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Reliability estimation of corroded RC structures based on spatial variability using experimental evidence, probabilistic analysis and finite element method

机译:基于空间变异性的锈蚀RC结构可靠度的实验证据,概率分析和有限元方法

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摘要

Corrosion of steel reinforcement is spatially distributed over RC structures due to several factors such as different environmental exposure, concrete cover, and concrete quality, among others. Ignoring the effect of spatial variability is a drastic simplification for the prediction of the remaining service life of RC structures. Therefore, it is essential to identify the factors influencing the spatial steel corrosion and structural performance of corroded RC structures. In this paper, an experimental research is conducted to study the effects of main parameters (i.e. current density, concrete cover, rebar diameter, and fly ash) on the spatial variability associated with steel weight loss, corrosion crack, and structural behavior of accelerated-corrosion RC beams using X-ray radiography and digital image processing. The test results showed that low current density (I-corr = 5. 50 mu A/cm(2)) induced highly non-uniform corrosion associated with few large pits and cracks at certain locations while higher current density produced more uniform corrosion and cracks over the beam length. Gumbel distribution parameters were derived from the steel weight loss data for modeling spatial steel corrosion. A novel approach was established to assess the reliability of RC structures using finite element (FE) analysis and probabilistic analysis considering the effects of modeled spatial variability of steel weight loss based on X-ray photographs. Using the Gumbel distribution parameters derived from the steel weight loss data associated with higher current density may underestimate the non-uniformity of corrosion distribution which can lead to an overestimation of the load capacity of corroded RC structures.
机译:由于多种因素,例如不同的环境暴露,混凝土覆盖层和混凝土质量等,钢筋混凝土的腐蚀在RC结构上在空间上分布。忽略空间可变性的影响是对RC结构剩余使用寿命的预测的极大简化。因此,必须确定影响钢筋混凝土结构腐蚀的空间钢腐蚀和结构性能的因素。在本文中,进行了一项实验研究,以研究主要参数(即电流密度,混凝土覆盖层,钢筋直径和粉煤灰)对与钢的失重,腐蚀裂纹以及加速后的结构行为有关的空间变异性的影响。使用X射线照相和数字图像处理腐蚀RC光束。测试结果表明,低电流密度(I-corr <=5。50μA / cm(2))引起高度不均匀的腐蚀,在某些位置几乎没有大的凹坑和裂纹,而较高的电流密度产生了更均匀的腐蚀和腐蚀。在光束长度上出现裂纹。 Gumbel分布参数是从钢的失重数据得出的,用于对空间钢腐蚀进行建模。考虑到基于X射线照片的钢质失重建模空间变异性的影响,建立了一种使用有限元(FE)分析和概率分析评估RC结构可靠性的新方法。使用从钢的重量损失数据得出的Gumbel分布参数与较高的电流密度相关联,可能会低估腐蚀分布的不均匀性,这会导致高估腐蚀的RC结构的承载能力。

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