Dielectric elastomer actuators (DEAs) are known as ‘artificial muscles’ due to their large actuation strain, high energy density and self-sensing capability. The conical configuration has been widely adopted in DEA applications such as bio-inspired locomotion and micropumps for its good compactness, ease for fabrication and large actuation stroke. However, the conical protrusion of the DEA membrane is characterized by inhomogeneous stresses, which complicate their design. In this work, we present an analytical model-based optimization for conical DEAs with the three biasing elements: (I) linear compression spring; (II) biasing mass; and (III) antagonistic double-cone DEA. The optimization is to find the maximum stroke and work o...
Creating an artificial muscle has been one of the grand challenges of science and engineering. The i...
Thanks to their outstanding properties, in the last few years Dielectric Elastomer Actuators (DEAs) ...
Over the past couple of years, the field of soft robotics has seen tremendous expansion. As humans a...
Dielectric elastomer actuators (DEAs) are known as ‘artificial muscles’ due to their lar...
Due to their unique combination of features such as large deformation, high compliance, lightweight,...
Dielectric elastomer actuator (DEA) show promise for mechatronic applications due to the advantages ...
Dielectric elastomer actuator (DEA) show promise for mechatronic applications due to the advantages ...
Dielectric elastomer actuators (DEAs) are soft capacitors that undergo large shape changes when elec...
Dielectric elastomer actuators (DEAs) represent a new type of actuator made of electroactive polymer...
Dielectric elastomer actuation has been extensively investigated and applied to bionic robotics and ...
Thanks to their outstanding properties, in the last few years Dielectric Elastomer Actuators (DEAs)...
Dielectric elastomer actuation has been extensively investigated and applied to bionic robotics and ...
An analytical model and an operational procedure are presented, which make it possible to optimize ...
An analytical model and an operational procedure are presented, which make it possible to optimize ...
Due to their unique combination of features such as large deformation, high compliance, lightweight...
Creating an artificial muscle has been one of the grand challenges of science and engineering. The i...
Thanks to their outstanding properties, in the last few years Dielectric Elastomer Actuators (DEAs) ...
Over the past couple of years, the field of soft robotics has seen tremendous expansion. As humans a...
Dielectric elastomer actuators (DEAs) are known as ‘artificial muscles’ due to their lar...
Due to their unique combination of features such as large deformation, high compliance, lightweight,...
Dielectric elastomer actuator (DEA) show promise for mechatronic applications due to the advantages ...
Dielectric elastomer actuator (DEA) show promise for mechatronic applications due to the advantages ...
Dielectric elastomer actuators (DEAs) are soft capacitors that undergo large shape changes when elec...
Dielectric elastomer actuators (DEAs) represent a new type of actuator made of electroactive polymer...
Dielectric elastomer actuation has been extensively investigated and applied to bionic robotics and ...
Thanks to their outstanding properties, in the last few years Dielectric Elastomer Actuators (DEAs)...
Dielectric elastomer actuation has been extensively investigated and applied to bionic robotics and ...
An analytical model and an operational procedure are presented, which make it possible to optimize ...
An analytical model and an operational procedure are presented, which make it possible to optimize ...
Due to their unique combination of features such as large deformation, high compliance, lightweight...
Creating an artificial muscle has been one of the grand challenges of science and engineering. The i...
Thanks to their outstanding properties, in the last few years Dielectric Elastomer Actuators (DEAs) ...
Over the past couple of years, the field of soft robotics has seen tremendous expansion. As humans a...