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Numerical Simulation of Chloride-Induced Corrosion Initiation in Reinforced Concrete Structures with Cracks

机译:含裂纹的钢筋混凝土结构中氯化物引发腐蚀的数值模拟

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摘要

Steel corrosion is a major problem with concrete structures. For cracked concrete structures exposed to chloride environment, chloride diffusivity through the crack (D_(cr)) is higher than that through the concrete matrix (D_o), and therefore, the corrosion will occur at an earlier time. In this study, finite-element analysis is performed to study the process of chloride diffusion through cracks. For various values of D_o, D_(cr), and crack width, the chloride-concentration distribution is determined. Based on the simulation results, the empirical equation for an equivalent diffusion coefficient (D_(eq)) will be derived, which can be used directly in the solution of the one-dimensional diffusion equation to calculate the predicted chloride profile, the corrosion-initiation time, and penetration of corrosion front. The study will provide a convenient but accurate approach for predicting the chloride diffusion, including the corrosion initiation, under real-world situations where cracks are present in a concrete structure.
机译:钢腐蚀是混凝土结构的主要问题。对于暴露于氯化物环境下的开裂混凝土结构,氯离子通过裂缝的扩散率(D_(cr))高于通过混凝土基体(D_o)的扩散率,因此腐蚀会更早地发生。在这项研究中,进行了有限元分析以研究氯化物通过裂纹的扩散过程。对于D_o,D_(cr)和裂缝宽度的各种值,确定氯化物浓度分布。根据模拟结果,将得出等效扩散系数(D_(eq))的经验方程,可将其直接用于一维扩散方程的求解中,以计算预测的氯离子分布,腐蚀起始时间,以及渗透腐蚀前沿。该研究将提供一种方便而准确的方法来预测混凝土结构中存在裂缝的实际情况下的氯化物扩散,包括腐蚀的发生。

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