Образец цитирования:
Н. А. Мартиросян, С. К. Долуханян, А. Г. Мержанов, “Неединственность стационарных режимов при горении смесей порошков циркония и сажи в водороде”, Физика горения и взрыва, 19:5 (1983), 39–42; Combustion, Explosion and Shock Waves, 19:5 (1983), 569–571
\RBibitem{MarDolMer83}
\by Н.~А.~Мартиросян, С.~К.~Долуханян, А.~Г.~Мержанов
\paper Неединственность стационарных режимов при горении смесей порошков циркония и сажи в водороде
\jour Физика горения и взрыва
\yr 1983
\vol 19
\issue 5
\pages 39--42
\mathnet{http://mi.mathnet.ru/fgv4748}
\transl
\jour Combustion, Explosion and Shock Waves
\yr 1983
\vol 19
\issue 5
\pages 569--571
\crossref{https://doi.org/10.1007/BF00750423}
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/fgv4748
https://www.mathnet.ru/rus/fgv/v19/i5/p39
Эта публикация цитируется в следующих 12 статьяx:
D. S. Vasilyev, B. S. Seplyarskii, R. A. Kochetkov, T. G. Lisina, T. G. Akopdzhanyan, “The Effect of Impurity Gas on the Combustion Mode of Granular Mixtures Ti–C–B”, Int. J Self-Propag. High-Temp. Synth., 33:2 (2024), 94
Z. Huang, H.S. Sidhu, I.N. Towers, Z. Jovanoski, S. Watt, V.V. Gubernov, “Properties of nonadiabatic combustion waves in competitive exothermic reactions”, Applied Mathematical Modelling, 77 (2020), 1216
S.D. Watt, H.S. Sidhu, Z. Jovanoski, I.N. Towers, Z. Huang, “Watershed initial conditions for propagating waves in a system with bistability: A weight-function approach”, Applied Mathematics Letters, 91 (2019), 106
Z. Huang, H.S. Sidhu, I.N. Towers, Z. Jovanoski, V.V. Gubernov, “Stability analysis of combustion waves for competitive exothermic reactions using Evans function”, Applied Mathematical Modelling, 54 (2018), 347
Zhejun Huang, Harvinder Sidhu, Isaac Towers, Zlatko Jovanoski, Simon Watt, V. Gubernov, “On the route to extinction in non-adiabatic flames from competitive exothermic reactions”, Math. Model. Nat. Phenom., 13:6 (2018), 49
Z. Huang, H. S. Sidhu, I. N. Towers, Z. Jovanoski, V. V. Gubernov, “Properties of combustion waves in a model with competitive exothermic reactions”, J Math Chem, 55:5 (2017), 1187
Seda K. Dolukhanyan, Concise Encyclopedia of Self-Propagating High-Temperature Synthesis, 2017, 159
I. N. Towers, V. V. Gubernov, A. V. Kolobov, A. A. Polezhaev, H. S. Sidhu, “Bistability of flame propagation in a model with competing exothermic reactions”, Proc. R. Soc. A., 469:2158 (2013), 20130315
G. K. Dey, A. Arya, J. A. Sekhar, “Micropyretic synthesis of NiAl containing Ti and B”, J. Mater. Res., 15:1 (2000), 63
John J. Moore, H.J. Feng, “Combustion synthesis of advanced materials: Part I. Reaction parameters”, Progress in Materials Science, 39:4-5 (1995), 243
Zuhair A. Munir, Umberto Anselmi-Tamburini, “Self-propagating exothermic reactions: The synthesis of high-temperature materials by combustion”, Materials Science Reports, 3:7-8 (1989), 277
Zuhair A. Munir, Umberto Anselmi-Tamburini, “Self-propagating exothermic reactions: The synthesis of high-temperature materials by combustion”, Materials Science Reports, 3:6 (1989), 279