Effect of Pretreatment on Anticorrosive Performance of AZX911 Magnesium Alloy Treated with Anodizing from Phosphate and Ammonium Salt Solution
Author:
Affiliation:
1. Faculty of Engineering, Hiroshima Institute of Technology
2. Industrial Technology Research Institute of Okayama Prefecture
3. Hori Metal Finishing Industry Co. LTD.
4. Faculty of Engineering, Okayama University of Science
Publisher
Japan Institute of Metals
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Link
https://www.jstage.jst.go.jp/article/matertrans/55/8/55_MC201402/_pdf
Reference15 articles.
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2. 2) Y. Kojima: J. Jpn. Inst. Light Met. 58 (2008) 526–548 (in Japanese).
3. 3) A. Suzuki, N. D. Saddock, J. W. Jones and T. M. Pollock: Acta Mater. 53 (2005) 2823–2834.
4. 4) H. Mori, K. Fujino, K. Kurita, Y. Chino, N. Saito, M. Noda, H. Komai and H. Obara: Materia Japan 52 (2013) 484–490 (in Japanese).
5. 5) G. L. Song and A. Atrens: Adv. Eng. Mater. 1 (1999) 11–33.
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1. Corrosion-Resistant Anodic Oxidation Film for Magnesium;Journal of The Surface Finishing Society of Japan;2018-12-01
2. Formation mechanism of Mg-Al layered double hydroxide-containing magnesium hydroxide films prepared on Ca-added flame-resistant magnesium alloy by steam coating;Surface and Coatings Technology;2017-11
3. Effect of microstructure on corrosion resistance and heat resistance of flame-resistant Ca-added magnesium alloy AZ61;Journal of Japan Institute of Light Metals;2016
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