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Chloride-Induced Corrosion of Steel in Concrete: An Overview on Chloride Diffusion and Prediction of Corrosion Initiation Time

机译:混凝土中氯化物诱导的钢腐蚀:氯化物扩散概述及腐蚀启动时间的预测

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摘要

Initiation of corrosion of steel in reinforced concrete (RC) structures subjected to chloride exposures mainly depends on coefficient of chloride diffusion, Dc, of concrete. Therefore, Dc is one of the key parameters needed for prediction of initiation of reinforcement corrosion. Fick’s second law of diffusion has been used for long time to derive the models for chloride diffusion in concrete. However, such models do not include the effects of various significant factors such as chloride binding by the cement, multidirectional ingress of chloride, and variation of Dc with time due to change in the microstructure of concrete during early period of cement hydration. In this paper, a review is presented on the development of chloride diffusion models by incorporating the effects of the key factors into basic Fick’s second law of diffusion. Determination of corrosion initiation time using chloride diffusion models is also explained. The information presented in this paper would be useful for accurate prediction of corrosion initiation time of RC structures subjected to chloride exposure, considering the effects of chloride binding, effect of time and space on Dc, and interaction effect of multidirectional chloride ingress.
机译:对氯化物曝光进行钢筋混凝土(RC)结构的钢腐蚀的启动主要取决于氯化物扩散系数,DC,混凝土。因此,DC是预测增强腐蚀启动所需的关键参数之一。 Fick的第二次扩散定律已经长时间使用了混凝土中的氯化物扩散模型。然而,这种模型不包括各种重要因素如氯化物结合的各种重要因素的效果,氯化物多向进入和DC的变化由于在水泥水合的早期混凝土的微观结构中的变化。在本文中,通过将关键因素的影响纳入基本Fick的第二次扩散法,提出了氯化物扩散模型的综述。还解释了使用氯化物扩散模型的腐蚀起始时间的测定。本文提出的信息对于准确预测氯化物暴露的RC结构的腐蚀启动时间的准确预测,考虑到氯化物结合,时间和空间对DC的影响,以及多向氯化物进入的相互作用效应。

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