Preparation of Cyclic Oxidation Resistant Coating Consisting of Ni Aluminide and Ni-Hf Alloy Layers on Ni-Cr-Al Alloy by Electrodeposition
Author:
Affiliation:
1. Graduate School of Engineering Science, Akita University
2. Department of Materials Science, Graduate School of Engineering Science, Akita University
Publisher
The Society of Materials Engineering for Resources of Japan
Subject
Mechanical Engineering,General Materials Science,General Chemical Engineering
Link
https://www.jstage.jst.go.jp/article/ijsmer/24/1_2/24_1/_pdf
Reference8 articles.
1. [1] Sumoyama D., Thosin K. Z., Nishimoto T., Yoshioka T., Izumi T., Hayashi S., Narita T., “Formation of a rhenium-base diffusion-barrier-coating system on Ni-base single crystal superalloy and its stability at 1423 K” Oxid. Met. 68, 313-329 (2007).
2. [2] Katsumata Y., Yoshioka T., Thosin K. Z., Nishimoto T., Izumi T., Hayashi S., Narita T., “Formation and oxidation behavior of a diffusion-barrier-coating system on a Ni-Mo base alloy at 1373 K in air” Oxid. Met. 68, 331-342 (2007).
3. [3] Narita T., Lang F., Thosin K. Z., Yoshioka T., Izumi T., Yakuwa H., Hayashi S., “Oxidation behavior of nickel-base single-crystal superalloy with rhenium-base diffusion barrier coating system” Oxid. Met. 68, 343-363 (2007).
4. [4] Haynes J. A., Zhang Y., Cooley K. M., Walker L., Reeves K. S., Pint B. A., “High-temperature diffusion barrier for protective coatings ” Surf. Coat. Technol. 188-199, 153-157 (2004).
5. [5] Uemura K., Fukumoto M., Hara M., Narita T., “Preparation of Ni aluminide / Ni-Hf alloy coating by electrodeposition cyclic oxidation resistance” J. Japan Inst. Metals 72, 868-874 (2008).
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