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Pseudo-static tests of terminal stirrup-confined concrete-filled rectangular steel tubular columns

机译:末端箍筋约束混凝土矩形钢管柱的拟静力试验

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This paper mainly presents a pseudo-static test program on 12 terminal stirrup-confined square concrete-filled steel tube (SOFT) columns and 14 rectangular SCFT columns under constant axial pressure. The effects of various factors on the hysteretic behavior of specimens are investigated. These factors include with or without stirrups, height of terminal stirrup region, equivalent stirrup ratio, stirrup form, loading direction, height length ratio (L/B), length-width ratio (B/D), axial compression ratio (n) and sliding support. The failure mode, strain ratio, hysteretic curve, skeleton curve, ultimate bearing capacity, ductility, stiffness degradation, energy dissipation, as well as the residual deformation of the specimens are analyzed. The results indicate that: (1) When n is relatively larger, the bidirectional stirrups can effectively delay the local buckling of steel tube and greatly increase the ultimate bearing capacity, stiffness, equivalent damping viscosity index, residual deformation rate and ductility index, and further significantly improve the seismic behavior of the rectangular SCFT columns; (2) Axial pressure can improve the confinement effect from the steel tube to the core concrete, also bidirectional stirrups can directly confine the core concrete to decrease strain ratio of the steel tube; (3) With the same value of n, increasing the height of terminal stirrup region or increasing the equivalent stirrup ratio can effectively improve the seismic behavior of the rectangular SCFT columns; (4) The influence of loading direction, L/B and B/D on the ductility of rectangular SCFT columns are not obvious. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文主要介绍了在恒定轴向压力下,对12根箍筋约束方形钢管混凝土(SOFT)柱和14根矩形SCFT柱的拟静力试验程序。研究了各种因素对试样滞后性能的影响。这些因素包括有无箍筋,末端箍筋区域的高度,等效箍筋比,箍筋形式,加载方向,高度长宽比(L / B),长宽比(B / D),轴向压缩比(n)和滑动支撑。分析了失效模式,应变比,磁滞曲线,骨架曲线,极限承载力,延性,刚度退化,能量耗散以及标本的残余变形。结果表明:(1)当n较大时,双向箍筋可以有效地延迟钢管的局部屈曲,并极大地提高了极限承载力,刚度,等效阻尼粘度指数,残余变形率和延性指数,并进一步大大改善了矩形SCFT柱的抗震性能; (2)轴向压力可以改善钢管对芯混凝土的约束效果,双向箍筋可以直接约束芯混凝土,降低钢管的应变比。 (3)在n值相同的情况下,增加末端箍筋区域的高度或增加等效箍筋比可以有效地改善矩形SCFT柱的抗震性能; (4)加载方向,L / B和B / D对矩形SCFT柱延性的影响不明显。 (C)2018 Elsevier Ltd.保留所有权利。

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