4.7 Article

Anodizing of AS12 alloy in alkaline media

期刊

APPLIED SURFACE SCIENCE
卷 572, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.apsusc.2021.151436

关键词

AS12 alloy; Anodizing; Micro-arc oxidation; Corrosion

资金

  1. PHC Utique program of the French Ministry of Foreign Affairs
  2. Ministry of higher education, research and innovation
  3. Tunisian Ministry of higher education and scientific research in the CMCU project [18G1140]

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This study investigates the anodizing of AS12 alloys in various alkaline media, providing insights into the role of silicon in the aluminum matrix on the duplex nanostructure formation and micro-arc anodizing initiation. Addition of fluorides or silicates enhances the resistive properties of the internal anodic layer, improving the efficiency of the anodizing process. The corrosion resistance of AS12 in NaCl 0.1 M is increased by the presence of the oxide coating and the nature of the additive incorporated compounds.
The anodizing of AS12 alloys in various alkaline media is investigated over a large potential range (0-600 V) in order to provide a deep understanding of the mechanisms involved and judiciously chose chemical conditions enabling efficient micro-arc anodizing. Combined in situ stationary electrochemical methods, electrochemical impedance spectroscopy and TEM observations reveal that silicon in the aluminium matrix modifies the composition and the electrochemical properties of the duplex nanostructure grown at the early stages of the anodizing, therefore hindering micro-arc anodizing initiation. The addition of fluorides to the electrolyte, or silicates to a lesser extend, reinforces the resistive properties of the internal anodic layer and favors the efficiency of the anodizing process. The corrosion resistance of AS12, evaluated in NaCl 0.1 M by electrochemical techniques and salt spray test, is improved by the presence of the oxide coating and the nature of the additive incorporated compounds as well.

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