This paper describes the concept of a lightweight and deformable structure with intrinsic distributed electromechanical actuation, potentially suitable to develop soft linear peristaltic pumps for incompressible fluids. The proposed system is represented by a series of radially expanding flexible tubular modules, made of dielectric elastomers (DEs), as one of the most promising classes of electroactive polymers for actuation. Each module consists of a cylindrical hollow DE actuator, working in purely radial mode with specific boundary constraints. The static electromechanical transduction performance of such a module was investigated analytically, numerically, and experimentally. For this purpose, predictions obtained from an analytical mod...
The rapidly growing adoption of dielectric elastomer (DE) actuators as a high performance EAP techno...
Electro-active polymers (EAPs) are emerging as feasible materials to mimic muscle-like actuation. Am...
Abstract. This paper focuses on the development of novel actuators for a portable force feedback glo...
The so-called hydrostatically coupled dielectric elastomer actuators (HC-DEAs) have recently been de...
Within the emerging field of polymer-based mechatronics, soft materials showing intrinsic electromec...
Dielectric elastomer actuators (DEAs) have been widely investigated for more than 30 years. Lately, ...
So-called dielectric elastomer (DE) actuators represent today one of the best performing technologie...
This paper presents a bio-inspired, dielectric elastomer (DE) based tubular pumping unit, developed ...
Pumps are widely used in nature and engineering to transport fluids, particles, and mixtures. Compar...
This paper reports a miniaturized soft dielectric elastomer actuator targeted at an active flow cont...
This paper presents a new type of contractile polymer-based electromechanical linear actuator. The d...
In this paper, we propose an improvement of a dielectric elastomer actuator (DEA) based augmented ao...
In modern actuator technology dielectric elastomers are considered as new materials to realize smart...
The invention relates to actuators based on electroactive polymeric materials for use in pumping flu...
Dielectric polymers find an increased interest in research and development due to an intensive deman...
The rapidly growing adoption of dielectric elastomer (DE) actuators as a high performance EAP techno...
Electro-active polymers (EAPs) are emerging as feasible materials to mimic muscle-like actuation. Am...
Abstract. This paper focuses on the development of novel actuators for a portable force feedback glo...
The so-called hydrostatically coupled dielectric elastomer actuators (HC-DEAs) have recently been de...
Within the emerging field of polymer-based mechatronics, soft materials showing intrinsic electromec...
Dielectric elastomer actuators (DEAs) have been widely investigated for more than 30 years. Lately, ...
So-called dielectric elastomer (DE) actuators represent today one of the best performing technologie...
This paper presents a bio-inspired, dielectric elastomer (DE) based tubular pumping unit, developed ...
Pumps are widely used in nature and engineering to transport fluids, particles, and mixtures. Compar...
This paper reports a miniaturized soft dielectric elastomer actuator targeted at an active flow cont...
This paper presents a new type of contractile polymer-based electromechanical linear actuator. The d...
In this paper, we propose an improvement of a dielectric elastomer actuator (DEA) based augmented ao...
In modern actuator technology dielectric elastomers are considered as new materials to realize smart...
The invention relates to actuators based on electroactive polymeric materials for use in pumping flu...
Dielectric polymers find an increased interest in research and development due to an intensive deman...
The rapidly growing adoption of dielectric elastomer (DE) actuators as a high performance EAP techno...
Electro-active polymers (EAPs) are emerging as feasible materials to mimic muscle-like actuation. Am...
Abstract. This paper focuses on the development of novel actuators for a portable force feedback glo...