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Mechanical performance of stirrup-confined concrete-filled steel tubular stub columns under axial loading

机译:箍筋约束钢管短柱的轴向受力性能

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This paper presents an experimental comparison between concrete-filled square steel tubular stub columns confined by internal loop or spiral stirrups, traditional square concrete-filled steel tubular stub columns (CFT), and inner stiffened square concrete-filled steel tubular stub columns. In total 11 specimens were prepared and loaded concentrically in compression to failure. From the experimental results, the superior mechanical performance of stirrup-confined CFT to stiffened CFT was first demonstrated and the effects of different configurations of confinement (such as internal stiffeners, hoops and stirrups) on the ultimate load-bearing capacity were clarified. ABAQUS was used to establish 3D finite element models for the CFT and stirrup-confined CFT stub columns under axial compression, in order to understand the contribution made by loop or spiral stirrup confinement to the improvement of overall mechanical performance. Further, a simplified approach was developed to estimate the ultimate bearing capacity of stirrup-confined CFT stub columns, with consideration of the confinement effects offered by both square steel tube and stirrups. The predicted results showed satisfactory agreement with the experimental and numerical results.
机译:本文介绍了由内部环形或螺旋箍筋限制的方钢管混凝土短柱,传统的方钢管混凝土短柱(CFT)和内部加劲方钢管混凝土短柱的实验比较。总共准备了11个样品,并同心加载至压缩至破坏。从实验结果中,首先证明了箍筋约束的CFT优于刚性CFT的优异机械性能,并阐明了不同限制结构(例如内部加劲肋,箍和箍筋)对最终承载力的影响。为了了解环形或螺旋箍筋约束对改善整体机械性能的贡献,使用了ABAQUS为CFT和箍筋约束的CFT短柱建立3D有限元模型。此外,考虑到方形钢管和箍筋的限制作用,开发了一种简化的方法来估算箍筋约束的CFT短柱的极限承载力。预测结果与实验和数值结果吻合良好。

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