首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Nonlinear modeling and analysis of compliant mechanisms with circular flexure hinges based on quadrature beam elements
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Nonlinear modeling and analysis of compliant mechanisms with circular flexure hinges based on quadrature beam elements

机译:基于正交梁元件的圆形挠曲铰链的非线性建模与分析

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摘要

Linear modeling approaches for compliant mechanisms attract significant attention. However, geometrical nonlinearities require consideration generally because they may result in the modeling error. This paper presents a nonlinear quadrature beam element modeling approach for compliant mechanisms. The geometrically exact beam theory is employed as the basis for the element. Meanwhile, the element tangent stiffness matrix is obtained by using the weak form quadrature element method, which does not need shape functions any more and only performs simple algebraic operations of weighting coefficient matrices. One quadrature beam element is needed to model a flexure hinge. For validating the effectiveness of the proposed approach, typical circular flexure hinges are employed. Moreover, a typical bridge-type compliant mechanism is studied by the proposed approach. Finally, the efficiency and accuracy of the proposed approach are verified by comparing with the finite element results. Meanwhile, the results show that the shear effect can be ignored, when a single flexure hinge is investigated. Nevertheless, the nonlinear behavior of compliant mechanisms is affected at the system level. In addition, the magnification ratio of a bridge-type compliant mechanism is related to the width and material of the structure when nonlinearity is considered.
机译:合规机制的线性建模方法引起了重大关注。然而,几何非线性通常需要考虑,因为它们可能导致建模误差。本文介绍了兼容机制的非线性正交光束元素建模方法。几何精确光束理论是用作元素的基础。同时,通过使用弱形正交元素方法获得元件切线刚度矩阵,其不再需要形状函数并且仅执行加权系数矩阵的简单代数操作。需要一个正交梁元件来模拟挠性铰链。为了验证所提出的方法的有效性,采用典型的圆形挠曲铰链。此外,通过所提出的方法研究了典型的桥式柔顺机构。最后,通过与有限元结果进行比较来验证所提出的方法的效率和准确性。同时,当研究了单个挠曲铰链时,结果表明可以忽略剪切效果。然而,柔顺机制的非线性行为在系统级受影响。另外,桥式柔顺机构的放大率与非线性考虑时的结构的宽度和材料有关。

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