磷酸氧化锌复合PEO和喷雾热解涂层增强AZ31镁合金耐腐蚀性能

Surfaces Pub Date : 2023-10-10 DOI:10.3390/surfaces6040026
Ashish Kumar Singh, Reinis Drunka, Paula Iesalniece, Ilmars Blumbergs, Ints Steins, Toms-Valdemars Eiduks, Mairis Iesalnieks, Konstantins Savkovs
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引用次数: 0

摘要

等离子体电解氧化产生的氧化膜具有多孔结构。虽然它们在镁合金中有一定的钝化作用,但长时间的暴露仍然会导致腐蚀。本研究采用喷雾热解对等离子体电解氧化法在镁合金AZ31上形成的多孔氧化层进行密封。PEO涂层的形貌为喷雾热解的应用提供了良好的基础。采用不同的前驱体制备了三种不同的涂层:醋酸锌制备ZnO,磷酸制备磷酸(P),醋酸锌和磷酸钠的混合物制备ZnO+P。通过对样品进行电化学阻抗和极化测试,研究了三种涂层的腐蚀性能。在3% NaCl溶液中,用浸渍重法测定了1周内的质量损失。结果表明,仅含磷涂层的耐腐蚀性能最好,腐蚀速率降低了52倍,极化电位提高了50倍。采用XRD和SEM-EDS分析研究了腐蚀产物的化学成分。ZnO+P的质量损失最大,分别是ZnO和P的1.4倍和5.1倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combined PEO and Spray Pyrolysis Coatings of Phosphate and ZnO for Enhancing Corrosion Resistance in AZ31 Mg Alloy
Oxide films produced from plasma electrolytic oxidation are porous in structure. While they have some passivating effect in Mg alloys, the pores still lead to corrosion over long periods of exposure. In this study, spray pyrolysis was used to seal the porous oxide layer developed through the plasma electrolytic oxidation method on Mg alloy AZ31. The PEO coating acted as a good base for the application of spray pyrolysis due to its morphology. Three different kinds of coatings were obtained using different precursors: zinc acetate for ZnO, phosphoric acid for phosphate (P), and a mixture of zinc acetate and sodium phosphate for ZnO+P. The corrosion performance of all three coatings was studied by performing electrochemical impedance and polarization tests on the samples. Mass loss over a duration of 1 week was measured in 3% NaCl solution using immersion gravimetry. The coating with only phosphate (P) was found to be most corrosion-resistant with 52 times lower rate of corrosion and 50 times more polarization potential. The chemical composition of the corrosion products was studied using XRD and SEM-EDS analysis. Mass loss in ZnO+P was the highest, at up to 1.4 and 5.1 times higher than ZnO and P, respectively.
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CiteScore
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