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Impedance spectroscopy as a tool to study modifications in the microstructure of concrete in ionic migration experiments

机译:阻抗光谱作为研究混凝土微观结构在离子迁移实验中的修饰的工具

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The study of the penetration of chloride ions in concrete structures is of great interest, because of the pernicious effects that these ions have on the corrosion of steel reinforcements. Accelerated methods have been developed to obtain the diffusion coefficient of chlorides through cement-based materials. One of these methods allows the calculation of both steady and non-steady state diffusion coefficients using a very simple conductivity measurement [1]. The presence of an electric field causes modifications in the microstructure of cement-based materials, and also an acid attack can be produced on the material if the porosity is high enough [2]. As has already been proved, impedance spectroscopy is a powerful technique to study the microstructure of cement-based materials [3]. This technique is used to characterize during the experiment the modifications that are produced in the microstructure of concrete samples during the forced migration tests. The results obtained using impedance spectroscopy have been compared with the results obtained with the mercury intrusion porosimetry, and a very good agreement has been observed.
机译:由于这些离子对钢筋腐蚀的可靠效应,对混凝土结构中氯离子渗透的研究具有很大的兴趣。已经开发了加速方法以通过基于水泥基材料获得氯化物的扩散系数。其中一种方法允许使用非常简单的电导率测量计算稳态和非稳态扩散系数[1]。电场的存在导致水泥基材料的微观结构进行修饰,如果孔隙率足够高,则可以在材料上产生酸攻击[2]。如已经证明,阻抗光谱是研究水泥基材料的微观结构的强大技术[3]。该技术用于在实验期间表征在强制迁移测试期间在混凝土样本的微观结构中产生的修改。使用阻抗光谱获得的结果与用汞侵入孔隙瘤率获得的结果进行了比较,并且已经观察到非常良好的一致性。

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