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Seismic performance of steel-reinforced recycled concrete columns under low cyclic loads

机译:低循环荷载下钢筋再生混凝土柱的抗震性能

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This paper describes an experimental study of the seismic performance of steel-reinforced recycled concrete (SRRC) columns. Based on low cyclic loading tests of seven 1:2.5-scaled column specimens, the failure modes, hysteresis loops, skeleton curves, ductility, energy dissipation capacity, and stiffness degradation of SRRC columns were analyzed. The influence of recycled coarse aggregate (RCA) replacement percentages, axial compression ratios, and stirrup ratios on the seismic performance of SRRC columns was investigated in detail. The test results show that the seismic performance of SRRC columns decreases slightly as the RCA replacement percentage increases. The results also indicate that appropriate design of the axial compression ratio and stirrup ratio can improve the seismic performance of SRRC columns. The average values of the ductility factor and the equivalent viscous damping coefficient with respect to the loop of ultimate load of the columns were 3.47 and 0.217, respectively, which reflect the SRRC columns' good performance in terms of earthquake resistance.
机译:本文描述了钢筋再生混凝土(SRRC)柱抗震性能的实验研究。基于七个按1:2.5比例缩放的柱样本的低循环载荷测试,分析了SRRC柱的破坏模式,磁滞回线,骨架曲线,延性,耗能能力和刚度退化。详细研究了再生粗骨料(RCA)替代百分比,轴向压缩比和箍筋比对SRRC柱抗震性能的影响。试验结果表明,随着RCA置换率的增加,SRRC柱的抗震性能略有下降。结果还表明,合理设计轴向压缩比和箍筋比可以改善SRRC柱的抗震性能。相对于极限荷载循环的延性因子和等效粘性阻尼系数的平均值分别为3.47和0.217,这反映了SRRC柱在抗震性能方面的优良性能。

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