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A comparative study of displacement and mixed-based corotational finite element formulations for elasto-plastic three-dimensional beam analysis

机译:弹塑性三维梁分析的位移和基于混合的有限元有限元公式的比较研究

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Purpose - The purpose of this paper is to present eight local elasto-plastic beam element formulations incorporated into the corotational framework for two-noded three-dimensional beams. These formulations capture the warping torsional effects of open cross-sections and are suitable for the analysis of the nonlinear buckling and post-buckling of thin-walled frames with generic cross-sections. The paper highlights the similarities and discrepancies between the different local element formulations. The primary goal of this study is to compare all the local element formulations in terms of accuracy, efficiency and CPU-running time. Design/methodology/approach - The definition of the corotational framework for a two-noded three-dimensional beam element is presented, based upon the works of Battini .The definitions of the local element kinematics and displacements shape functions are developed based on both Timoshenko and Bernoulli assumptions, and considering low-order as well as higher-order terms in the second-order approximation of the Green-Lagrange strains. Element forces interpolations and generalized stress resultant vectors are then presented for both mixed-based Timoshenko and Bernoulli formulations. Subsequently, the local internal force vector and tangent stiffness matrix are derived using the principle of virtual work for displacement-based elements and the two-field Hellinger-Reissner assumed stress variational principle for mixed-based formulations, respectively. A full comparison and assessment of the different local element models are performed by means of several numerical examples. Findings - In this study, it is shown that the higher order elements are more accurate than the low-order ones, and that the use of the higher order mixed-based Bernoulli element seems to require the least number of FEs to accurately model the structural behavior, and therefore allows some reduction of the CPU time compared to the other converged solutions; where a larger number of elements are needed to efficiently discretize the structure. Originality/value - The paper reports computation times for each model in order to assess their relative efficiency. The effect of the numbers of Gauss points along the element length and within the cross-section are also investigated.
机译:目的-本文的目的是提出八种局部弹塑性梁单元公式,该公式被并入了两节点三维梁的坐标框架中。这些公式捕获了开放横截面的翘曲扭转效应,适用于分析具有通用横截面的薄壁框架的非线性屈曲和后屈曲。本文重点介绍了不同的本地元素配方之间的相似性和差异。这项研究的主要目的是在准确性,效率和CPU运行时间方面比较所有本地元素公式。设计/方法/方法-基于Battini的工作,提出了两节点三维梁单元的配准框架的定义,并根据Timoshenko和H.264开发了局部元素运动学和位移形状函数的定义Bernoulli假设,并在Green-Lagrange应变的二阶近似中考虑低阶和高阶项。然后给出了基于混合的Timoshenko和Bernoulli公式的单元力插值和广义应力合成矢量。随后,分别使用基于位移的单元的虚拟功原理和基于混合公式的两场Hellinger-Reissner假定应力变化原理,导出局部内力矢量和切线刚度矩阵。通过几个数值示例对不同局部元素模型进行了全面比较和评估。发现-在这项研究中,表明高阶元素比低阶元素更准确,并且使用基于混合的高阶伯努利元素似乎需要最少数量的有限元来准确地对结构进行建模行为,因此与其他融合解决方案相比,可以减少CPU时间;需要大量元素来有效离散结构的地方。原创性/价值-本文报告了每种模型的计算时间,以评估其相对效率。还研究了沿单元长度和横截面内高斯点数的影响。

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