The low frequency mechanical and dielectric behavior of three different elastomers has been investigated by dynamic mechanical analysis and dielectric spectroscopy, with the aim of accounting for the frequency dependence of the characteristics of the corresponding dielectric elastomer actuators. Satisfactory agreement was obtained between the dynamic response of the actuators and a simple model based on the experimental data for the elastomers, assuming that the relatively large prestrains employed in the actuators to have little influence on the frequency dependence of their effective moduli. It was thus demonstrated that the frequency dependence of the actuator strain is dominated by that of the mechanical response of the elastomer, and t...
Dielectric elastomer (DE) actuators exploit electrically induced deformations of insulating rubbery ...
The dielectric elastomer actuator (DEA) is one type of emerging soft actuator that has the attractiv...
AbstractViscoelasticity and temperature can significantly affect the performance of a dielectric ela...
Current models of dielectric elastomer actuators (DEAs) are mostly constrained to first principal de...
Current models of dielectric elastomer actuators (DEAs) are mostly constrained to first principal de...
Current models of dielectric elastomer actuators (DEAs) are mostly constrained to first principal de...
ABSTRACT: Polyacrylate dielectric elastomers have yielded extremely large strain and elastic energy ...
Dielectric Elastomer (DE) actuators have been studied extensively under laboratory conditions where ...
Dielectric elastomers (DEs) represent a class of electroactive polymers that deform due to electrost...
Dielectric Elastomer Actuators (DEAs) show promise for robotics and mechatronics applications. They ...
AbstractWhen used as resonators, dielectric elastomers are subjected to high frequencies and nonline...
Dielectric elastomers (DEs) represent a class of electroactive polymers that deform due to electrost...
Dielectric elastomers (DEs) represent a class of electroactive polymers that deform due to electrost...
Elastomeric dielectric material has recently become a new alternative for actuator technology. The c...
The dielectric elastomer actuator (DEA) is one type of emerging soft actuator that has the attractiv...
Dielectric elastomer (DE) actuators exploit electrically induced deformations of insulating rubbery ...
The dielectric elastomer actuator (DEA) is one type of emerging soft actuator that has the attractiv...
AbstractViscoelasticity and temperature can significantly affect the performance of a dielectric ela...
Current models of dielectric elastomer actuators (DEAs) are mostly constrained to first principal de...
Current models of dielectric elastomer actuators (DEAs) are mostly constrained to first principal de...
Current models of dielectric elastomer actuators (DEAs) are mostly constrained to first principal de...
ABSTRACT: Polyacrylate dielectric elastomers have yielded extremely large strain and elastic energy ...
Dielectric Elastomer (DE) actuators have been studied extensively under laboratory conditions where ...
Dielectric elastomers (DEs) represent a class of electroactive polymers that deform due to electrost...
Dielectric Elastomer Actuators (DEAs) show promise for robotics and mechatronics applications. They ...
AbstractWhen used as resonators, dielectric elastomers are subjected to high frequencies and nonline...
Dielectric elastomers (DEs) represent a class of electroactive polymers that deform due to electrost...
Dielectric elastomers (DEs) represent a class of electroactive polymers that deform due to electrost...
Elastomeric dielectric material has recently become a new alternative for actuator technology. The c...
The dielectric elastomer actuator (DEA) is one type of emerging soft actuator that has the attractiv...
Dielectric elastomer (DE) actuators exploit electrically induced deformations of insulating rubbery ...
The dielectric elastomer actuator (DEA) is one type of emerging soft actuator that has the attractiv...
AbstractViscoelasticity and temperature can significantly affect the performance of a dielectric ela...