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Finite element analysis of the effects of radial expansion of corroded reinforcement

机译:锈蚀钢筋径向膨胀效应的有限元分析

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摘要

A finite element (FE) model of the effects of corroding reinforcement on the surrounding concrete was validated against the results of simulated corrosion tests in which internal pressure was applied to holes cast in concrete. The model was then used to explore the effects of bar radial expansion, due to the formation of corrosion products, on the cracking of cover concrete. The predictions were compared with test results from reinforced concrete accelerated corrosion specimens. The aim of the analytical investigation was to reveal the mechanism for the development of concrete cracking due to the corrosion of reinforcement. The three-dimensional physical specimens were idealised as two-dimensional analytical models under a plane strain assumption. Corrosion of reinforcement was modelled as either an internal pressure or a radial expansion to analyse the results of simulated and accelerated corrosion specimens, respectively. The FE analytical results indicate that the radial expansion of corroded reinforcement causes concrete cover to crack in four different stages: internal cracking, external cracking, penetration cracking and ultimate-cracking. It was also found that the FE analytical results could be used to explain qualitatively the experimentally determined relationship between amount of corrosion for concrete cracking and ratio of concrete cover to bar diameter, as well as that between reinforcement bond strength and amount of corrosion.
机译:通过模拟腐蚀试验的结果,对内部钢筋施加压力的有限元(FE)模型进行了验证,在模拟腐蚀试验中,内部压力作用于混凝土中的孔。然后使用该模型研究由于腐蚀产物的形成而引起的钢筋径向膨胀对覆盖混凝土开裂的影响。将预测结果与钢筋混凝土加速腐蚀试样的测试结果进行了比较。分析研究的目的是揭示由于钢筋腐蚀而导致混凝土开裂发展的机理。在平面应变假设下,将三维物理样本理想化为二维分析模型。将钢筋腐蚀建模为内部压力或径向膨胀,以分别分析模拟腐蚀试样和加速腐蚀试样的结果。有限元分析结果表明,锈蚀钢筋的径向膨胀会导致混凝土表层在四个不同阶段开裂:内部开裂,外部开裂,渗透开裂和极限开裂。还发现,有限元分析结果可用于定性地解释实验确定的混凝土开裂的腐蚀量与混凝土覆盖层与钢筋直径的比率之间的关系,以及钢筋粘结强度与腐蚀量之间的关系。

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