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Accurate low DOF modeling of a planar compliant mechanism with flexure hinges: the equivalent beam methodology

机译:带有挠性铰链的平面柔顺机构的精确低自由度建模:等效梁方法

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摘要

A methodology for accurate and efficient finite elements method (FEM) simulations of planar compliant mechanisms with flexure hinges is presented. First, using symmetry/antisymmetry boundary conditions and 3D elements, one-eighth of a single hinge is simulated to determine its true stress/stiffness characteristics. A set of fictitious beams is derived, which have the identical characteristics. This set is used in conjunction with other beams that model relatively stiff links to generate an equivalent model of an entire mechanism consisting of the beam elements only. The model has a low number of degrees-of-freedom (DOF) and appears to be more accurate than any 2D FEM models, even those with very large number of DOF. The methodology has been developed specifically for the right circular flexure hinge; however, it can be applied to all types of revolute flexure hinges.
机译:提出了一种精确有效的带有挠性铰链的平面柔性机构有限元方法(FEM)仿真的方法。首先,使用对称/非对称边界条件和3D元素,对单个铰链的八分之一进行仿真,以确定其真实应力/刚度特性。导出一组虚拟光束,它们具有相同的特性。该集合与对相对较硬的链接建模的其他梁结合使用,以生成仅由梁元素组成的整个机构的等效模型。该模型的自由度(DOF)数量较少,并且似乎比任何2D FEM模型(甚至那些具有大量DOF的模型)都更准确。该方法是专门为右圆形弯曲铰链开发的。但是,它可以应用于所有类型的旋转挠性铰链。

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