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Nonlinear analysis of two-dimensional steel, reinforced concrete and composite steel-concrete structures via coupling SCM/RPHM

机译:通过耦合SCM / RPHM对二维钢,钢筋混凝土和钢混混凝土结构进行非线性分析

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This paper presents a numerical methodology based on Euler-Bernoulli theory to simulate the steel, reinforced concrete and composite structures 2D nonlinear behavior. The displacement-based numerical formulation uses the principles of the Refined Plastic Hinge Method (RPHM) to simulate the concentrated plasticity at the corotational finite element nodal points. In order to present a more realistic simulation of the axial and flexural stiffness degradation, the RPHM is coupled with the Strain Compatibility Method (SCM), where the materials constitutive relations are used explicitly. The SCM is also applied in determining the structural elements' bearing capacity. Moreover, the present approach is not limited to a specific cross-sectional typology. Also addressed are residual stress models; these are introduced explicitly in subareas of steel profiles generated by a two-dimensional cross-sectional discretization. It should be emphasized that this study considers full interaction between the materials. Finally, the results obtained are compared with numerical and experimental findings available in the literature. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种基于欧拉-伯努利理论的数值方法,以模拟钢,钢筋混凝土和复合结构的二维非线性行为。基于位移的数值公式使用了“精炼铰链法”(RPHM)的原理来模拟在有限的有限元节点上的集中塑性。为了提供对轴向和弯曲刚度退化的更真实模拟,RPHM与应变兼容方法(SCM)结合使用,其中明确使用了材料本构关系。 SCM还用于确定结构元件的承载力。而且,本方法不限于特定的截面类型。还解决了残余应力模型。这些在通过二维截面离散化生成的钢型材分区中明确引入。应该强调的是,本研究考虑了材料之间的完全相互作用。最后,将获得的结果与文献中提供的数值和实验结果进行比较。 (C)2017 Elsevier Ltd.保留所有权利。

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