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An analysis-based model for axially loaded circular CFST columns

机译:基于分析的圆形CFST圆形圆柱模型

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摘要

Concrete-filled-steel-tube (CFST) columns have been increasingly adopted in many modern structures due to the beneficial composite action between steel tube and core concrete. Previous experimental and theoretical studies have proved this composite action can be further improved by providing external confinement in the form of steel rings, tie bars, spirals or jackets. A theoretical model developed by the authors previously based on (1) an accurate hoop strain equation; (2) an actively confined concrete model; (3) a three-dimensional steel model; (4) Interaction of core concrete, steel tube and external confinement was adopted in this paper to conduct a parametric study, which aims at investigating the effects of steel tube yield strength, concrete compressive strength, steel ratio and external confinement on the uni-axial behaviour of CFST columns. From the results in parametric study, two sets of critical steel ratios based on two different levels of ductility at different steel yield and concrete compressive strengths have been obtained. In addition, the maximum column strength obtained from the model and previous experimental studies was compared with the design strength calculated using different design codes. New design equations that can predict the axial strength more satisfactorily have also been proposed.
机译:由于钢管与核心混凝土之间的有益复合作用,钢管混凝土(CFST)柱已在许多现代结构中被越来越多地采用。先前的实验和理论研究证明,通过以钢环,拉杆,螺旋或护套的形式提供外部约束,可以进一步改善这种复合作用。作者先前基于(1)精确的环向应变方程建立的理论模型; (2)主动约束的混凝土模型; (3)三维钢模型; (4)采用芯混凝土,钢管与外部约束的相互作用进行参数研究,旨在研究钢管屈服强度,混凝土抗压强度,钢比和外部约束对单轴的影响。 CFST列的行为。根据参数研究的结果,获得了基于两种不同延性水平,不同钢屈服强度和混凝土抗压强度的两组临界钢比。此外,将从模型和先前的实验研究中获得的最大柱强度与使用不同设计规范计算出的设计强度进行了比较。还提出了可以更令人满意地预测轴向强度的新设计方程。

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