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Three flexure hinges for compliant mechanism designs based on dimensionless graph analysis

机译:基于无因次图分析的三种挠性铰链,用于顺应性机构设计

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摘要

This paper presents the dimensionless empirical equations and graph expressions of three flexure hinges for compliant mechanism designs. The in-plane and out-of-plane stiffnesses of the flexure hinges are developed. The rotational precision, denoted by the midpoint stiffness, is derived for the purpose of optimized geometric design. Based on the developed methodologies, the influences of the geometric parameters on the performance of the flexure hinges are investigated, and the performance comparisons among the flexure hinges are conducted to further understand the characteristics of these kinds of compliant mechanisms.
机译:本文提出了用于柔性机构设计的三种挠性铰链的无量纲经验方程式和图形表达式。挠性铰链的平面内和平面外刚度得到发展。为了优化几何设计,导出了以中点刚度表示的旋转精度。在此基础上,研究了几何参数对挠性铰链性能的影响,并对挠性铰链之间的性能进行了比较,以进一步了解这类柔顺机构的特性。

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