Home /Research /Design and Control of a Multi-jointed Robot Finger Driven by an Artificial Muscle Actuator
LOCOMOTION

Design and Control of a Multi-jointed Robot Finger Driven by an Artificial Muscle Actuator

Nguyễn Hữu Chúc, Nguyen Huu Lam Vuong, DukSang Kim, Hyungpil Moon, Ja Choon Koo, Youngkwan Lee, Jae‐Do Nam, Hyouk Ryeol Choi

Year
2010
Citations
16

Abstract

In this paper, we present a robotic actuation system using an artificial muscle actuator based on a dielectric elastomer. A novel linear actuator called a 'multi-stacked actuator' is proposed that can be embedded in the phalanges of a multi-jointed robot finger. This actuator ensures a compact design of the overall system. As an example, a 2-d.o.f. robot finger is developed and its performance under the proposed actuator system is experimentally demonstrated. The application of the proposed system can be extended easily to a multifingered robot hand and even to articulated mechanisms such as legged robots, etc.

Keywords

ActuatorRobotArtificial muscleRobot handRoboticsEngineeringControl theory (sociology)Computer scienceBiomimeticsPneumatic actuator

Related papers

Browse all LOCOMOTION papers