考虑腐蚀影响粘结滑移和钢筋屈曲的RC桥梁概率抗震性能评估

IF 5 2区 工程技术 Q1 ENGINEERING, CIVIL
Shaghayegh Abtahi, Yong Li
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引用次数: 0

摘要

钢筋混凝土(RC)桥梁的设计是为了在其使用寿命内保持安全和功能,在使用寿命期间,老化的影响可能导致性能下降。钢筋腐蚀是地震易发地区钢筋混凝土结构在地震作用下结构性能下降的最常见原因之一。因此,为了保证钢筋混凝土桥梁在其使用寿命期间具有足够的抗震性能,有必要研究腐蚀对抗震性能预测的影响。为此,本研究工作使用了最新开发的抗震性能评估工具,包括腐蚀RC结构的先进有限元(FE)建模策略。新开发的先进有限元建模策略可以捕获腐蚀对钢筋与周围混凝土之间粘结的影响,以及钢筋对屈曲的脆弱性,以及对钢筋横截面积,覆盖混凝土剥落和核心混凝土约束水平的其他影响。使用这些新开发的策略,在概率框架中检查了RC桥在其使用寿命期间受腐蚀影响的抗震性能。特别是,已有研究表明,传统的有限元建模方法忽略了腐蚀影响的粘结滑移和钢筋屈曲,将导致低估腐蚀RC桥梁的地震风险,特别是与峰后行为相关的地震风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Probabilistic Seismic Performance Assessment of an RC Bridge Considering Corrosion-Affected Bond-Slip and Steel Bar Buckling

Probabilistic Seismic Performance Assessment of an RC Bridge Considering Corrosion-Affected Bond-Slip and Steel Bar Buckling

Reinforced concrete (RC) bridges are designed to remain safe and functional for their lifetime, during which the impacts of aging may result in performance degradation. Steel bar corrosion is one of the most common causes of structural performance degradation in RC structures subjected to earthquakes in seismic-prone areas. Therefore, to ensure the adequate seismic performance of RC bridges over the course of their life, it is necessary to investigate the effect of corrosion on seismic performance prediction. To this end, this research work uses the recently developed tools for seismic performance assessment, including advanced finite element (FE) modeling strategies for corroded RC structures. The newly developed advanced FE modeling strategy can capture the corrosion impact on bonding between steel bars and surrounding concrete, as well as the vulnerability of steel bars to buckling, in addition to other effects on the steel bar cross-sectional area, cover concrete spalling, and confinement level for core concrete. Using these newly developed strategies, the seismic performance of an RC bridge, impacted by corrosion over the course of its life, is examined in a probabilistic framework. In particular, it has been demonstrated that the conventional FE modeling approach, which neglects the corrosion-affected bond-slip and steel bar buckling, would lead to underestimated seismic risk for corroded RC bridges, specifically the seismic risk associated with the post-peak behavior.

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来源期刊
Earthquake Engineering & Structural Dynamics
Earthquake Engineering & Structural Dynamics 工程技术-工程:地质
CiteScore
7.20
自引率
13.30%
发文量
180
审稿时长
4.8 months
期刊介绍: Earthquake Engineering and Structural Dynamics provides a forum for the publication of papers on several aspects of engineering related to earthquakes. The problems in this field, and their solutions, are international in character and require knowledge of several traditional disciplines; the Journal will reflect this. Papers that may be relevant but do not emphasize earthquake engineering and related structural dynamics are not suitable for the Journal. Relevant topics include the following: ground motions for analysis and design geotechnical earthquake engineering probabilistic and deterministic methods of dynamic analysis experimental behaviour of structures seismic protective systems system identification risk assessment seismic code requirements methods for earthquake-resistant design and retrofit of structures.
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