剪裁等离子体电解氧化通过金属阳离子添加:从双极和单极电体制的见解

IF 8.7 Q1 CHEMISTRY, PHYSICAL
Kristina Mojsilović , Maria Serdechnova , Carsten Blawert , Valeryia Kasneryk , Zhe Zhang , D.C. Florian Wieland , Rastko Vasilić , Mikhail L. Zheludkevich
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引用次数: 0

摘要

本研究通过等离子体电解氧化(PEO)研究了AA2024合金在硅酸钠-氢氧化钾电解质中形成的氧化层,该电解质由锌(Zn 2 +)、铈(Ce³+)、镍(Ni 2 +)、钴(Co 2 +)和钙(Ca 2 +)阳离子修饰,通过高可溶性硝酸盐和醋酸盐引入。通过分析等离子体放电行为、氧化层组成、表面形貌和相分布,研究了这些阳离子对镀层性能的影响。单极和双极模式之间的对比测试突出了双极模式的优点,其中“软火花”条件,在所有获得的样品大约4分钟后实现,产生更厚,更少多孔的涂层,具有优越的结构。实验结果表明,单极PEO主要导致向外的氧化物生长,而双极PEO促进向外和向内的氧化物形成,从而增强阳离子的结合。值得注意的是,与其他阳离子添加剂相比,在双极条件下添加硝酸镍和醋酸锌可以启动不同的氧化物生长机制,这突出了特定金属阳离子的作用及其特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tailoring plasma electrolytic oxidation through metallic cation addition: Insights from bipolar and unipolar electrical regimes
Presented research examines oxide layer formation on AA2024 alloy via plasma electrolytic oxidation (PEO) in a sodium silicate-potassium hydroxide electrolyte modified with zinc (Zn²⁺), cerium (Ce³⁺), nickel (Ni²⁺), cobalt (Co²⁺), and calcium (Ca²⁺) cations, introduced through highly soluble nitrates and acetates. By analyzing plasma discharge behavior, oxide layer composition, surface morphology and phase distribution, the influence of these cations on the coating properties was studied. Comparative testing between unipolar and bipolar regimes highlights the benefits of bipolar mode, where the “soft sparking” condition, achieved after approximately 4 minutes for all obtained samples, produces thicker, less porous coatings with superior structure. The experimental findings reveal that unipolar PEO primarily results in outward oxide growth, while bipolar PEO facilitates both outward and inward oxide formation, allowing for enhanced cation incorporation. Notably, the addition of nickel nitrate and zinc acetate under bipolar conditions initiates distinct oxide growth mechanisms compared to other cationic additives, underscoring the role of specific metallic cations and their characteristics.
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CiteScore
8.10
自引率
1.60%
发文量
128
审稿时长
66 days
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