breakdown, enabling the elastomer to survive the snap-through electromechanical instability. The breakdown voltage is found to increase with the voltage ramp rate. A nonlinear model for viscoelastic dielectric elastomers is developed and shown to be consistent with the experimental observations.
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