Аннотация:
Оптическим методом исследована зависимость максимальной температуры самораспространяющейся волны горения в смесях титана с бором от соотношения металла и неметалла в исходной смеси, размера частиц Ti, плотности образцов, процента разбавления смеси конечным продуктом при сжигании образцов в среде аргона (p = 10 атм).
Образец цитирования:
Т. С. Азатян, В. М. Мальцев, А. Г. Мержанов, В. А. Селезнев, “О механизме распространения волны горения в смесях титана с бором”, Физика горения и взрыва, 16:2 (1980), 37–42; Combustion, Explosion and Shock Waves, 16:2 (1980), 163–167
\RBibitem{AzaMalMer80}
\by Т.~С.~Азатян, В.~М.~Мальцев, А.~Г.~Мержанов, В.~А.~Селезнев
\paper О механизме распространения волны горения в смесях титана с бором
\jour Физика горения и взрыва
\yr 1980
\vol 16
\issue 2
\pages 37--42
\mathnet{http://mi.mathnet.ru/fgv5183}
\transl
\jour Combustion, Explosion and Shock Waves
\yr 1980
\vol 16
\issue 2
\pages 163--167
\crossref{https://doi.org/10.1007/BF00740195}
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/fgv5183
https://www.mathnet.ru/rus/fgv/v16/i2/p37
Эта публикация цитируется в следующих 24 статьяx:
Yurii A. Chumakov, “EVOLUTION OF THE SYNTHESIS PRODUCT COMPOSITION OF Ti-B-Al SYSTEM IN COMBUSTION MODE”, High Temp Mat Proc, 29:1 (2025), 77
M. A. Ponomarev, V. E. Loryan, N. A. Kochetov, A. S. Shchukin, “Synthesis of a Composite Material via Combustion of Titanium and Boron Powders and a Mechanically Activated Aluminum + Nickel Mixture”, Inorg Mater, 58:2 (2022), 133
О.В. Лапшин, В.Г. Прокофьев, 8th International Congress on Energy Fluxes and Radiation Effects, 2022, 1429
M. A. Ponomarev, V. E. Loryan, “Synthesis of Porous Composite Material with the Combustion of Titanium and Boron Powders and Nickel-Clad Aluminum Granules”, Russ. J. Non-ferrous Metals, 61:6 (2020), 716
M. A. Ponomarev, V. E. Loryan, “Synthesis of porous composite material at combustion of titanium and boron powders and nickel-clad aluminum granules”, Izv. VUZ. Poroshk. Met., 2020, no. 2, 44
M A Ponomarev, V E Loryan, “Synthesis of materials with multiscale porosity from fine powders of boron, titanium, aluminum and coarse granules of VT6 alloy”, IOP Conf. Ser.: Mater. Sci. Eng., 558:1 (2019), 012036
G. A. Pribytkov, V. V. Korzhova, M. G. Krinitsyn, I. A. Firsina, “Synthesis and electron beam facing oftitanium monoboride – titanium matrix composite powders”, Vopr. materialoved., 2019, no. 1(93), 88
G. A. Pribytkov, V. V. Korzhova, M. G. Krinitsyn, I. A. Firsina, “Synthesis and Electron Beam Facing of Titanium Monoboride–Titanium Matrix Composite Powders”, Inorg. Mater. Appl. Res., 10:6 (2019), 1338
M. A. Ponomarev, V. E. Loryan, “Synthesis of Composite Material in Al–Ti–B System during Combustion of Titanium and Boron Powders and Aluminum-Clad Granules of VT6 Alloy”, Inorg. Mater. Appl. Res., 10:5 (2019), 1204
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