Budding dielectric elastomer actuators are special type of electro-mechanical transducers that exploit electro-elastic instability phenomena to generate large out-of-plane axial-symmetric deformations of-circular membranes made of non-conductive rubbery material. In this paper a simplified explicit analytical model and a monolithic finite element model are described for the coupled electro-mechanical analysis and simulation of buckling dielectric elastomer membranes which undergo large electrically induced displacements. Experimental data are also reported which validate the developed models
To explore the time-dependent dissipative behaviors of a circular dielectric elastomer membrane subj...
The considerable electric-induced shape change, together with the attributes of lightweight, high ef...
This paper presents an experimentally validated electromechanical model of cylindrical actuators mad...
Budding dielectric elastomer actuators are special type of electro-mechanical transducers that explo...
Buckling dielectric elastomer actuators are a special type of electromechanical transducers that exp...
Dielectric elastomers (DEs) are an important class of materials, currently employed in the design an...
High voltage is required for the existing dielectric elastomer (DE) actuators to convert electrical ...
Subject to a mechanical load or a voltage, a membrane of a dielectric elastomer deforms. As for the ...
In modern actuator technology dielectric elastomers are considered as new materials to realize smart...
Abstract Dielectric elastomer actuators are susceptible to electromechanical instability, limiting o...
Dielectric elastomer (DE) actuators are able to typically show significant electromechanical perform...
Dielectric elastomer (DE) is capable of large deformation under electrical excitation. However, DE i...
Dielectric elastomers have gained substantial interest in the past few decades under research effort...
We propose a protocol to model accurately the electromechanical behavior of dielectric elastomer mem...
Dielectric elastomer actuators (DEAs) represent a new type of actuator made of electroactive polymer...
To explore the time-dependent dissipative behaviors of a circular dielectric elastomer membrane subj...
The considerable electric-induced shape change, together with the attributes of lightweight, high ef...
This paper presents an experimentally validated electromechanical model of cylindrical actuators mad...
Budding dielectric elastomer actuators are special type of electro-mechanical transducers that explo...
Buckling dielectric elastomer actuators are a special type of electromechanical transducers that exp...
Dielectric elastomers (DEs) are an important class of materials, currently employed in the design an...
High voltage is required for the existing dielectric elastomer (DE) actuators to convert electrical ...
Subject to a mechanical load or a voltage, a membrane of a dielectric elastomer deforms. As for the ...
In modern actuator technology dielectric elastomers are considered as new materials to realize smart...
Abstract Dielectric elastomer actuators are susceptible to electromechanical instability, limiting o...
Dielectric elastomer (DE) actuators are able to typically show significant electromechanical perform...
Dielectric elastomer (DE) is capable of large deformation under electrical excitation. However, DE i...
Dielectric elastomers have gained substantial interest in the past few decades under research effort...
We propose a protocol to model accurately the electromechanical behavior of dielectric elastomer mem...
Dielectric elastomer actuators (DEAs) represent a new type of actuator made of electroactive polymer...
To explore the time-dependent dissipative behaviors of a circular dielectric elastomer membrane subj...
The considerable electric-induced shape change, together with the attributes of lightweight, high ef...
This paper presents an experimentally validated electromechanical model of cylindrical actuators mad...