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首页> 外文期刊>Electrochimica Acta >Corrosion of steel under the defected coating studied by localized electrochemical impedance spectroscopy
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Corrosion of steel under the defected coating studied by localized electrochemical impedance spectroscopy

机译:局部电化学阻抗谱研究缺陷涂层下钢的腐蚀

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Corrosion of steel under the defected coating in near-neutral pH solution was investigated by localized electrochemical impedance spectroscopy (LEIS) measurements. The LEIS response is dependent on the size of the defect. For small defects, e.g., less than 200 μm in diameter, localized corrosion process and mechanism of steel, as indicated by the measured LEIS plots, change with time. The diffusion process dominates the interfacial corrosion reaction, which is due to the block effect of the deposited corrosion product combined with the geometrical factor of a large coating thickness/defect width ratio. In the presence of a big defect, e.g., up to 1000 μm, the LEIS responses measured at the defect are always featured by a coating impedance in the high-frequency range and an interfacial corrosion reaction in the low-frequency range. The block effect of corrosion product does not apply due to the relatively open geometry. Conventional EIS measurements on a macroscopic-coated electrode reflect the "averaged" impedance results from both coating and defect. The information of the localized electrochemical corrosion processes and mechanisms at the small defect is lost, and the coating impedance information is "averaged" out when a big defect is contained. LEIS measurement provides an essential technique to characterize microscopically the local electrochemical corrosion reaction of steel under the defected coating.
机译:通过局部电化学阻抗谱(LEIS)测量研究了在近中性pH溶液中缺陷涂层下钢的腐蚀情况。 LEIS响应取决于缺陷的大小。对于较小的缺陷(例如直径小于200μm),如实测LEIS图所示,钢的局部腐蚀过程和机理会随时间变化。扩散过程在界面腐蚀反应中占主导地位,这是由于沉积的腐蚀产物的阻塞效应与大涂层厚度/缺陷宽度比的几何因素相结合所致。在存在大的缺陷(例如最大1000μm)的情况下,在缺陷处测得的LEIS响应始终以高频范围内的涂层阻抗和低频范围内的界面腐蚀反应为特征。由于相对开放的几何形状,腐蚀产物的阻滞作用不适用。在宏观涂层电极上的常规EIS测量反映了涂层和缺陷产生的“平均”阻抗结果。小缺陷处的局部电化学腐蚀过程和机理的信息会丢失,当包含大缺陷时,涂层阻抗信息会“平均化”。 LEIS测量提供了一种必不可少的技术,以微观方式表征缺陷涂层下钢的局部电化学腐蚀反应。

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