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Damping-Ductility Relationship for Performance Based Seismic Design of Shape Memory Alloy Reinforced Concrete Bridge Pier

机译:形状记忆合金钢筋混凝土桥墩基于性能的抗震设计的阻尼-延性关系

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In performance based seismic design of structures, estimating the equivalent viscous damping (EVD) using a damping-ductility relationship is a major step. The seismic response of Shape Memory Alloy (SMA) reinforced concrete (RC) bridge pier is different from its traditional steel reinforced or post-tensioned counterparts. Due to its significantly different hysteretic response and material properties, it is necessary to estimate the EVD of SMA-RC pier and establish the damping-ductility relationship. An error in the estimation of equivalent viscous damping can lead to significant errors in the ductility demand of the designed pier. This study aims to develop expressions for equivalent viscous damping and damping-ductility relationship for SMA reinforced bridge pier when SMA rebars are used in the plastic hinge region of the bridge pier. New equivalent damping relations for five different bridge piers reinforced with five different types of SMAs have been developed. Nonlinear dynamic time history analyses were conducted on five different SMA-RC bridge piers using 100 ground motions. The accuracy of the new equivalent damping relation was assessed to ensure the applicability of the proposed relationships. Finally, a general expression was developed that can assist in estimating equivalent viscous damping for performance based seismic design of SMA reinforced bridge pier.
机译:在基于性能的结构抗震设计中,使用阻尼-延性关系估算等效粘性阻尼(EVD)是重要的一步。形状记忆合金(SMA)钢筋混凝土(RC)桥墩的地震响应不同于传统的钢筋或后张法。由于其滞后响应和材料特性显着不同,因此有必要估算SMA-RC墩的EVD并建立阻尼-延性关系。等效粘性阻尼估计中的误差会导致所设计墩的延性要求出现重大误差。这项研究的目的是开发当SMA钢筋用于桥墩的塑料铰链区域时,SMA加固桥墩的等效粘性阻尼和阻尼延性关系的表达式。已经为五种不同类型的SMA增强的五种不同的桥墩开发了新的等效阻尼关系。使用100个地面运动对五个不同的SMA-RC桥墩进行了非线性动态时程分析。评估了新的等效阻尼关系的准确性,以确保所建议关系的适用性。最后,开发了一个通用表达式,可以帮助估算基于等效强度的阻尼,用于基于SMA加固的桥墩的基于性能的抗震设计。

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