Effect of Yttrium on the Structural-Phase State of the In Situ Mo–15.3 V–10.5 Si Composite

Author:

Larionov A. V.,Pikulin K. V.,Zhidovinova S. V.,Udoeva L. Yu.

Publisher

Pleiades Publishing Ltd

Subject

General Engineering,General Materials Science

Reference31 articles.

1. Mitra, R., Intermetallic Matrix Composites. Properties and Applications, Chap. 5: Molybdenum Silicide-Based Composites, Woodhead, 2018, pp. 95–146.

2. Udoeva, L.Yu., Chumarev, V.M., Larionov, A.V., Zhidovinova, S.V., and Tyushnyakov, S.N., Influence of rare earth elements on the structural-phase state of Mo–Si–X (X = Sc, Y, Nd) in situ composites, Inorg. Mater.: Appl. Res., 2018, vol. 9, no. 2, pp. 257–263.

3. Larionov, A.V., Pikulin, K.V., Novikov, D.O., Chumarev, V.M., and Smirnov, L.A., Phase Composition of Mo–Si–V hypoeutectic alloys, Theor. Pract. Conf. with Int. Participation and School for Young Scientists “Ferroalloys: Development Prospects of Metallurgy and Machine Building Based on Completed Research and Development” (NIOKR-2018), KnE Mater. Sci., 2019, pp. 108–117.

4. Larionov, A.V., Pikulin, K.V., Chumarev, V.M., Udoeva, L.Yu., and Smirnov, L.A., Phase composition and microstructure of Mo–Si–V hypoeutectic alloys obtained under non-equilibrium crystallization conditions, Butlerov. Soobshch., 2019, vol. 57, no. 1, pp. 136–142.

5. Kablov, E.N., Ospennikova, O.G., and Vershkov, A.V., Rare metals and rare-earth elements–materials for modern and future high technologies, Tr. VIAM, 2013, no. 2, pp. 1–11.

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