Oxidation of Sintered VТ1-0 Titanium

Author:

Shlyakhetka Kh. S.,Pohrelyuk І. М.,Luk’yanenko О. H.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference14 articles.

1. F. H. Froes, “Powder metallurgy of titanium alloys,” in: I. Chang and Y. Zhao (editors), Advances in Powder Metallurgy: Properties, Processing, and Applications (Woodhead Publishing Series in Metals and Surface Engineering), Woodhead Publishing, Philadelphia (2013), pp. 202–357.

2. Z. Z. Fang, J. D. Paramore, P. Sun, K. S. Ravi Chandran, Y. Zhang, Y. Xia, F. Cao, M. Koopman, and M. Free, “Powder metallurgy of titanium—past, present, and future,” Int. Mater. Rev., 63, Issue 7, 407–459 (2018).

3. V. А. Boguslaev, P. D. Zhemanyuk, A. V. Ovchinnikov, Z. V. Lekhovitser, and I. О. Bykov, “Application of titanium powders for the production of components of gas-turbine engines by the methods of powder metallurgy,” Aviats.-Kosmich. Tekh. Tekhnol., No. 9, 86–91 (2017).

4. О. М. Ivasishin, D. G. Savvakin, V. S. Bondareva, V. S. Mokson, and V. А. Duz’, “Production of titanium alloys and workpieces by a cost-efficient method of powder metallurgy for the large-scale industrial application,” Nauka Innovats., 1, No. 2, 44–57 (2005).

5. A. A. Hidalgo, R. Frykholm, T. Ebel, and F. Pyczak, “Powder metallurgy strategies to improve properties and processing of titanium alloys: A review,” Adv. Eng. Mat., 19, Issue 6, 1–14 (2017).

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