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Articles

Diffusion coatings resistant to oxidation for γ-TiAl by pack codeposition of Al and Si

Pages 1247-1252 | Published online: 19 Jul 2013

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Read on this site (2)

Cheng Chen, Congyang Lu, Xiaomei Feng & Yifu Shen. (2018) Fabrication of Al–Si coating on Ti–6Al–4V substrate by mechanical alloying. Materials and Manufacturing Processes 33:2, pages 186-195.
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Cheng Chen, Congyang Lu, Xiaomei Feng & Yifu Shen. (2017) Effects of annealing on Al–Si coating synthesised by mechanical alloying. Surface Engineering 33:7, pages 548-558.
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Articles from other publishers (5)

Jiang Huang, Feng Zhao, Xinyu Cui, Jiqiang Wang & Tianying Xiong. (2022) Long-term oxidation behavior of silicon-aluminizing coating with an in-situ formed Ti5Si3 diffusion barrier on γ-TiAl alloy. Applied Surface Science 582, pages 152444.
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M. Goral, L. Swadzba, G. Moskal, G. Jarczyk & J. Aguilar. (2011) Diffusion aluminide coatings for TiAl intermetallic turbine blades. Intermetallics 19:5, pages 744-747.
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T. Kuranishi, H. Habazaki & H. Konno. (2005) Oxidation-resistant multilayer coatings using an anodic alumina layer as a diffusion barrier on γ-TiAl substrates. Surface and Coatings Technology 200:7, pages 2438-2444.
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R. Benedek, A. van de Walle, S. S.A. Gerstl, M. Asta, D. N. Seidman & C. Woodward. (2005) Partitioning of solutes in multiphase alloys . Physical Review B 71:9.
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Z.D. Xiang & P.K. Datta. (2003) Formation of Hf- and W-modified aluminide coatings on nickel–base superalloys by the pack cementation process. Materials Science and Engineering: A 363:1-2, pages 185-192.
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