Design and analysis of a multi-notched flexure hinge for compliant mechanisms

0203 mechanical engineering 02 engineering and technology
DOI: 10.1016/j.precisioneng.2016.12.012 Publication Date: 2017-01-05T19:15:32Z
ABSTRACT
Abstract This article presents a new multi-notched flexure hinge, which consists of two right circular and two parabolic notches, for positioning stages based on compliant mechanisms. First, the configuration of the presented multi-notched hinge is obtained using topology optimization, and the final shape is proposed based on post-processing. Second, the dimensionless empirical equations for the stiffness, rotational precision and stress levels of the flexure hinges are developed using finite element analysis (FEA). Third, based on the established equations, the influences of the geometric parameters on the performance of the flexure hinge are investigated. Finally, to further understand the characteristics of this type of flexure hinge, comparisons with flexure hinges of various shapes are performed in terms of stiffness, rotational precision and stress levels.
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