Artificial Muscles based on Dielectric Elastomers (DE) can potentially enable the realization of bio-inspired actuation systems whose intrinsic compliance and damping can be varied according to the task requirements. Nonetheless, the control of DE-based Variable Impedance Actuators (VIA) is not trivial owing to the non-linear viscoelastic response which characterizes the acrylic dielectrics commonly employed in practical devices. In this context, the purpose of the present paper is to outline a novel strategy for the control of DE-based VIA. Although the proposed methodology is applicable to generic DE morphologies, the considered system is composed of a couple of conicallyshaped DE films in agonistic-antagonistic configuration. Following p...
Dielectric elastomers (DEs) are polymer materials consisting of a network of polymer chains connecte...
We use finite elasticity to examine the behavior of a lightweight mechanism for rapid, reversible, a...
A novel design for a Dielectric Elastomer (DE) actuator is presented. The actuator is obtained by c...
Artificial Muscles based on Dielectric Elastomers (DE) can potentially enable the realization of bio...
Dielectric Elastomers (DE) seem to be a promising technology for the implementation of light and com...
Dielectric elastomers offer clear advantages over more traditional and conventional materials when s...
Dielectric elastomer actuators (DEAs) are known as a type of electric-driven artificial muscle that ...
Thanks to their large power densities, low costs and shock-insensitivity, Dielectric Elastomers (DE)...
Thanks to their large power densities, low costs and shock-insensitivity, Dielectric Elastomers (DE)...
Creating an artificial muscle has been one of the grand challenges of science and engineering. The i...
This paper presents a strategy of design, realization and control of pseudomuscular actuator control...
Dielectric polymers find an increased interest in research and development due to an intensive deman...
Electro-active polymers (EAPs) are emerging as feasible materials to mimic muscle-like actuation. Am...
Electroactive polymers (EAPs) have been widely employed as smart material for actuators in recent ye...
The aims of development for wearable robots so far have been increased forces with high precision of...
Dielectric elastomers (DEs) are polymer materials consisting of a network of polymer chains connecte...
We use finite elasticity to examine the behavior of a lightweight mechanism for rapid, reversible, a...
A novel design for a Dielectric Elastomer (DE) actuator is presented. The actuator is obtained by c...
Artificial Muscles based on Dielectric Elastomers (DE) can potentially enable the realization of bio...
Dielectric Elastomers (DE) seem to be a promising technology for the implementation of light and com...
Dielectric elastomers offer clear advantages over more traditional and conventional materials when s...
Dielectric elastomer actuators (DEAs) are known as a type of electric-driven artificial muscle that ...
Thanks to their large power densities, low costs and shock-insensitivity, Dielectric Elastomers (DE)...
Thanks to their large power densities, low costs and shock-insensitivity, Dielectric Elastomers (DE)...
Creating an artificial muscle has been one of the grand challenges of science and engineering. The i...
This paper presents a strategy of design, realization and control of pseudomuscular actuator control...
Dielectric polymers find an increased interest in research and development due to an intensive deman...
Electro-active polymers (EAPs) are emerging as feasible materials to mimic muscle-like actuation. Am...
Electroactive polymers (EAPs) have been widely employed as smart material for actuators in recent ye...
The aims of development for wearable robots so far have been increased forces with high precision of...
Dielectric elastomers (DEs) are polymer materials consisting of a network of polymer chains connecte...
We use finite elasticity to examine the behavior of a lightweight mechanism for rapid, reversible, a...
A novel design for a Dielectric Elastomer (DE) actuator is presented. The actuator is obtained by c...