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Probabilistic seismic fragility and loss analysis of concrete bridge piers with superelastic shape memory alloy-steel coupled reinforcing bars

机译:超弹性形状记忆合金-钢耦合钢筋混凝土桥墩的概率地震易损性和损失分析

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Concrete bridge piers with conventional steel reinforcing bars are vulnerable to strong earthquakes by inducing significant residual deformations, which substantially weakens the seismic resilience of bridges. Superelastic shape memory alloy (SMA) bars showing superior self-centering capacities are desirable substitutes to steel reinforcements to minimize the seismically-induced residual deformations of piers. Nevertheless, high cost, difficult machining, and lack of sufficient energy dissipation are the primary restraining factors to a wide implementation of SMA reinforcements. This study proposes a novel SMA-steel coupled reinforcement for concrete bridge piers, which is intended to achieve the balance between self-centering and energy dissipation capacities. Probabilistic seismic fragility analyses are conducted on the prototype bridge with either pure steel, SMA-steel coupled, or pure SMA reinforcements to evaluate their probability of damage at different limit states. Seismic loss analyses are further performed to compare the relative cost-effectiveness of different patterns of reinforcements. The results indicate that an optimal amount ratio between SMA and steel bars can be found for the coupled reinforcements, which shows lower vulnerabilities and higher resilience under earthquakes than the other reinforcement patterns. The direct repair loss and the indirect downtime loss after earthquakes are considerably reduced when the SMA reinforcing bars are introduced. The coupled reinforcement with the optimal SMA-steel amount ratio shows the most effectiveness in mitigating the long-term economic impacts induced by seismic hazards within the lifetime of the bridge.
机译:具有传统钢筋的混凝土桥墩会产生明显的残余变形,从而容易遭受强烈地震的破坏,从而大大削弱了桥梁的抗震能力。显示出卓越的自定心能力的超弹性形状记忆合金(SMA)棒是钢制增强材料的理想替代品,以最大程度地减少地震引起的桥墩残余变形。然而,高成本,难以加工以及缺乏足够的能量耗散是广泛实施SMA增强材料的主要限制因素。这项研究提出了一种用于混凝土桥墩的新型SMA-钢耦合钢筋,旨在实现自定心和能量消散能力之间的平衡。用纯钢,SMA-钢耦合或纯SMA钢筋对原型桥进行概率地震易损性分析,以评估其在不同极限状态下的损坏可能性。进一步进行地震损失分析以比较不同形式的钢筋的相对成本效益。结果表明,对于耦合的钢筋,可以找到SMA与钢筋之间的最佳用量比,与其他钢筋样式相比,该钢筋在地震作用下的脆弱性较低,而弹性更高。引入SMA钢筋,可大大减少地震后的直接维修损失和间接停机损失。具有最佳SMA钢量比的耦合钢筋在减轻桥梁使用寿命内因地震灾害引起的长期经济影响方面显示出最有效的效果。

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