首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part K, Journal of Multi-body Dynamics >A curved beam element in the analysis of flexible multi-body systems using the absolute nodal coordinates
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A curved beam element in the analysis of flexible multi-body systems using the absolute nodal coordinates

机译:使用绝对节点坐标的柔性多体系统分析中的弯曲梁单元

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摘要

In this investigation, a curved beam element is developed for the analysis of large deformation of flexible multi-body systems using the absolute nodal coordinate formulation. In the existing beam element in this formulation, because the elastic forces are defined using the Green-Lagrange strain tensor as a volume element, locking phenomenon associated with the shear and cross-section deformation leads to erroneously stiffer bending characteristics. In order to circumvent this drawback, the Hellinger-Reissner variational principle is applied to modify the shear stress distribution, whereas the assumed strain method is employed to alleviate the locking associated with the cross-section deformation. The consistent tangent stiffness matrices are derived for the curved beam element and used with implicit integration methods. Numerical examples are presented in order to demonstrate the performance of the curved beam element developed in this investigation.
机译:在这项研究中,开发了一种弯曲梁单元,用于使用绝对节点坐标公式来分析柔性多体系统的大变形。在这种形式的现有梁单元中,由于使用格林-拉格朗日应变张量作为体积单元来定义弹性力,因此与剪切变形和横截面变形相关的锁定现象会导致错误的刚性弯曲特性。为了克服此缺点,应用了Hellinger-Reissner变分原理来修改剪切应力分布,而采用假定的应变方法来减轻与横截面变形相关的锁定。为弯曲梁单元导出一致的切线刚度矩阵,并与隐式积分方法一起使用。给出了数值示例,以证明在此研究中开发的弯曲梁元件的性能。

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