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A Novel Application of EIS for Quantitative Coating Quality Assessment During Neutral Salt Spray Testing of High-Durability Coatings

机译:EIS对高耐久性涂料中性盐喷雾试验中的定量涂层质量评估的新型应用

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The aim of the study was to exemplify the benefits of using electrochemical impedance spectroscopy (EIS) for quantification of coating quality during accelerated corrosion testing before the appearance of visual changes on the surface of the coating. The study included an innovative application of the commercial flexible gel electrodes in a two-electrode setup for following the impedance of the two high-durability offshore coating systems exposed to 1440 h of neutral salt spray (NSS) according to EN ISO 9227. The results were compared to those of the EIS measurements during 8000 h long exposure to a liquid electrolyte in a press-on cell according to the established EN ISO 16773 method. Complementary methods of differential scanning calorimetry, Fourier transform infrared spectroscopy and thermogravimetric analysis have been used for surface, interface and depth profiling of coating characteristics that were commented with respect to the EIS results. The technique was applied on high-durability coatings Zn (R) + EP + EP or PUR intended for the protection in the coastal and offshore areas corresponding to C5- (H) and CX corrosivity categories in accordance with EN ISO 12944. EIS has been found to give sound quantitative results for coating impedance and a good estimation of long term coating behaviour within the first 100 h of accelerated exposure. It can be considered a promising tool for the early detection of coating damage during weathering tests.
机译:该研究的目的是举例说明使用电化学阻抗光谱(EIS)在涂层表面的视觉变化外观之前加速腐蚀测试期间涂料质量的益处的益处。该研究包括根据EN ISO 9227的2440小时的两个高耐久性海上涂料系统的阻抗,该研究包括在双电极设置中的一种创新施加。结果根据已建立的EN ISO 16773方法将8000小时内暴露于压制电池中的液体电解质期间的EIS测量值。互相扫描量热法的互补方法,傅里叶变换红外光谱和热重分析已被用于对EIS结果评论的涂层特征的表面,界面和深度分析。该技术应用于高耐久性涂料Zn(R)+ EP + EP或纯粹用于在与C5-(H)和CX腐蚀性类别相对应的沿海和近海地区的保护,根据EN ISO 12944。EIS已经存在发现在加速暴露的前100小时内涂覆阻抗和长期涂层行为的良好估计的声音定量结果。它可以被认为是在耐候性测试期间早期检测涂层损伤的有希望的工具。

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