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稀土羧酸酯掺入环氧涂料体系的浸出行为及缓蚀作用。

Leaching Behavior and Corrosion Inhibition of a Rare Earth Carboxylate Incorporated Epoxy Coating System.

机构信息

Institute for Frontier Materials , Deakin University , Geelong , Victoria 3220 , Australia.

Mineral Resources , CSIRO , Clayton , Victoria 3169 , Australia.

出版信息

ACS Appl Mater Interfaces. 2019 Oct 2;11(39):36154-36168. doi: 10.1021/acsami.9b13722. Epub 2019 Sep 24.

DOI:10.1021/acsami.9b13722
PMID:31532991
Abstract

While paint coatings act as important barriers to corrosion, defects can lead to localized, rapid metal loss. The addition of corrosion inhibitors that are capable of leaching from a coating to protect the metal surface at a defect can prevent this type of corrosion. This work investigates the release and corrosion protection capabilities of two rare earth (RE) carboxylate inhibitors from an epoxy coating as an initial step to understanding their leaching behavior and interaction with the coating system. Leaching experiments were performed via inductively coupled plasma mass spectroscopy (ICP-MS) analyses of the solutions in which free-standing coatings loaded with varying concentrations of inhibitor compounds had been immersed. Inhibitor release from the epoxy coating was observed to be dependent on initial inhibitor concentration, inhibitor chemistry, and solution pH conditions. The coating systems with greater initial inhibitor loadings showed higher leaching rates, particularly in acidic environments. Following immersion, the absence of characteristic inhibitor peaks in the FTIR spectra of the coatings also confirmed leaching had taken place. Cross-sectional views of the coatings after exposure to the pH 1 environment presented a chloride infusion zone at the coating/solution interface where the inhibitor had leached out. The RE active inhibition provided by the leached RE carboxylate inhibitors was verified by exposure of a coating defect to a chloride contaminated environment.

摘要

虽然油漆涂层是防止腐蚀的重要屏障,但缺陷会导致局部金属迅速损耗。在涂层中添加能够从涂层中浸出以保护缺陷处金属表面的缓蚀剂可以防止这种类型的腐蚀。这项工作研究了两种稀土(RE)羧酸盐抑制剂从环氧树脂涂层中的释放和腐蚀保护能力,作为理解其浸出行为和与涂层系统相互作用的初始步骤。通过电感耦合等离子体质谱(ICP-MS)分析浸泡在不同浓度抑制剂化合物的自由涂层的溶液来进行浸出实验。观察到,从环氧树脂涂层中释放抑制剂取决于初始抑制剂浓度、抑制剂化学性质和溶液 pH 值条件。具有更高初始抑制剂负载的涂层系统表现出更高的浸出速率,特别是在酸性环境中。浸泡后,涂层的 FTIR 光谱中没有出现特征抑制剂峰,也证实了浸出的发生。在暴露于 pH 值为 1 的环境后,涂层的横截面视图显示在涂层/溶液界面处存在氯化物注入区,其中抑制剂已经浸出。通过将涂层缺陷暴露于受氯化物污染的环境中,验证了浸出的 RE 羧酸盐抑制剂提供的 RE 活性抑制作用。

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