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Local-global interaction buckling of square high strength concrete-filled double steel tubular slender beam-columns

机译:方形高强混凝土双钢管细长梁柱的局部-整体相互作用屈曲

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High-strength square concrete-filled double steel tubular (CFDST) slender beam-columns with a circular internal steel tube subjected to eccentric loads may undergo interaction local-global buckling. No computational studies on the interaction local-global buckling of slender square CFDST beam-columns have been reported and their behavior has not been fully understood. This paper describes a mathematical model for the simulation of the interaction local-global buckling behavior of square high-strength CFDST slender beam-columns under axial compression in combination with uniaxial bending. The mathematical model is formulated by the fiber approach, accounting for confinement provided by the internal circular steel tube, and geometric and material nonlinearities. An incremental-iterative numerical procedure is designed to quantify the local-global interaction buckling responses of slender CFDST columns. Efficient numerical solution algorithms implementing the inverse quadratic method are developed for solving the nonlinear equilibrium dynamic functions of CFDST columns. The formulation proposed is verified by existing experimental data on CFDST columns as well as double-skin concrete-filled steel tubular (DCFST) slender columns. The developed computational model is employed to study the local-global interaction buckling behavior of CFDST columns made of high-strength materials with various important parameters. Simplified design models are proposed for determining the ultimate axial strengths of slender square CFDST columns under axial compression and the interaction curves of CFDST slender beam-columns loaded eccentrically. It is demonstrated that the computational and design models predict well the interaction local-global buckling behavior and strength of slender square CFDST beam-columns.
机译:具有圆形内钢管的高强度方形混凝土双钢管(CFDST)细长梁柱可能会承受局部-整体屈曲。还没有关于细长方形CFDST梁柱相互作用局部-整体屈曲的计算研究的报道,并且对它们的行为还没有完全了解。本文描述了一个数学模型,用于模拟方形高强度CFDST细长梁柱在轴向压缩和单轴弯曲作用下的相互作用局部-整体屈曲行为。通过纤维方法来建立数学模型,并考虑内部圆形钢管提供的约束以及几何和材料非线性。设计了增量迭代数值程序来量化细长CFDST柱的局部-整体相互作用屈曲响应。为解决CFDST柱的非线性平衡动力功能,开发了采用逆二次方法的高效数值解算法。建议的配方已通过CFDST柱以及双层混凝土钢管混凝土(DCFST)细长柱上的现有实验数据进行了验证。所开发的计算模型用于研究由具有各种重要参数的高强度材料制成的CFDST柱的局部-整体相互作用屈曲行为。提出了简化的设计模型来确定细长方形CFDST柱在轴向压缩下的极限轴向强度以及偏心加载的CFDST细长梁柱的相互作用曲线。结果表明,计算模型和设计模型能够很好地预测细长方形CFDST梁柱的局部-整体屈曲行为和强度。

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