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Investigating localized degradation of organic coatings. Comparison of electrochemical impedance spectroscopy with local electrochemical impedance spectroscopy

机译:研究有机涂层的局部降解。电化学阻抗谱与局部电化学阻抗谱的比较

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摘要

The degradation of polyester coil-coated galvanized steel was compared using both conventional (macroscopic) and localized electrochemical impedance techniques on the same specimen and within a time interval (hours) much shorter than the total immersion period (days). Specimens containing a central 250 μm laser-ablated defect in the organic coating layer were immersed in a 10 mM NaCl solution for up to 30 days. The local multifrequency impedance was determined by placing a novel impedance probe, either directly above the coating defect or above an area of intact coating. In addition, single frequency impedance mapping of the specimen surface was carried out at 1 kHz and compared with optical microscopy of the surface. The results demonstrate clearly that macroscopic electrochemical impedance provides a surface-averaged measurement of the properties of the coating, plus any defects, and that where several time constants are apparent, they are not uniquely separable into physical processes. Thus, macroscopic impedance spectra convolute the separate responses of the coating and defect together. However, local electrochemical impedance can effectively separate the local properties of the organic coating from the local electrochemical behavior at a coating defect.
机译:使用常规(宏观)和局部电化学阻抗技术,在同一样品上并在比总浸没时间(天)短得多的时间间隔(小时)内,比较了聚酯卷材镀锌钢板的降解情况。将在有机涂层中包含中心250μm激光烧蚀缺陷的标本浸入10 mM NaCl溶液中长达30天。通过在涂层缺陷的正上方或完整涂层的区域上方放置一个新型阻抗探头,可以确定局部多频阻抗。此外,在1 kHz下对样品表面进行了单频阻抗映射,并与表面光学显微镜进行了比较。结果清楚地表明,宏观电化学阻抗可提供涂层性能以及任何缺陷的表面平均测量值,并且在明显存在几个时间常数的地方,它们不能唯一地分离为物理过程。因此,宏观阻抗谱将涂层和缺陷的独立响应卷积在一起。然而,局部电化学阻抗可以有效地将有机涂层的局部性质与涂层缺陷处的局部电化学行为分开。

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