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浸渍缓蚀剂的智能聚环氧乙烷涂层对AlMg3铝合金防护性能的影响

The Effect of Smart PEO-Coatings Impregnated with Corrosion Inhibitors on the Protective Properties of AlMg3 Aluminum Alloy.

作者信息

Gnedenkov Andrey S, Kononenko Yana I, Sinebryukhov Sergey L, Filonina Valeriia S, Vyaliy Igor E, Nomerovskii Alexey D, Ustinov Alexander Yu, Gnedenkov Sergey V

机构信息

Institute of Chemistry, Far Eastern Branch of the Russian Academy of Sciences, 159 Pr. 100-Letiya Vladivostoka, 690022 Vladivostok, Russia.

出版信息

Materials (Basel). 2023 Mar 9;16(6):2215. doi: 10.3390/ma16062215.

Abstract

The protective coating with a self-organized microtubular structure was formed using plasma electrolytic oxidation (PEO) on AlMg3 aluminum alloy in the tartrate-fluoride electrolyte. This protective layer was further modified using corrosion inhibitors of the azole group (1,2,4-triazole, benzotriazole) and polymer material (polyvinilidene fluoride, PVDF). X-ray diffraction analysis and scanning electron microscopy with energy dispersive spectroscopy were used to study the morphology and composition of the obtained oxide coatings. The presence of the inhibitor in the PEO-layer was confirmed using micro-Raman spectroscopy and X-ray photoelectron spectroscopy. The level of corrosion protection of formed coatings as well as the effect of loaded inhibitors on the anticorrosion efficiency was evaluated using electrochemical impedance spectroscopy (EIS) and localized scanning techniques (SVET/SIET). The coating impregnation with corrosion inhibitors of the azole group significantly improves the corrosion characteristics of the material. Impregnation of the base PEO-layer with 1,2,4-triazole during 24 h results in a 36 times increase in the impedance modulus measured at the lowest frequency (|Z|). Additional sealing of impregnated coating with polymer improves the corrosion stability of the treated material. On the base of the obtained data, the optimal way of protective inhibitor- and polymer-containing formation using surface treatment was suggested. The best barrier properties were established for hybrid coatings obtained by the immersion of a PEO-coated sample in 1,2,4-triazole solution for 24 h and following spraying the PVDF solution. The value of |Z| for this protective layer increased by more than two orders of magnitude in comparison with the base PEO-layer. The three-stage mechanism of corrosion inhibition of the sample with smart inhibitor-containing coating was established.

摘要

在酒石酸盐 - 氟化物电解液中,通过等离子体电解氧化(PEO)在AlMg3铝合金上形成了具有自组织微管结构的保护涂层。该保护层进一步用唑类腐蚀抑制剂(1,2,4 - 三唑、苯并三唑)和聚合物材料(聚偏二氟乙烯,PVDF)进行了改性。采用X射线衍射分析以及带有能谱仪的扫描电子显微镜来研究所得氧化物涂层的形态和成分。使用显微拉曼光谱和X射线光电子能谱确认了PEO层中抑制剂的存在。采用电化学阻抗谱(EIS)和局部扫描技术(SVET/SIET)评估了形成涂层的腐蚀防护水平以及负载抑制剂对防腐效率的影响。用唑类腐蚀抑制剂对涂层进行浸渍显著改善了材料的腐蚀特性。在24小时内用1,2,4 - 三唑浸渍基础PEO层会导致在最低频率下测得的阻抗模量(|Z|)增加36倍。用聚合物对浸渍涂层进行额外密封提高了处理后材料的腐蚀稳定性。基于所得数据,提出了使用表面处理形成含抑制剂和聚合物的最佳防护方式。通过将PEO涂层样品浸入1,2,4 - 三唑溶液24小时然后喷涂PVDF溶液获得的混合涂层具有最佳的阻隔性能。与基础PEO层相比,该保护层的|Z|值增加了两个多数量级。建立了含智能抑制剂涂层样品的三阶段缓蚀机理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09a0/10051072/50359edc0e9f/materials-16-02215-g001.jpg

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