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首页> 外文期刊>Journal of Performance of Constructed Facilities >Performance Assessment of Corroded Reinforced Concrete Structure Considering Bond Deterioration
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Performance Assessment of Corroded Reinforced Concrete Structure Considering Bond Deterioration

机译:考虑债券恶化的腐蚀钢筋混凝土结构性能评估

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摘要

This paper presents an assessment of the lateral load capacity and ductility of a 21-year-old reinforced concrete (RC) structure situated in a marine environment and affected by rebar corrosion. Nonlinear pushover analysis is carried out for the structure by modeling the hinges. The consequence of corrosion is accounted for in the moment rotation characteristics of the hinges by considering the reduction in bond strength, loss of rebar diameter, and reduction in the mechanical properties of steel. The basic bond stress-slip relationship from an internationally established model code is modified to account for corrosion using a bond model. This bond model is used to obtain the hinge properties of the corroded rebar. The simplified beam macromodel developed considering these modified hinge properties due to corrosion is validated with four-point bending tests carried out on beams and similar experiments from the literature. Moreover, a simulation is also carried out using a two-dimensional finite element micromodel of a beam using the modified bond model for the rebar affected by corrosion. The load deflection characteristics of the micro and macromodels are found to agree well for the four-point bending load for different levels of corrosion. The proposed beam model, considering the effect of rebar corrosion, is used for evaluation of performance of the 21-year-old corroded RC structure for the design basis earthquake load. Subsequently, a seismic assessment methodology is proposed for corroded RC structures.
机译:本文介绍了位于海洋环境中的21岁的钢筋混凝土(RC)结构的横向承载能力和延展性评估,并受钢筋腐蚀的影响。通过建模铰链来对结构进行非线性推进分析。通过考虑粘合强度降低,钢筋直径丧失和钢的机械性能降低,腐蚀的后果被占铰链的旋转特性。根据国际建立的模型代码的基本债券压力滑移关系被修改为使用债券模型进行腐蚀。该键合模型用于获得腐蚀钢筋的铰链特性。考虑到由于腐蚀引起的这些改进的铰链特性开发的简化梁Macromodel在光束上进行了四分弯曲测试和来自文献的类似实验。此外,还使用使用腐蚀影响的钢筋的改进的粘合模型来使用梁的二维有限元微模型进行模拟。发现微观和宏偶像的负荷偏转特性对于不同水平的腐蚀的四点弯曲载荷吻合。考虑到钢筋腐蚀效果的拟议光束模型用于评估设计基地地震载荷的21岁腐蚀RC结构的性能。随后,提出了腐蚀性RC结构的地震评估方法。

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