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Uni-axial behaviour of normal-strength concrete-filled-steel-tube columns with external confinement

机译:带外部约束的普通强度钢管混凝土柱的单轴性能

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摘要

Because of the heavy demand of confining steel to restore the column ductility in seismic regions, it is more efficient to confine these columns by hollow steel tube to form concrete-filled-steel-tube (CFST) column. Compared with transverse reinforcing steel, steel tube provides a stronger and more uniform confining pressure to the concrete core, and reduces the steel congestion problem for better concrete placing quality. However, a major shortcoming of CFST columns is the imperfect steel-concrete interface bonding occurred at the elastic stage as steel dilates more than concrete in compression. This adversely affects the confining effect and decrease the elastic modulus. To resolve the problem, it is proposed in this study to use external steel confinement in the forms of rings and ties to restrict the dilation of steel tube. For verification, a series of uni-axial compression test was performed on some CFST columns with external steel rings and ties. From the results, it was found that: (1) Both rings and ties improved the stiffness of the CFST columns and (2) the rings improve significantly the axial strength of the CFST columns while the ties did not improve the axial strength. Lastly, a theoretical model for predicting the axial strength of confined CFST columns will be developed.
机译:由于限制钢对恢复地震区域中的柱的延性的巨大需求,用空心钢管限制这些柱以形成钢管混凝土(CFST)柱更为有效。与横向钢筋相比,钢管为混凝土芯提供了更强,更均匀的围压,并减少了钢的拥挤问题,从而提高了混凝土的浇筑质量。但是,CFST柱的主要缺点是,在压缩阶段,钢与混凝土的膨胀比混凝土膨胀大,因此在弹性阶段出现了不完善的钢-混凝土界面粘结。这不利地影响了限制效果并降低了弹性模量。为了解决该问题,在本研究中建议使用环形和扎带形式的外部钢限制来限制钢管的膨胀。为了验证,对一些带有外部钢环和扎带的CFST柱进行了一系列的单轴压缩试验。从结果可以发现:(1)环和拉杆都提高了CFST柱的刚度;(2)环大大提高了CFST柱的轴向强度,而拉杆却没有提高轴向强度。最后,将建立一个理论模型来预测CFST约束柱的轴向强度。

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