Analysis of the structural and chemical state of thermite alloy layer formation on a steel substrate by selfpropagating high-temperature synthesis

Author:

Skidin I.Е.ORCID, ,Belov B.F.,Vodennikova О.S.ORCID,Vodennikov S.А.ORCID,Saithareiev L.N.ORCID,Baboshko D.Yu.ORCID, , , , ,

Publisher

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

Subject

General Medicine

Reference15 articles.

1. 1. Yatsenko, V.V. (2011). Combustion of granular iron-aluminum thermite mixture in the production of iron and its composite with titanium carbide. Candidate's thesis. Samara State Technical University, Samara, Russian Federation, 187 p. [in Russian].

2. 2. Amosov, A.P., Borovinskaya, I.P., Merzhanov, A.G. (2007). Powder technology of self-propagating high-temperature synthesis of materials. Antsiferova, V.N. (Eds.). Moscow: Mashinostroenie-1, 568 p. [in Russian].

3. 3. Novikov, N.P., Borovinskaya, I.P., Merzhanov A.G. (1975). Thermodynamic analysis of reactions of self-propagating hightemperature synthesis. In collection: Combustion processes in chemical technology and metallurgy. Chernogolovka: ISMAN, pp. 174-188 [in Russian].

4. 4. Merzhanov, A.G. (Eds.). (2003). The concept of SHS development as an area of scientific and technological progress. Chernogolovka: Territoriya, 368 p. [in Russian].

5. 5. Orru', R., Simoncini, B., Carta, D., Cao, G. (1997). On the mechanism of structure and product formation in self-propagating thermite reactions. International Journal of Self-Propagating High-Temperature Synthesis, vol. 6, pp. 15-27.

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