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Truss Model for Nonlinear Analysis of RC Members Subject to Cyclic Loading

机译:循环荷载作用下钢筋混凝土构件非线性分析的桁架模型

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摘要

The nonlinear finite-element analysis of RC members subjected to cyclic loading requires complicated modeling and analytical techniques. In the present study, a simplified nonlinear analytical method using a truss model was developed. In the nonlinear truss model, a RC member was idealized by longitudinal, transverse, and diagonal truss elements. Each element was modeled as a composite element of the concrete and the reinforcing bar. Cyclic stress-strain relationships were developed in order to describe the nonlinear behavior of the composite concrete and reinforcing-bar elements. The nonlinear truss model was applied to existing test specimens with various reinforcing-bar layouts under various loading conditions. The results predicted by the nonlinear truss model were compared with the test results. The comparison revealed that the nonlinear truss model predicted the load-carrying capacity and energy dissipation of the test specimens with reasonable precision. However, to estimate the deformation capacity of the specimens, the compression softening of concrete struts and the buckling and fracture of the reinforcing bar must be predicted more accurately.
机译:循环荷载作用下钢筋混凝土构件的非线性有限元分析需要复杂的建模和分析技术。在本研究中,开发了一种简化的使用桁架模型的非线性分析方法。在非线性桁架模型中,通过纵向,横向和对角桁架元素使RC构件理想化。每个元素都被建模为混凝土和钢筋的复合元素。建立循环应力-应变关系以描述复合混凝土和钢筋构件的非线性行为。将非线性桁架模型应用于在各种载荷条件下具有各种钢筋布置的现有试样。将非线性桁架模型预测的结果与测试结果进行比较。比较结果表明,非线性桁架模型能够以合理的精度预测试样的承载能力和能量耗散。但是,为了估计试件的变形能力,必须更准确地预测混凝土支杆的压缩软化以及钢筋的屈曲和断裂。

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