Synthesis of Si3N4-ZrN composite powder without subsequent milling

Author:

Kud І.V., ,Ieremenko L.І.,Krushynska L.А.,Zyatkevych D.P.,Zgalat-Lozynskyy О.B.,Shyrokov О.V.,Protsenko L.S., , , , , ,

Publisher

National Academy of Sciences of Ukraine (Co. LTD Ukrinformnauka)

Reference6 articles.

1. 1. Harrison, R. W. & Lee, W. E. (2016). Processing and properties of ZrC > ZrN and ZrCN ceramics: a review. Adv. Appl. Ceram., 115, No. 4, pp. 294-307. https://doi.org/10.1179/1743676115Y.0000000061

2. 2. Krushinskaya, L. À., Makarenko, G. N., Oleynik, G. S., Uvarova, I. V. & Fedorus, V. B. (2007). Preparation of highly disperse composite powders of the Si3N4-ÒiN system. II. Structuralphase transformations during nitriding of titanium silicide powder. Material Science of Nanostructures, No. 1, pp.84-90 (in Russian).

3. 3. Ade, M., & Haubelt, J. (2003). Electroconductive ceramic composites with lowtozero shrinkage during sintering. J. Eur. Ceram. Soc., 23, pp. 1979-1986. https://doi.org/10.1016/S09552219(02)00427-2

4. 4. Kurnetsov, N. T. (1999). Precursors for carbide, nitride and boride synthesis. In Materials science of carbides, nitrides and borides, NATO Science Series (Vol. 68) (pp. 223-245). Dordrecht: Springer.

5. 5. Charlamov, O. I., Bondarenko, M. E. & Rafal, O. N. (1990). Kinetics of interaction of transition metals with silicon nitride. In Silicides and their application in engineering (pp. 35-40). Kyiv: IPM AN USSR (in Russian).

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