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Biologically inspired anthropomorphic arm and dextrous robot hand actuated by smart-material-based artificial muscles

Aaron D. Price, Amor Jnifene, Hani E. Naguib

Year
2006
Citations
7

Abstract

Shape memory alloys (SMA) are a class of smart material having the unique ability to return to a predefined shape when heated. SMA based actuators have the potential to be very compact and low weight. As a result, much research has been devoted to the design of SMA based actuators; however, commercialization has been largely impeded by the small strain capacity inherent to SMA. To address this deficiency, this paper conveys the design of a large-strain SMA actuator (in excess of 30%) whose feasibility is investigated by integrating the actuators as artificial muscles in a two link anthropomorphic arm. The ensuing experimental results indicate that the actuators show great potential for a variety of emerging applications. Finally the design of an SMA based dextrous robotic hand evaluation facility is proposed, and provides a case study illustrating how smart structures provide a superior alternative to conventionally voluminous and heavy prosthetic actuators.

Keywords

SMA*ActuatorShape-memory alloyArtificial muscleRobotic armComputer scienceRobotSmart materialCommercializationBiomimetics

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