Dielectric Elastomer Generators (DEGs) are promising devices able to convert mechanical to electrical energy by exploiting the variations in the capacitance of a deformable dielectric membrane. In this work the optimal performance of DEGs in-plane equibiaxial loading configuration is investigated. We analyze a four-stroke cycle which is chosen due to its simplicity and availability. Four failure modes of the DEG are accounted for: electric breakdown, electromechanical instability, ultimate stretch, and loss of the in-plane tensile state. Explicit expressions for the electromechanical fields in the membrane and the harvested energy are derived, and a constraint optimization procedure is employed to determine the optimal cycles. We find that ...
Using principles of damped harmonic oscillation with continuous media, we examineelectrostatic energ...
This paper optimizes the energy harvesting cycle of dissipative dielectric elastomer generators (DEG...
Dielectric elastomers are smart materials that can be used to conceive solid-state electromechanical...
Dielectric Elastomer Generators (DEGs) are promising devices able to convert mechanical to electrica...
The capabilities of a dielectric elastomer generator formed by a hyper-electro-elastic annular membr...
A Dielectric Elastomer Generator (DEG) is an electromechanical transducer, basically a highly deform...
The performances of energy-harvesting generators based on dielectric elastomers are investigated. Th...
4siThe performance of energy harvesting generators based on dielectric elastomers is investigated in...
AbstractThe performance of energy harvesting generators based on dielectric elastomers is investigat...
The maximum energy density of a dielectric elastomer generator (DEG) represents the potential energy...
Dielectric Elastomer Generators (DEGs) are devices that employ a cyclically variable membrane capaci...
Dielectric elastomer generators (DEGs) are attractive candidates for harvesting electrical energy fr...
In this letter, a theoretical framework describing an energy harvesting cycle including the loss of ...
With attractive features like high energy density and flexibility, dielectric elastomer generators (...
none3noDielectric Elastomers (DEs) are a very promising technology for the development of energy har...
Using principles of damped harmonic oscillation with continuous media, we examineelectrostatic energ...
This paper optimizes the energy harvesting cycle of dissipative dielectric elastomer generators (DEG...
Dielectric elastomers are smart materials that can be used to conceive solid-state electromechanical...
Dielectric Elastomer Generators (DEGs) are promising devices able to convert mechanical to electrica...
The capabilities of a dielectric elastomer generator formed by a hyper-electro-elastic annular membr...
A Dielectric Elastomer Generator (DEG) is an electromechanical transducer, basically a highly deform...
The performances of energy-harvesting generators based on dielectric elastomers are investigated. Th...
4siThe performance of energy harvesting generators based on dielectric elastomers is investigated in...
AbstractThe performance of energy harvesting generators based on dielectric elastomers is investigat...
The maximum energy density of a dielectric elastomer generator (DEG) represents the potential energy...
Dielectric Elastomer Generators (DEGs) are devices that employ a cyclically variable membrane capaci...
Dielectric elastomer generators (DEGs) are attractive candidates for harvesting electrical energy fr...
In this letter, a theoretical framework describing an energy harvesting cycle including the loss of ...
With attractive features like high energy density and flexibility, dielectric elastomer generators (...
none3noDielectric Elastomers (DEs) are a very promising technology for the development of energy har...
Using principles of damped harmonic oscillation with continuous media, we examineelectrostatic energ...
This paper optimizes the energy harvesting cycle of dissipative dielectric elastomer generators (DEG...
Dielectric elastomers are smart materials that can be used to conceive solid-state electromechanical...