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A distributed plasticity model for cyclic analysis of concrete-filled steel tube beam-columns and composite frames

机译:钢管混凝土梁柱与组合框架循环分析的分布式塑性模型

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This paper presents the constitutive formulation and cyclic analysis capability of a three--dimensional fiber-based distributed plasticity finite element for square or rectangular concrete-fined steel tube (CFT) beam-columns. A related paper outlines the geometrically nonlinear formulation and the element's formulation for interlayer slip between the steel tube and concrete core. The present paper discusses the steel and concrete cyclic material models, which are each based on stress--space bounding--surface plasticity formu- lations. The paper details the calibration of these models to steel coupon tests and to experiments of short CFTs in flexure which yield moment--curvature--thrust results. Verification of the model is provided by comparing to several experiments of CFT beam--col- umns loaded monotonically and cyclically, proportionally and non- proportionally, and in single and reverse curvature. A final example presents a comparison of the analysis to the experimental results of a composite subassemblage consisting of three steel l--girders framing rigidly into a CFT beam-column, which is thus subjected to axial force plus cyclic biaxial bending.
机译:本文介绍了方形或矩形混凝土制钢管(CFT)梁柱的三维纤维基分布式塑性有限元的本构公式和循环分析能力。相关论文概述了钢管和混凝土芯之间的层间滑移的几何非线性公式和单元公式。本文讨论了钢和混凝土循环材料模型,每种模型都基于应力-空间边界-表面可塑性公式。本文详细介绍了这些模型的校准,钢试样测试以及弯曲时短CFT的试验,这些试验产生弯矩-曲率-推力结果。通过对CFT梁的几个实验进行比较,对模型进行了验证,这些实验是单调和周期性,成比例和非成比例以及单曲和反曲率加载的。最后一个例子将分析与由三个钢制L形梁组成的复合子组件的实验结果进行了比较,该三个钢制L形梁牢固地框架在CFT梁柱中,从而经受了轴向力加循环双轴弯曲。

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