Structural Features of Titanium Boride-Based Layered Composite Materials Produced by Free SHS Compression
Author:
Publisher
Pleiades Publishing Ltd
Subject
General Chemistry
Link
http://link.springer.com/content/pdf/10.1134/S0012500819090039.pdf
Reference8 articles.
1. Zelepugin, S. A., Shkoda, O.A., Lepakova, O.K., Zelepugin, A.S., Kasatskii, N.G., Shavnev, A.A., and Krasnov, E.I., Sintez metallo-intermetallidnogo sloistogo kompozitsionnogo materiala sistemy Ti–TiAl 3 razlichnymi metodami (Synthesis of Metal Intermetallic Layered Composite Material of the Ti–TiAl3 System by Different Methods), Moscow: VIAM. 2016.
2. Krasnov, E.I., Shteinberg, A.S., Shavnev, A.A., Serpova, V.M., and Zhabin, A.N., Issledovanie sloistogo metallicheskogo kompozitsionnogo materiala sistemy Ti–TiAl 3 (Investigation of a Layered Metallic Composite Material of the Ti–TiAl3 System), Moscow: VIAM, 2016.
3. Minatto, F.D., Milak, P., De Noni, A., Hotza, D., and Montedo, O.R.K., Adv. Appl. Ceram., 2015, vol. 114, no. 3, pp. 127–138.
4. Cui, X.P., Ding, H., Zhang, Y.Y., Yao, Y., Fan, G.H., Huang, L.J., Geng, L., Zheng, Z.Z., and Chen, J.F., J. Alloys Compd., 2019, vol. 775, pp. 1057–1067.
5. Stolin, A.M., Bazhin, P.M., Konstantinov, A.S., and Alymov, M.I., Dokl. Chem., 2018, vol. 480, pp. 136–138.
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