Author:
Grigoriev O.N.,Panasyuk A.D.,Brodnikovskyy M.P.,Podchernyaeva I.O.,Melakh L.M.,Yurechko D.V.,Vedel D.V.,Kozak I.V.
Publisher
Springer Science and Business Media LLC
Subject
Materials Chemistry,Metals and Alloys,Mechanics of Materials,Condensed Matter Physics,Ceramics and Composites
Reference14 articles.
1. Ping Hu, Xing-Xong Zhang, Jie-Cai Han, Xiao-Guang Luo, and Shang-Yi Du, “Effect of various additives on the oxidation behavior of ZrB2-based ultra-high-temperature ceramics at 1800°C,” J. Am. Ceram. Soc., 93, No. 2, 345–349 (2010).
2. G.V. Samsonov, I.F. Pryadko, and L.F. Pryadko, Electron Localization in Solids [in Russian], Nauka, Moscow (1976), p. 338.
3. V.A. Shvets, V.A. Lavrenko, V.N. Talash, and Yu.B. Rudenko, “Physicochemical properties of the SiC– ZrB2 and SiC–ZrB2–ZrSi2 composites in high-temperature and electrochemical oxidation,” in: Proc. Int. Conf. Materials Science of Refractory Compounds: Advances and Issues [in Russian], Inst. Probl. Materialoved. Nats. Akad. Nauk Ukrainy, Kyiv (2010), p. 23.
4. O.N. Grigoriev, A.D. Panasyuk, I.A. Podchernyaeva, I.P. Neshpor, and D.V. Yurechko, “Mechanism of high-temperature oxidation of ZrB2-based composite ceramics in the ZrB2–SiC–AlN system,” Powder Metall. Met. Ceram., 57, No. 1–2, 71–74 (2018).
5. F. Monteverde, D. Alfano, and R. Savino, “Effects of LaB6 addition on arc-jet convectively heated SiCcontaining ZrB2-based ultra-high temperature ceramics in high enthalpy supersonic airflows,” Corr. Sci., 75, 443–453 (2013).
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