Up to date, Dielectric Elastomer Actuators (DEA) have been mostly based on either silicone or acrylic elastomers, whereas the potential of DEAs based on inexpensive, wide-spread natural and synthetic rubbers has been scarcely investigated. In this paper, a DEA based on a styrene-based rubber is demonstrated for the first time. Using a Lozenge-Shaped DEA (LS-DEA) layout and following a design procedure previously proposed by the authors, we develop prototypes featuring nearly-zero mechanical stiffness, in spite of the large elastic modulus of styrenic rubber. Stiffness compensation is achieved by simply taking advantage of a biaxial pre-stretching of the rubber DE membrane, with no need for additional stiffness cancellation mechanical elemen...
A novel mathematical procedure is proposed, which makes it possible to optimize lozenge-shaped diele...
This study evaluates the basic characteristics of smart structures composed of dielectric elastomer ...
Dielectric elastomer (DE) actuators are able to typically show significant electromechanical perform...
Up to date, Dielectric Elastomer Actuators (DEA) have been mostly based on either silicone or acryli...
Dielectric Elastomers (Des) are deformable dielectrics, which can be used as active materials in mec...
The lack of soft high-dielectric-permittivity elastomers responsive to a low voltage has been a long...
Dielectric elastomers are materials well known for their superior actuation behavior under applied e...
This paper compares the performance of commercially available membranes made of styrenic rubber, nat...
A novel design for a Dielectric Elastomer (DE) actuator is presented. The actuator is obtained by co...
We present variable stiffness dielectric elastomer actuators (DEAs), combining a single DEA actuator...
Dielectric Elastomers (DE) seem to be a promising technology for the implementation of light and com...
none4A design methodology is presented, which makes it possible to optimize conically-shaped dielect...
Thanks to their outstanding properties, in the last few years Dielectric Elastomer Actuators (DEAs) ...
Electro-active polymers (EAPs) are emerging as feasible materials to mimic muscle-like actuation. Am...
A novel mathematical procedure is proposed, which makes it possible to optimize lozenge-shaped diele...
This study evaluates the basic characteristics of smart structures composed of dielectric elastomer ...
Dielectric elastomer (DE) actuators are able to typically show significant electromechanical perform...
Up to date, Dielectric Elastomer Actuators (DEA) have been mostly based on either silicone or acryli...
Dielectric Elastomers (Des) are deformable dielectrics, which can be used as active materials in mec...
The lack of soft high-dielectric-permittivity elastomers responsive to a low voltage has been a long...
Dielectric elastomers are materials well known for their superior actuation behavior under applied e...
This paper compares the performance of commercially available membranes made of styrenic rubber, nat...
A novel design for a Dielectric Elastomer (DE) actuator is presented. The actuator is obtained by co...
We present variable stiffness dielectric elastomer actuators (DEAs), combining a single DEA actuator...
Dielectric Elastomers (DE) seem to be a promising technology for the implementation of light and com...
none4A design methodology is presented, which makes it possible to optimize conically-shaped dielect...
Thanks to their outstanding properties, in the last few years Dielectric Elastomer Actuators (DEAs) ...
Electro-active polymers (EAPs) are emerging as feasible materials to mimic muscle-like actuation. Am...
A novel mathematical procedure is proposed, which makes it possible to optimize lozenge-shaped diele...
This study evaluates the basic characteristics of smart structures composed of dielectric elastomer ...
Dielectric elastomer (DE) actuators are able to typically show significant electromechanical perform...