Aggressiveness of Different Ageing Conditions for Three Thick Marine Epoxy Systems

Alexis Renaud, Victor Pommier, Jérémy Garnier, S. Frappart, Laure Florimond, M. Koch, A. Grolleau, Céline Puente-Lelièvre, Touzain Sebastien
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Abstract

Three different coated steel systems were aged in natural or artificial seawater, in neutral salt spray (NSS), and using alternate immersion tests in order to evaluate the aggressiveness of the different ageing conditions. Commercial epoxy coatings were applied onto steel (S355NL), hot-galvanized steel (HDG), and Zn-Al15 thermal spraying coated steel. The defect-free systems were immersed in artificial seawater at 35 °C for 1085 days and in natural seawater for 1200 days and were characterized by electrochemical impedance spectroscopy (EIS). Panels with artificial defects were immersed for 180 days in artificial seawater and, regarding adhesion, were evaluated according to ISO 16276-2. In parallel, the three coated systems were submitted to cyclic neutral salt spray (NSS) for 1440 h: defect-free panels were regularly evaluated by EIS, while the degree or corrosion was measured onto panels with artificial defect. After NSS, defect-free panels were immersed in artificial seawater at 35 °C for further EIS investigations. Finally, alternate immersion tests were performed for 860 days for the three defect-free coated systems and for 84 days for panels with a defect. The results showed that, for defect-free panels, immersions in natural or artificial seawater and NSS did not allowed us to distinguish the three different systems that show excellent anticorrosion properties. However, during the alternate immersion test, the organic coating system applied onto HDG presented blisters, showing a greater sensitivity to this test than the two other systems. For panels with a defect, NSS allowed to age the coatings more rapidly than monotone conditions, and the coating system applied onto steel presented the highest degree of corrosion. Meanwhile, the coating systems applied onto HDG and the thermal spray metallic coating showed similar behavior. During the alternate immersion test, the three coated systems with a defect showed clearly different behaviors, therefore it was possible to rank the three systems. Finally, it appeared that the alternate immersion test was the most aggressive condition. It was then proposed that a realistic thermal cycling and an artificial defect are needed when performing ageing tests of thick marine organic coating systems in order to properly rank/evaluate the different systems.
三种船用厚环氧树脂体系不同老化条件下的侵蚀性
三种不同的涂层钢体系在自然或人工海水、中性盐雾(NSS)中老化,并使用交替浸泡试验来评估不同老化条件下的侵蚀性。商用环氧涂料应用于钢(S355NL),热镀锌钢(HDG)和锌- al15热喷涂钢。在35°C的人工海水中浸泡1085天,在天然海水中浸泡1200天,并用电化学阻抗谱(EIS)对无缺陷体系进行表征。有人工缺陷的面板在人工海水中浸泡180天,并根据ISO 16276-2对附着力进行评估。同时,将三种涂层系统提交到循环中性盐雾(NSS)中进行1440小时:无缺陷面板定期通过EIS评估,而对人工缺陷面板的腐蚀程度进行测量。NSS后,将无缺陷的面板浸泡在35°C的人工海水中进行进一步的EIS调查。最后,对三种无缺陷涂层系统进行交替浸泡试验860天,对有缺陷的面板进行84天。结果表明,对于无缺陷的面板,在自然或人工海水和NSS中浸泡并不能使我们区分出三种不同的系统,显示出优异的防腐性能。然而,在交替浸泡测试期间,应用于HDG的有机涂层系统出现了水泡,显示出对该测试的敏感性高于其他两种系统。对于有缺陷的面板,与单调条件相比,NSS允许涂层更快地老化,并且涂层系统应用于钢的腐蚀程度最高。同时,HDG涂层体系与热喷涂金属涂层体系表现出相似的性能。在交替浸泡试验中,三种缺陷涂层体系表现出明显不同的行为,因此可以对三种体系进行排序。最后,交替浸入测试似乎是最具攻击性的条件。然后提出,在进行厚海洋有机涂层系统老化试验时,需要一个现实的热循环和人工缺陷,以便对不同的系统进行适当的排名/评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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