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Experimental and Simulation Study on Diffusion Behavior of Chloride Ion in Cracking Concrete and Reinforcement Corrosion

机译:氯离子在开裂混凝土中的扩散行为及增强腐蚀的实验与模拟研究

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摘要

A chloride ion is a key factor affecting durability of reinforced concrete (RC) structures. In order to investigate chloride migration in cracked concrete, considering the mesoscopic heterogeneity of concrete, concrete modeled here is treated as a four-phase composite consisting aggregate, mortar, crack, and interfacial transition zone (ITZ). In this paper, two-dimensional finite element models of cracked concrete with different crack widths and crack quantity are established and the control parameters are determined based on the nonsteady-state chloride migration (NSSCM) test. In addition, based on the concrete finite element models, influences of crack width, crack quantity, and erosion time on chloride migration behaviors and characteristics are studied. Furthermore, a prediction model of chloride concentration on the simulated surface of a rebar in concrete influenced by different crack states is established. This model is used to derive the corrosion current density and corrosion depth prediction models of a rebar in this paper, which can be used by engineers to estimate the migration behaviors of chloride and rebar corrosion degree in RC structures in a short time and evaluate the duration of RC structures after knowing the status of cracks and chloride diffusion sources.
机译:氯离子是影响钢筋混凝土(RC)结构耐久性的关键因素。为了研究氯离子在开裂混凝土中的迁移,考虑到混凝土的介观非均质性,此处建模的混凝土被视为由骨料,砂浆,裂缝和界面过渡区(ITZ)组成的四相复合材料。本文建立了具有不同裂缝宽度和裂缝数量的开裂混凝土的二维有限元模型,并基于非稳态氯离子迁移试验确定了控制参数。此外,基于具体的有限元模型,研究了裂纹宽度,裂纹数量和腐蚀时间对氯化物迁移行为和特性的影响。此外,建立了受不同裂纹状态影响的混凝土模拟表面氯离子浓度的预测模型。该模型可用于推导钢筋的腐蚀电流密度和腐蚀深度预测模型,工程师可利用该模型估算钢筋混凝土结构中氯的迁移行为和钢筋腐蚀程度,并评估其持续时间。知道裂缝和氯化物扩散源的状态后,对钢筋混凝土结构进行分析。

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