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Cyclic loading tests of stirrup cage confined concrete-filled steel tube columns under high axial pressure

机译:马镫笼的循环加载试验在高轴压下限制了混凝土填充的钢管柱

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This paper presents a cyclic loading WA study on 2 full-scale stirrup cage confined circular concrete-filled steel tube (CFT) columns and 3 full-scale stirrup cage confined square CFT columns under high axial pressure and low-cycle fatigue horizontal loading. The effect of the contact mode between the stirrup cage and the steel tube wall on the hysteretic behaviours of the specimens was investigated. The failure mode, hysteretic energy dissipation capacity, skeleton curve, elastic stiffness, maximum bearing capacity, ductility index, stiffness degradation, and residual deformation of the confined composite columns were analysed. The results indicate that using stirrup cage in the CFT columns can considerably enhance the seismic performance of CFT columns under high axial force ratio. Welding the stirrup cage to the inner wall of the steel tube can further strengthen the confinement effect of the stirrup cage and steel tube on the infilled concrete while also reducing the amplitude of the drum bending degree and the length of the local buckling region of the steel tube. Therefore, the overall stiffness, maximum bearing capacity and hysteretic energy dissipation capacity of the specimens are improved. Stirrup cage confined square CFT columns with the same design parameters have a greater bending stiffness, maximum bearing capacity and hysteretic energy dissipation capacity compared with those of stirrup cage confined circular CFT columns. The final failure mode of the stirrup cage confined square CFT columns is more favoured than that of the stirrup cage confined circular CFT columns for seismic design; namely, no ductile metal fracture of the steel tube wall on the tensile side was observed.
机译:本文介绍了循环加载WA研究2个全尺寸镫箱狭窄的圆形混凝土填充钢管(CFT)柱和3个全尺寸镫箱限制正方形CFT柱,在高轴压和低循环疲劳水平负载下。研究了箍筋笼和钢管壁之间的接触模式对标本歇斯斯特内行为之间的影响。分析了故障模式,滞圈能量耗散能力,骨架曲线,弹性刚度,最大承载力,延展性指数,刚度降解和狭窄复合柱的残余变形。结果表明,在高轴力比下,在CFT柱中使用镫骨筒可以显着提高CFT柱的地震性能。将马镫笼焊接到钢管的内壁上,可以进一步加强夹持笼和钢管在填充混凝土上的限制效果,同时还降低了钢弯曲度的幅度和钢的局部屈曲区域的长度管子。因此,改善了标本的总刚度,最大承载力和滞后能量耗散能力。与镫箱限制圆形CFT柱相比,STORTUP笼子被限制具有相同设计参数的方形CFT柱具有更大的弯曲刚度,最大承载能力和滞后能量耗散能力。镫座笼式的最终失效模式被限制方形CFT柱更加青睐于壁炉笼的围绕圆形CFT柱进行地震设计;即,观察到拉伸侧上的钢管壁的韧性金属骨折。

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