A predicting model for soft dielectric elastomer generators (DEGs) must consider a realistic model of the electromechanical behaviour of the elastomer filling, the variable capacitor and of the electrical circuit connecting all elements of the device. In this paper such an objective is achieved by proposing a framework for reliable simulations of soft energy harvesters. In particular, a simple electrical circuit is realised by connecting the capacitor, stretched periodically by a source of mechanical work, in parallel with a battery through a diode and with an electrical load consuming the energy produced. The electrical model comprises resistances simulating the effect of the electrodes and of the conductivity current invariably present th...
Dielectric Elastomer Generators (DEGs) are devices that employ a cyclically variable membrane capaci...
The capabilities of a dielectric elastomer generator formed by a hyper-electro-elastic annular membr...
4nonenoneBortot, Eliana; Ralf Denzer; Andreas Menzel; Gei, MassimilianoBortot, Eliana; Ralf, Denzer;...
A predicting model for soft dielectric elastomer generators (DEGs) must consider a realistic model o...
A Dielectric Elastomer Generator (DEG) is an electromechanical transducer, basically a highly deform...
With attractive features like high energy density and flexibility, dielectric elastomer generators (...
This paper discussed the simulation of the dielectric elastomer as electroactive polymer (EAP) where...
Viscoelasticity dissipates the mechanical energy, leading to a reduction of energy conversion effici...
Dielectric polymers find an increased interest in research and development due to an intensive deman...
Dielectric elastomers are a class of electro-active polymers (EAPs) that can be used for the develop...
Dielectric elastomer generators (DEG) produce electrical energy by converting mechanical into electr...
Dielectric elastomers have gained substantial interest in the past few decades under research effort...
Smart electroactive materials have attracted much of the scientific interest over the past few years...
Dielectric elastomers (DEs) are polymer materials consisting of a network of polymer chains connecte...
AbstractThis work deals with electro-viscoelastic modelling and simulation of dielectric elastomer a...
Dielectric Elastomer Generators (DEGs) are devices that employ a cyclically variable membrane capaci...
The capabilities of a dielectric elastomer generator formed by a hyper-electro-elastic annular membr...
4nonenoneBortot, Eliana; Ralf Denzer; Andreas Menzel; Gei, MassimilianoBortot, Eliana; Ralf, Denzer;...
A predicting model for soft dielectric elastomer generators (DEGs) must consider a realistic model o...
A Dielectric Elastomer Generator (DEG) is an electromechanical transducer, basically a highly deform...
With attractive features like high energy density and flexibility, dielectric elastomer generators (...
This paper discussed the simulation of the dielectric elastomer as electroactive polymer (EAP) where...
Viscoelasticity dissipates the mechanical energy, leading to a reduction of energy conversion effici...
Dielectric polymers find an increased interest in research and development due to an intensive deman...
Dielectric elastomers are a class of electro-active polymers (EAPs) that can be used for the develop...
Dielectric elastomer generators (DEG) produce electrical energy by converting mechanical into electr...
Dielectric elastomers have gained substantial interest in the past few decades under research effort...
Smart electroactive materials have attracted much of the scientific interest over the past few years...
Dielectric elastomers (DEs) are polymer materials consisting of a network of polymer chains connecte...
AbstractThis work deals with electro-viscoelastic modelling and simulation of dielectric elastomer a...
Dielectric Elastomer Generators (DEGs) are devices that employ a cyclically variable membrane capaci...
The capabilities of a dielectric elastomer generator formed by a hyper-electro-elastic annular membr...
4nonenoneBortot, Eliana; Ralf Denzer; Andreas Menzel; Gei, MassimilianoBortot, Eliana; Ralf, Denzer;...