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Large deflection stiffness analysis of parallel prismatic leaf-spring flexures

机译:平行棱柱形板簧挠曲的大挠度刚度分析

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摘要

The support stiffness of a parallel leaf-spring flexure should ideally be high, but deteriorates with increasing displacement. This significant characteristic needs to be quantified precisely, because it limits the use of parallel leaf-spring flexures in precision mechanisms. We present new and refined analytic formulas for the stiffness in three dimensions taking into account shear compliance, constrained warping and limited parallel external drive stiffness. The formulas are supplemented by a finite element analysis using shell elements to include anticlastic curving effects. Several approximation equations are presented for determining the drive force precisely. Even at relatively large deflections the derived formulas are in good agreement with the finite element results.
机译:理想情况下,平行板簧挠曲的支撑刚度应该很高,但随着位移的增加而变差。这个重要的特性需要精确地量化,因为它限制了精密机构中平行板簧挠曲的使用。我们提供了三个维度上刚度的新的和完善的解析公式,其中考虑了剪切柔度,约束翘曲和有限的平行外部驱动刚度。通过使用壳单元的有限元分析来补充公式,以包括抗弹塑性弯曲效应。提出了几种近似方程式,用于精确确定驱动力。即使在较大的挠度下,导出的公式也与有限元结果非常吻合。

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