1. Levashov, E.A., Pogozhev, Yu.S., Rogachev, A.S., et al., Self-propagating high-temperature synthesis of composite targets based on titanium carbonitride, titanium silicide, and titanium aluminide for plasma deposition of multifunctional coatings, Izv. Vyssh. Uchebn. Zaved., Poroshk. Metall. Funkts. Pokrytiya, 2010, no. 3, pp. 26–30.
2. Seplyarskii, B.S., Brauer, G.B., and Kostin, S.V., Combustion of bulk density powder mixtures in a coflow of inert gas: 4. Ti–Si and Zi–Al systems, Int. J. Self-Propag. High-Temp. Synthesis, 2008, vol. 17, no. 3, pp. 199–205.
3. Vadchenko, S.G., Gasless combustion of a multilayer model system (combustion of gapless disks), Fiz. Goreniya Vzryva, 2002, vol. 38, no. 1, pp. 55–59.
4. Avvakumov, E.G., Fundamental’nye osnovy mekhanicheskoi aktivatsii, mekhanosinteza i mekhanokhimicheskikh tekhnologii (Fundamental Principles of Mechanical Activation, Mechanochemical Synthesis, and Mechanochemical Technologies), Novosibirsk: Sib. Otd. Ross. Akad. Nauk, 2009.
5. Korchagin, M.A. and Lyakhov, N.Z., Self-propagating high-temperature synthesis in mechanoactivated compositions, Russ. J. Phys. Chem. B, 2008, vol. 2, no. 1, pp. 77–82.