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Numerical investigation of the influence of cross-sectional shape and corrosion damage on failure mechanisms of RC bridge piers under earthquake loading

机译:横截面形状与腐蚀损伤对地震载荷下RC桥墩失效机制影响的数值研究

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摘要

The study presented in this paper describes the coupled influence of corrosion and cross-sectional shape on failure mechanism of reinforced concrete (RC) bridge piers subject to static and dynamic earthquake loading. To this end, two RC columns varied in cross-sectional shape and corrosion degree are considered. An advanced nonlinear finite element model, which accounts for the impact of corrosion on inelastic buckling and low-cycle fatigue degradation of reinforcing bars is employed. The proposed numerical models are then subjected to a series of monotonic pushover and incremental dynamic analyses. Using the analyses results, the failure mechanisms of the columns are compared at both material and component levels. Furthermore, using an existing model in the literature for uncorroded columns, a dimensionless corrosion dependent local damage index is developed to assess the seismic performance of the examined corroded RC columns. The proposed new damage index is validated against the nonlinear analyses results. It is concluded that the combined influence of corrosion damage and cross-sectional shape result in multiple failure mechanisms in corroded RC columns.
机译:本文提出的研究介绍了腐蚀和横截面形状对抗静电和动态地震载荷的钢筋混凝土(RC)桥墩故障机理的耦合影响。为此,考虑两个以横截面形状和腐蚀程度变化的两个RC列。采用先进的非线性有限元模型,其采用了对腐蚀腐蚀对钢筋的影响和低循环疲劳降解的影响。然后将所提出的数值模型进行一系列单调推送和增量动态分析。使用分析结果,在材料和组分水平上比较列的失败机制。此外,在文献中使用现有模型对于未旋井的柱,开发了无量纲腐蚀依赖局部损伤指数,以评估所检查的腐蚀式RC柱的地震性能。提出的新损伤指数验证了非线性分析结果。结论是,腐蚀损坏和横截面形状的综合影响导致腐蚀RC柱中的多种故障机制。

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