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Soft actuator for robotic applications based on dielectric elastomer: quasi-static analysis

Hyouk Ryeol Choi, S.M. Ryew, Kwang Mok Jung, H.M. Kim, Jae Wook Jeon, Jae‐Do Nam, Ryutaro Maeda, K. Tanie

Year
2003
Citations
36

Abstract

In this paper a new soft actuator based on dielectric elastomer is proposed. The actuator, called an antagonistically-driven linear actuator (ANTLA), has the muscle-like characteristics capable of performing the motions such as forward/backward/controllable compliance. Due to its simplicity of configuration and ease of fabrication, it has the advantage to be scale-independently implemented in meso- or micro-scale robotic applications. Its basic concepts are introduced and a quasi-static analysis is performed with experimental verifications.

Keywords

ActuatorElastomerComputer scienceDielectricSoft roboticsMaterials scienceMechanical engineeringControl engineeringEngineeringArtificial intelligence

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