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Delamination of organic coating on carbon steel studied by scanning Kelvin probe force microscopy

机译:扫描开尔文探针力显微镜研究碳钢上有机涂层的分层

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摘要

Corrosion-induced delamination of an epoxy coating on the AISI/SAE 1045 carbon steel was studied under a humid atmospheric condition (temperature of 25 °C, 1 standard atmospheric pressure, relative humidity of 90%) by the technique of scanning Kelvin probe force microscopy (SKPFM). Surface-polished 1045 samples were first cold-coated with the epoxy and then subject to the atmospheric corrosion under the specified condition. At predetermined time intervals, surface Volta potential differences of the samples were measured using the SKPFM over the dry surface of epoxy coating. The map of Volta potential differences demonstrated high contrasts among three characteristic zones: intact steel-epoxy interface, delaminated interface, and interface with active corrosion, which was then linked to the actual corrosion potential of the steel (measured using a potentiostat with respect to a saturated calomel electrode) based on a rigorous calibration procedure. It was found that the SKPFM was able to provide direct and nondestructive detection of early active corrosion and coating delamination on steels at a submicroscopic resolution, which outperformed the conventional electrochemical techniques for the same purposes.
机译:通过扫描开尔文探针力显微镜技术研究了在潮湿大气条件(温度为25°C,1个标准大气压,相对湿度为90%)下AISI / SAE 1045碳钢上环氧涂层腐蚀诱导的分层。 (SKPFM)。首先对表面抛光的1045个样品进行环氧树脂冷喷涂,然后在指定条件下进行大气腐蚀。在预定的时间间隔内,使用SKPFM在环氧树脂涂层的干燥表面上测量样品的表面伏特电势差。伏特电位差图显示了三个特征区域之间的高对比度:完整的钢-环氧树脂界面,分层界面和具有主动腐蚀的界面,然后将其与钢的实际腐蚀电位相关联(使用恒电位仪针对饱和甘汞电极)。结果发现,SKPFM能够以亚显微分辨率对钢上的早期活性腐蚀和涂层分层进行直接和非破坏性的检测,其在相同目的方面优于传统的电化学技术。

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