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Cyclic test for solid steel reinforced concrete frames with special-shaped columns

机译:带异形柱的实心钢筋混凝土框架的循环试验

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摘要

An experimental study was performed to investigate the seismic performance of solid steel reinforced concrete (SRC) frames with special-shaped columns that are composed of SRC special-shaped columns and reinforced concrete beams. For this purpose, two models of two-bay and three-story frame, including an edge frame and a middle frame, were designed and tested. The failure process and patterns were observed. The mechanical behaviors such as load-displacement hysteretic loops and skeleton curves, load bearing capacity, drift ratio, ductility, energy dissipation and stiffness degradation of test specimens were analyzed. Test results show that the failure mechanism of solid SRC frame with special-shaped columns is the beam-hinged mechanism, satisfying the seismic design principle of "strong column and weak beam". The hysteretic loops are plump, the ductility is good and the capacity of energy dissipation is strong, indicating that the solid SRC frame with special-shaped columns has excellent seismic performance, which is better than that of the lattice SRC frame with special-shaped columns. The ultimate elastic-plastic drift ratio is larger than the limit value specified by seismic code, showing the high capacity of collapse resistance. Compared with the edge frame, the middle frame has higher carrying capacity and stronger energy dissipation, but the ductility and speed of stiffness degradation are similar. All these can be helpful to the designation of solid SRC frame with special-shaped columns.
机译:进行了实验研究,以研究由SRC异形柱和钢筋混凝土梁组成的异形柱实心钢筋混凝土框架的抗震性能。为此,设计并测试了两个模型的两层和三层框架,包括边缘框架和中间框架。观察到故障过程和模式。分析了试样的力学行为,如载荷-位移滞后回线和骨架曲线,承载力,漂移比,延展性,能量耗散和刚度退化。试验结果表明,实心异形柱SRC框架的破坏机理为梁铰,符合“强柱弱梁”的抗震设计原则。磁滞回线饱满,延展性好,能量消散能力强,表明实心异形柱SRC框架具有优良的抗震性能,优于异形柱格SRC框架。极限弹塑性漂移比大于地震规范规定的极限值,表明其高抗倒塌能力。与边缘框架相比,中间框架具有更高的承载能力和更强的能量耗散能力,但延性和刚度下降的速度相似。所有这些都有助于指定带有异形柱的实心SRC框架。

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