首页 /研究 /An Engineering Method for Comparing Selectively Compliant Joints in Robotic Structures
OTHER

An Engineering Method for Comparing Selectively Compliant Joints in Robotic Structures

Giovanni Berselli, Alessandro Guerra, Gabriele Vassura, Angelo Oreste Andrisano

发表年份
2014
引用次数
35

摘要

Large displacement compliant joints can substitute traditional kinematic pairs in robotic articulated structures for increasing ease-of-assembly, robustness, and safety. Nonetheless, besides their limited motion capabilities, compliant joints might be subjected to undesired spatial deformations which can deteriorate the system stability and performance whenever a low number of control inputs is available. In all these cases, it is convenient to select/design joint morphologies which enable a selectively compliant behavior, i.e., a low stiffness along a single desired direction. Within this context, this paper outlines an engineering method for quantifying the joint's selective compliance by means of local and global performance indices. The approach is validated by comparing two beam-like flexures whose analytic solution is known from the literature. Finally, two joint morphologies, previously employed in the fabrication of robotic/prosthetic hands, are critically compared on the basis of the proposed criteria.

关键词

Compliant mechanismKinematicsRobustness (evolution)StiffnessComputer scienceJoint (building)Context (archaeology)Joint stiffnessEngineeringControl engineering

相关论文

查看 OTHER 分类全部论文