A common usage for electroactive polymers (EAPs) is in different types of actuators, where advantage is taken of the deformation of the polymer due to an electric field. It turns out that time-dependent effects are present in these applications. One of these effects is the viscoelastic behavior of the polymer material. In view of the modeling and simulation of applications for EAP within a continuum mechanics setting, a phenomenological framework for an electro-viscoelastic material model is elaborated in this work. The different specific models are fitted to experimental data available in the literature. While the experimental data used for inherent electrostriction is restricted to small strains, a large strain setting is used for the mod...
Dielectric elastomers are a class of electro-active polymers (EAPs) that can be used for the develop...
Dielectric elastomers offer clear advantages over more traditional and conventional materials when s...
Dielectric polymers find an increased interest in research and development due to an intensive deman...
Electroactive polymers (EAP) deform under electric fields. This effect in fact generates various new...
It is well known that electroactive polymers (EAP) deform under electric fields. An advantage of EAP...
While traditionally treated separately, the research disciplines dealing with electromagnetic fields...
AbstractThis work deals with electro-viscoelastic modelling and simulation of dielectric elastomer a...
Electro-active materials are capable of undergoing large deformation when stimulated by an electric ...
AbstractThe aim of this paper is to build a model of an electroactive polymer actuator when external...
Electroactive polymers (EAP) deform under electric fields and an advantage of EAP is that they may u...
Electroactive polymers with time-dependent behavior are considered in the present paper by way of a ...
In the recent years various novel materials have been developed that respond to the application of e...
A comprehensive experimental study performed under a combination of thermo-electro-mechanical loads ...
A comprehensive experimental study performed under a combination of thermo-electro-mechanical loads ...
AbstractThe mechanical response of a widely used electro-active polymer (EAP) material, and the sens...
Dielectric elastomers are a class of electro-active polymers (EAPs) that can be used for the develop...
Dielectric elastomers offer clear advantages over more traditional and conventional materials when s...
Dielectric polymers find an increased interest in research and development due to an intensive deman...
Electroactive polymers (EAP) deform under electric fields. This effect in fact generates various new...
It is well known that electroactive polymers (EAP) deform under electric fields. An advantage of EAP...
While traditionally treated separately, the research disciplines dealing with electromagnetic fields...
AbstractThis work deals with electro-viscoelastic modelling and simulation of dielectric elastomer a...
Electro-active materials are capable of undergoing large deformation when stimulated by an electric ...
AbstractThe aim of this paper is to build a model of an electroactive polymer actuator when external...
Electroactive polymers (EAP) deform under electric fields and an advantage of EAP is that they may u...
Electroactive polymers with time-dependent behavior are considered in the present paper by way of a ...
In the recent years various novel materials have been developed that respond to the application of e...
A comprehensive experimental study performed under a combination of thermo-electro-mechanical loads ...
A comprehensive experimental study performed under a combination of thermo-electro-mechanical loads ...
AbstractThe mechanical response of a widely used electro-active polymer (EAP) material, and the sens...
Dielectric elastomers are a class of electro-active polymers (EAPs) that can be used for the develop...
Dielectric elastomers offer clear advantages over more traditional and conventional materials when s...
Dielectric polymers find an increased interest in research and development due to an intensive deman...