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JOURNALS // Fizika Goreniya i Vzryva // Archive

Fizika Goreniya i Vzryva, 2017 Volume 53, Issue 1, Pages 48–56 (Mi fgv379)

This article is cited in 5 papers

Structure and properties of the composite material obtained by thermal explosion of a mixture of $\mathrm{Ni}+\mathrm{Al}+\mathrm{Cr}_2\mathrm{O}_3$

O. D. Boyarchenko, A. E. Sytschev, L. M. Umarov, A. S. Shchukin, I. D. Kovalev, M. A. Sichinava

Institute of Structural Macrokinetics and Materials Sciences, Russian Academy of Sciences, Chernogolovka, 142432, Russia

Abstract: The synthesis of the composite material by thermal explosion of a reaction mixture of $\mathrm{Ni}+\mathrm{Al}+\mathrm{Cr}_2\mathrm{O}_3$ was studied. The thermodynamic parameters of combustion of the systems studied were estimated to predict the composition of the inorganic products (condensed or gaseous) of self-propagating high-temperature synthesis and calculate the adiabatic combustion temperature. It is shown that the synthesis process involves competing reactions in the sample volume which are responsible for the formation of a multiphase product. The influence of the content of $\mathrm{Cr}_2\mathrm{O}_3$ in the reaction system on the strength characteristics of the product synthesis. The microstructure of the synthesized samples, defined by their micro-hardness, toughness and residual porosity. The possibility of obtaining a homogeneous material based on $\mathrm{NiAl}$ intermetallic compound containing dissolved chromium and chromium oxide nanoparticles.

Keywords: nickel aluminide, chromium oxide, self-propagating high-temperature synthesis (SHS), phase formation, composite materials.

UDC: 546.05;536.46

Received: 25.03.2016
Revised: 09.06.2016

DOI: 10.15372/FGV20170107


 English version:
Combustion, Explosion and Shock Waves, 2017, 53:1, 41–48

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© Steklov Math. Inst. of RAS, 2024