Dielectric elastomer generators (DEG) produce electrical energy by converting mechanical into electrical energy. Efficient operation requires homogeneous deformation of each single layer. However, by different internal and external influences like supports or the shape of a DEG the deformation will be inhomogeneous and hence negatively affect the amount of the generated electrical energy. Optimization of the deformation behavior leads to improved efficiency of the DEG and consequently to higher energy gain. In this work a numerical simulation model of a multilayer dielectric elastomer generator is developed using the FEM software ANSYS. The analyzed multilayer DEG consists of 49 active dielectric layers with layer thicknesses of 50 μm. The ...
The considerable electric-induced shape change, together with the attributes of lightweight, high ef...
In modern actuator technology dielectric elastomers are considered as new materials to realize smart...
The maximum energy density of a dielectric elastomer generator (DEG) represents the potential energy...
Dielectric elastomer generators (DEG) produce electrical energy by converting mechanical into electr...
This paper discussed the simulation of the dielectric elastomer as electroactive polymer (EAP) where...
Dielectric elastomers are smart materials that can be used to conceive solid-state electromechanical...
A predicting model for soft dielectric elastomer generators (DEGs) must consider a realistic model o...
In this project, the performance of the graphite and silver as electrodes on Dielectric Elastomer...
Dielectric Elastomer Generators (DEGs) are devices that employ a cyclically variable membrane capaci...
This paper discussed the simulation of the dielectric elastomer as electroactive polymer (EAP) where...
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...
Dielectric elastomers have gained substantial interest in the past few decades under research effort...
The considerable electric-induced shape change, together with the attributes of lightweight, high ef...
In modern actuator technology dielectric elastomers are considered as new materials to realize smart...
The maximum energy density of a dielectric elastomer generator (DEG) represents the potential energy...
Dielectric elastomer generators (DEG) produce electrical energy by converting mechanical into electr...
This paper discussed the simulation of the dielectric elastomer as electroactive polymer (EAP) where...
Dielectric elastomers are smart materials that can be used to conceive solid-state electromechanical...
A predicting model for soft dielectric elastomer generators (DEGs) must consider a realistic model o...
In this project, the performance of the graphite and silver as electrodes on Dielectric Elastomer...
Dielectric Elastomer Generators (DEGs) are devices that employ a cyclically variable membrane capaci...
This paper discussed the simulation of the dielectric elastomer as electroactive polymer (EAP) where...
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...
Dielectric elastomers have gained substantial interest in the past few decades under research effort...
The considerable electric-induced shape change, together with the attributes of lightweight, high ef...
In modern actuator technology dielectric elastomers are considered as new materials to realize smart...
The maximum energy density of a dielectric elastomer generator (DEG) represents the potential energy...