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Enhancing flexural capacity of RC columns through near surface mounted SMA and CFRP bars

机译:通过近地表面安装SMA和CFRP棒提高RC色谱柱的弯曲能力

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This study explores the flexural behavior of reinforced concrete (RC) columns strengthened with near surface mounted (NSM) shape memory alloy (SMA) bars or carbon fiber reinforced polymer (CFRP) bars. Seven RC column specimens were designed and fabricated to study the influence of different variables on the flexural response of the strengthened columns. These parameters include type of NSM reinforcement (SMA bars or CFRP bars), ratio of NSM reinforcement, and effect of CFRP jacketing. The columns were tested under cyclic lateral loading with constant axial force. The flexural behavior of each specimen was examined in terms of peak load, failure load, drift ratios, displacement ductility, stiffness degradation, energy dissipation, and seismic damage index. The experimental results indicate that strengthening of RC columns with NSM SMA or CFRP bars improves the flexural behavior of the columns through increasing the lateral load capacity, reducing the stiffness degradation and increasing the cumulative energy absorption up to failure. Further enhancement in the lateral response of RC columns was obtained by combining NSM bars and CFRP jacketing as the later provides an additional confinement to the critical sections of the test specimens.
机译:本研究探讨了附近安装(NSM)形状记忆合金(SMA)条或碳纤维增强聚合物(CFRP)棒材加固的钢筋混凝土(RC)柱的弯曲行为。设计并制造了七种RC柱样本,以研究不同变量对加强柱的弯曲响应的影响。这些参数包括NSM加固(SMA条或CFRP条)的类型,NSM加固比和CFRP护套的效果。在具有恒定轴向力的循环横向负载下测试柱。在峰值负荷,故障负荷,漂移比,位移延展性,刚度降解,能量耗散和地震损伤指数方面检查了每个样品的弯曲行为。实验结果表明,使用NSM SMA或CFRP棒的RC柱通过增加横向载荷能力来提高柱的弯曲行为,从而降低刚度降低并增加累积能量吸收达到失效的累积能量吸收。通过组合NSM棒和CFRP护套来获得RC柱的横向响应的进一步增强,因为后者为试样的临界部分提供了额外的限制。

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