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Finite element analysis of damage and failure of reinforced concrete members under earthquake loading

机译:地震作用下钢筋混凝土构件破坏与破坏的有限元分析

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This paper presents a three-dimensional analysis framework, based on the explicit finite element method, for the simulation of reinforced concrete components under cyclic static and dynamic loading. A recently developed triaxial constitutive model for concrete is combined with a material model for reinforcing steel which can account for rupture due to low-cycle fatigue. The reinforcing bars are represented with geometrically nonlinear beam elements to account for buckling of the reinforcement. The strain penetration effect is also accounted for in the models. The modeling scheme is used in a commercial finite element program and validated with the results of experimental static and dynamic tests on reinforced concrete columns and walls. The analyses are supplemented with a parametric study to investigate the impact of several modeling assumptions on the obtained results.
机译:本文提出了一种基于显式有限元方法的三维分析框架,用于钢筋混凝土构件在静态和动态循环荷载作用下的仿真。最近开发的用于混凝土的三轴本构模型与用于钢筋的材料模型相结合,可以解决由于低周疲劳引起的破裂。钢筋用几何非线性梁元素表示,以说明钢筋的屈曲。在模型中也考虑了应变渗透效应。该建模方案用于商业有限元程序,并通过钢筋混凝土柱和墙的静态和动态试验结果进行了验证。这些分析辅以参数研究,以研究几种建模假设对获得的结果的影响。

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