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Advanced analysis for planar steel frames with semi-rigid connections using plastic-zone method

机译:使用塑料区方法对半刚性连接的平面钢框架进行高级分析

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This paper presents a displacement-based finite element procedure for second-order distributed plasticity analysis of planar steel frames with semi-rigid beam-to-column connections under static loadings. A partially strain-hardening elastic-plastic beam-column element, which directly takes into account geometric nonlinearity, gradual yielding of material, and flexibility of semi-rigid connections, is proposed. The second-order effects and distributed plasticity are considered by dividing the member into several sub-elements and meshing the cross-section into several fibers. A new nonlinear solution procedure based on the combination of the Newton-Raphson equilibrium iterative algorithm and the constant work method for adjusting the incremental load factor is proposed for solving nonlinear equilibrium equations. The nonlinear inelastic behavior predicted by the proposed program compares well with previous studies. Coupling effects of three primary sources of nonlinearity, geometric imperfections, and residual stress are investigated and discussed in this paper.
机译:本文提出了基于位移的有限元程序,用于在静载荷下具有半刚性梁到柱连接的平面钢框架的二阶分布塑性分析。提出了一种部分应变硬化的弹塑性梁柱单元,其直接考虑了几何非线性,材料的逐渐屈服以及半刚性连接的灵活性。通过将构件划分为几个子元素并将横截面划分为数个纤维来考虑二阶效应和分布的可塑性。提出了一种基于牛顿-拉夫森平衡迭代算法和调整增量载荷因子的恒定功方法的非线性求解程序,用于求解非线性平衡方程。该程序预测的非线性非弹性行为与以前的研究比较好。本文研究并讨论了三种主要的非线性,几何缺陷和残余应力的耦合效应。

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