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Compliance-based modeling and design of straight-axis/circular-axis flexible hinges with small out-of-plane deformations

机译:基于合规性的平面外变形较小的直轴/圆轴柔性铰链建模和设计

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摘要

A matrix analytical compliance model is developed to evaluate the out-of-plane quasi-static response of general flexible hinges formed of serially-connected straight- and circular-axis segments with small and constant out-of-plane width, variable in-plane thickness, under the coupled action of bending and torsion. These flexible hinges can be used as standalone sensing devices or as monolithic joints in precision positioning and translatory-motion guiding mechanisms. The multiple-segment hinge compliances are obtained by adding the rotated, translated, and/or flipped individual segment compliances. The general model is applied to a class of symmetric flexible hinges and a particular design thereof is proposed. For several sets of geometric parameters, the hinge analytical compliances are validated by finite element simulation. This design is further incorporated into an out-of-plane-motion stage whose translatory and rotary stiffnesses are calculated based on the compliances of the three identical flexible hinges.
机译:建立了矩阵分析顺应性模型,以评估一般柔性铰链的平面外准静态响应,这些弹性铰链是由串联连接的直轴和圆轴段组成的,它们的面外宽度较小且恒定,面内可变厚度,在弯曲和扭转的耦合作用下。这些柔性铰链可以用作独立的传感设备,也可以用作精密定位和平移运动引导机构中的整体式接头。通过添加旋转的,平移的和/或翻转的单个节段的柔度获得多段铰链的柔量。将通用模型应用于一类对称柔性铰链,并提出其特殊设计。对于几组几何参数,通过有限元模拟验证了铰链的分析一致性。此设计进一步并入了平面外运动平台,该平台的移动和平移刚度是根据三个相同的柔性铰链的柔度计算得出的。

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