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Nonlinear analysis of rectangular concrete-filled double steel tubular short columns incorporating local buckling

机译:考虑局部屈曲的矩形矩形钢管混凝土短柱的非线性分析

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Rectangular concrete-filled double steel tubular (CFDST) columns with inner circular steel tube possess higher structural performance than conventional concrete-filled steel tubular (CFST) columns. However, the local buckling of the outer steel tube of thin-walled rectangular CFDST columns has not been accounted for in the existing fiber element models and design codes that may overestimate the column ultimate axial strengths. This paper describes a computationally efficient fiber-based modeling technique developed for determining the behavior of concentrically-loaded rectangular CFDST short columns including the local buckling effects of the external steel tube and the confinement offered by the internal circular steel tube. The effective width concept is used to simulate the post-local buckling of the outer steel tube. Comparative studies are undertaken to verify the fiber-based model with the relevant test results. The computational model is then employed to investigate the axial load strain responses of rectangular CFDST short columns with various key design variables. A design equation is developed for computing the ultimate axial loads of short rectangular CFDST columns and compared with design methods given in several international design codes. It is shown that the fiber-based modeling technique and the proposed design model predict well the structural performance of short CFDST columns.
机译:带有内部圆形钢管的矩形钢管混凝土双柱(CFDST)柱具有比常规钢管混凝土(CFST)柱更高的结构性能。但是,在现有的纤维单元模型和设计规范中并未考虑薄壁矩形CFDST圆柱外钢管的局部屈曲,因为它们可能高估了圆柱的极限轴向强度。本文介绍了一种计算有效的基于纤维的建模技术,该技术用于确定同心加载的矩形CFDST短柱的行为,包括外部钢管的局部屈曲效应和内部圆形钢管提供的约束。有效宽度概念用于模拟外钢管的局部后屈曲。进行了比较研究,以验证具有相关测试结果的基于纤维的模型。然后使用该计算模型来研究具有各种关键设计变量的矩形CFDST短柱的轴向载荷应变响应。开发了一个设计公式,用于计算短矩形CFDST柱的极限轴向载荷,并与几种国际设计规范中给出的设计方法进行了比较。结果表明,基于纤维的建模技术和所提出的设计模型可以很好地预测短CFDST柱的结构性能。

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