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Seismic vulnerability assessment of a steel-girder highway bridge equipped with different SMA wire-based smart elastomeric isolators

机译:装有不同SMA线基智能弹性体隔离器的钢梁公路桥梁的地震易损性评估

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Shape memory alloy wire-based rubber bearings (SMA-RBs) possess enhanced energy dissipation capacity and self-centering property compared to conventional RBs. The performance of different types of SMA-RBs with different wire configurations has been studied in detail. However, their reliability in isolating structures has not been thoroughly investigated. The objective of this study is to analytically explore the effect of SMA-RBs on the seismic fragility of a highway bridge. Steel-reinforced elastomeric isolators are equipped with SMA wires and used to isolate the bridge. Results revealed that SMA wires with a superelastic behavior and re-centering capability can increase the reliability of the bearing and the bridge structure. It was observed that at the collapse level of damage, the bridge isolated by SMA-HDRB has the lowest fragility. Findings also showed that equipping NRB with SMA wires decreases the possibility of damage in the bridge while, replacing HDRB with SMA-HDRB; or LRB with SMA-LRB increases the failure probability of the system at slight, moderate, and extensive limit states.
机译:与传统的RB相比,形状记忆合金线基橡胶轴承(SMA-RB)具有更高的耗能能力和自对中性能。已经详细研究了具有不同导线配置的不同类型SMA-RB的性能。但是,它们在隔离结构中的可靠性尚未得到充分研究。这项研究的目的是分析探讨SMA-RBs对公路桥梁抗震性的影响。钢增强的弹性体隔离器配有SMA线,用于隔离桥。结果表明,具有超弹性行为和重新定心能力的SMA钢丝可以提高轴承和桥梁结构的可靠性。据观察,在破坏的坍塌程度下,SMA-HDRB隔离的桥梁的脆性最低。研究结果还表明,在NRB上安装SMA导线可减少桥损坏的可能性,而在用SMA-HDRB代替HDRB时;带有SMA-LRB的LRB或LRB会增加系统在轻微,中度和广泛极限状态下的故障概率。

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