A novel mathematical procedure is proposed, which makes it possible to optimize lozenge-shaped dielectric-elastomer-based linear actuators for known materials and desired force/stroke requirements. Simulation results are provided which both demonstrate the efficacy of the novel procedure with respect to traditional design approaches and show that simpler, cheaper, lighter and betterbehaved lozenge-shaped actuators can be conceived which do not require any integration of compliant frame elements

A new procedure for the optimization of a dielectric elastomer actuator

BERSELLI, GIOVANNI;
2009-01-01

Abstract

A novel mathematical procedure is proposed, which makes it possible to optimize lozenge-shaped dielectric-elastomer-based linear actuators for known materials and desired force/stroke requirements. Simulation results are provided which both demonstrate the efficacy of the novel procedure with respect to traditional design approaches and show that simpler, cheaper, lighter and betterbehaved lozenge-shaped actuators can be conceived which do not require any integration of compliant frame elements
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11567/810940
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