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Incorporation of wall finite relative rotations in a geometrically exact thin-walled beam element

机译:在几何精确的薄壁梁单元中加入壁有限的相对旋转

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In this paper, a large displacement and finite rotation thin-walled beam element previously developed by the authors, which accounts for cross-section deformation, is extended by including finite relative rotations of the beam walls in the in-plane kinematic description of the cross-sections. The inclusion of these relative rotations is motivated by the fact that it enables a simple and meaningful representation of the cross-section in-plane distortion and allows for a co-rotational description of the wall “local-plate” behavior, which leads to a computationally efficient numerical implementation. The present extension preserves all features of the original formulation, namely the geometrically exact description of the beam mid-surface and the allowance for arbitrary cross-section deformation modes complying with Kirchhoff’s assumption. The efficiency of the resulting beam finite element is demonstrated by means of numerical examples, which include comparisons with solutions obtained by means of the previous beam finite element and standard shell finite elements.
机译:在本文中,作者先前开发的用于解决截面变形的大位移有限旋转薄壁梁单元,通过在横梁的平面运动学描述中包括梁壁的有限相对旋转而得到扩展。部分。之所以包含这些相对旋转,是因为它可以简单,有意义地表示横截面的面内变形,并允许对墙的“局部板”行为进行同向旋转描述,从而导致计算有效的数值实现。本扩展保留了原始公式的所有特征,即梁中表面的几何精确描述以及符合基尔霍夫假设的任意截面变形模式的余量。通过数值示例证明了所得梁有限元的效率,其中包括与通过先前梁有限元和标准壳有限元获得的解的比较。

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