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Behaviour of CFRP-confined concrete-filled circular steel tube stub columns under axial loading

机译:CFRP约束混凝土圆钢管短柱的轴向受压性能

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This paper presents an experimental and theoretical study of CFRP-confined concrete-filled circular steel tube (CFT) stub columns, which aims at investigating the effects of different numbers of CFRP layers and concrete strengths on the mechanical performance of CFRP-confined CFT stub columns. Based on continuum mechanics, a mechanical model of concentric cylinder consisting of CFRP, circular steel tube and concrete core under concentric loading was established and the corresponding elasto-plastic methods were obtained through a FORTRAN program. The influence of the number of CFRP layers on the ultimatecapacity, ductility and confinement effect of the steel tube on the core concrete wasdiscussed and identified. Finally,based on the limit equilibrium and elasto-plastic methods, a simplified formula for the ultimatecapacity of CFRP-confined CFT stub columns was proposed. Good agreement of the ultimate capacity was found between the elasto-plastic methods and the proposed formula, with the maximum discrepancy less than 12%.
机译:本文介绍了CFRP填充钢管混凝土短柱的实验和理论研究,旨在研究CFRP层数和混凝土强度对CFRP钢管混凝土短柱力学性能的影响。 。基于连续力学,建立了由CFRP,圆形钢管和混凝土芯共同受力的同心圆柱体力学模型,并通过FORTRAN程序获得了相应的弹塑性方法。讨论并确定了CFRP层数对钢管对核心混凝土极限承载力,延性和约束作用的影响。最后,基于极限平衡和弹塑性方法,提出了CFRP约束CFT短管柱极限承载力的简化公式。弹塑性方法与所提出的公式之间的极限承载力很好地吻合,最大差异小于12%。

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