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Confinement effect of ring-confined concrete-filled-steel-tube columns under uni-axial load

机译:单轴荷载下环钢管混凝土柱的约束效应

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Concrete-filled-steel-tube (CFST) columns show superior strength and ductility performance because of composite action. However, this cannot be fully developed at early elastic stage as steel dilates more than concrete and thereby causing imperfect interface bonding, which reduces the elastic strength and stiffness. To resolve the problem, confinement in the form of rings is proposed in this study to restrict the elastic lateral dilation of concrete. For verification, 62 CFST columns of various dimensions cast with nor-mal-(NSC) or high-strength concrete (HSC) installed with rings were tested under uni-axial compression in this study. From the results, it was evident that: (1) Rings could improve the axial load-carrying capacity, stiffness and decrease the strength degradation rate. (2) The critical confinement index (ξ_(cr)) was varied with concrete grade. (3) Rings were effective to limit the lateral deformation of concrete and the steel tube. Based on the obtained results, three analytical models taking into account the confining effects provided by the steel tube and rings developed by the authors are proposed to estimate the axial load-carrying capacity of unconfined and ring-confined CFST columns. The validity of the best proposed model is justified by comparing the predicted theoretical strength with the measured strength in the tests and experimental results by other researchers.
机译:钢管混凝土柱(CFST)由于具有复合作用,因此具有出色的强度和延展性。然而,由于钢比混凝土膨胀更多,从而导致界面粘结不完善,这在弹性初期就不能充分发展,从而降低了弹性强度和刚度。为了解决该问题,在本研究中提出以环的形式限制混凝土的弹性横向膨胀。为了验证这一点,在本研究中,对62根不同尺寸的CFTC圆柱进行了单轴压缩试验,这些圆柱由标准尺寸(NSC)或带有环的高强度混凝土(HSC)铸造而成。从结果可以看出:(1)环可以提高轴向承载能力,刚度并降低强度退化率。 (2)临界约束指数(ξ_(cr))随混凝土等级而变化。 (3)环有效地限制了混凝土和钢管的横向变形。基于获得的结果,提出了三种分析模型,其中考虑了作者开发的钢管和环的约束作用,以估计无约束和环约束CFST柱的轴向承载能力。通过将预测的理论强度与其他研究人员在测试和实验结果中测得的强度进行比较,可以证明最佳建议模型的有效性。

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