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Biomimetic Spider Leg Joints: A Review from Biomechanical Research to Compliant Robotic Actuators

Stefan Landkammer, Florian Winter, Daniel K. Schneider, Rüdiger Hornfeck

Year
2016
Citations
30
Access
Open access

Abstract

Due to their inherent compliance, soft actuated joints are becoming increasingly important for robotic applications, especially when human-robot-interactions are expected. Several of these flexible actuators are inspired by biological models. One perfect showpiece for biomimetic robots is the spider leg, because it combines lightweight design and graceful movements with powerful and dynamic actuation. Building on this motivation, the review article focuses on compliant robotic joints inspired by the function principle of the spider leg. The mechanism is introduced by an overview of existing biological and biomechanical research. Thereupon a classification of robots that are bio-inspired by spider joints is presented. Based on this, the biomimetic robot applications referring to the spider principle are identified and discussed.

Keywords

ActuatorBiomimeticsRobotMechanism (biology)SpiderComputer scienceSoft materialsArtificial intelligenceSoft roboticsEngineering

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