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A Symbolic Formulation for Analytical Compliance Analysis and Synthesis of Flexure Mechanisms

机译:用于分析柔度分析和挠曲机构综合的符号公式

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摘要

This paper presents a symbolic formulation for analytical compliance analysis and synthesis of flexure mechanisms with serial, parallel, or hybrid topologies. Our approach is based on the screw theory that characterizes flexure deformations with motion twists and loadings with force wrenches. In this work, we first derive a symbolic formulation of the compliance and stiffness matrices for commonly used flexure elements, flexure joints, and simple chains. Elements of these matrices are all explicit functions of flexure parameters. To analyze a general flexure mechanism, we subdivide it into multiple structural modules, which we identify as serial, parallel, or hybrid chains. We then analyze each module with the known flexure structures in the library. At last, we use a bottom-up approach to obtain the compliance/stiffness matrix for the overall mechanism. This is done by taking appropriate coordinate transformation of twists and wrenches in space. Four practical examples are provided to demonstrate the approach. A numerical example is employed to compare analytical compliance models against a finite element model. The results show that the errors are sufficiently small (2%, compared with finite element (FE) model), if the range of motion is limited to linear deformations. This work provides a systematical approach for compliance analysis and synthesis of general flexure mechanisms. The symbolic formulation enables subsequent design tasks, such as compliance synthesis or sensitivity analysis.
机译:本文提出了一种符号表示形式,用于分析顺应性分析以及具有串行,并行或混合拓扑的挠曲机制的综合。我们的方法基于螺杆理论,该理论表征了运动扭曲和力扳手承受的载荷引起的挠曲变形。在这项工作中,我们首先导出常用挠曲元件,挠曲接头和简单链条的柔度和刚度矩阵的符号表示。这些矩阵的元素都是弯曲参数的显式函数。为了分析一般的挠曲机制,我们将其细分为多个结构模块,我们将其识别为串行,并行或混合链。然后,我们使用库中已知的挠曲结构来分析每个模块。最后,我们使用一种自下而上的方法来获取整个机制的依从性/刚度矩阵。这是通过对空间中的扭曲和扳手进行适当的坐标转换来完成的。提供了四个实际示例来演示该方法。数值示例用于比较分析柔量模型与有限元模型。结果表明,如果运动范围限于线性变形,则误差足够小(与有限元(FE)模型相比为2%)。这项工作为顺应性分析和一般挠曲机构的综合提供了系统的方法。该符号表示法可以实现后续的设计任务,例如合规性综合或灵敏度分析。

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