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Seismic behavior of steel reinforced concrete cross-shaped column under combined torsion

机译:钢筋混凝土横形柱的抗震性能

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Experiments were performed to explore the hysteretic performance of steel reinforced concrete (SRC) cross-shaped columns. Nine specimens were designed and tested under the combined action of compression, flexure, shear and torsion. Torsion-bending ratio (i.e., 0, 0.14, 0.21) and steel forms (i.e., Solid - web steel, T - shaped steel, Channel steel) were considered in the test. Both failure processes and modes were obtained during the whole loading procedure. Based on experimental data, seismic indexes, such as bearing capacity, ductility and energy dissipation were investigated in detail. Experimental results suggest that depending on the torsion-bending ratio, failure modes of SRC cross-shaped columns are bending failure, flexure-torsion failure and torsion-shear failure. Shear - displacement hysteretic loops are fuller than torque - twist angle hysteretic curves. SRC cross-shaped columns exhibit good ductility and deformation capacity. In the range of test parameters, the existence of torque does not reduce the shear force but it reduces the displacement and bending energy dissipation capacity. What is more, the bending energy dissipation capacity increases with the rising of displacement level, while the torsion energy dissipation capacity decreases.
机译:进行实验以探讨钢筋混凝土(SRC)交叉柱的滞回性能。在压缩,弯曲,剪切和扭转的组合作用下设计和测试了九个样本。在测试中考虑扭转弯曲比(即0,0,0.14,0.21)和钢形式(即固体纤维网钢,T形钢,通道钢)。在整个装载过程中获得了故障过程和模式。基于实验数据,详细研究了抗震指标,例如承载能力,延展性和能量耗散。实验结果表明,取决于扭转弯曲比,SRC交叉形柱的失效模式是弯曲衰竭,弯曲扭曲失效和扭转剪切失效。剪切 - 位移滞后环比扭矩 - 扭曲角度滞后曲线更饱和。 SRC交叉形柱具有良好的延展性和变形能力。在测试参数的范围内,扭矩的存在不会减少剪切力,但它降低了位移和弯曲能量耗散能力。更重要的是,弯曲能量耗散能力随着位移水平的上升而增加,而扭转能量耗散能力降低。

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