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Repeated ignition of a condensed reacting material V. I. Zemskikh, O. I. Leĭpunskiĭ
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3–10 |
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A simplified method of calculating the erosion combustion rate for a mixed condensed system S. I. Volkov, A. V. Fedorov, V. M. Fomin
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10–17 |
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Simulating aluminum powder aggregation in mixed condensed-system combustion O. B. Kovalev, A. P. Petrov, A. V. Fol'ts
|
17–21 |
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Simulating self-excited oscillations in the cold-flame combustion of a mixture of $n$-heptane with isooctane in an ideal-mixing reactor V. I. Bykov, T. P. Pushkareva, Ya. Yu. Stepanskii
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21–27 |
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Structure of an exothermal chemical conversion front in a medium moving within an inert channel K. G. Shkadinskii, B. V. Stepanov
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27–30 |
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Gas-flame acceleration regimes within tubes M. A. Andreev, A. M. Stepanov
|
31–40 |
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Flame propagation along a fuel-oxidizer contact surface N. N. Bachman
|
41–48 |
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Steady periodic structure of a flame with a finite cell amplitude S. S. Minaev, V. S. Babkin
|
49–57 |
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Synergism effects in combined action of electric field and inert diluent on gas-phase flames G. A. Gulyaev, G. A. Popkov, Yu. N. Shebeko
|
57–59 |
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Flame propagation over the surface of an epoxy polymer. Heat-transfer processes in the preignition zone B. Ya. Kolesnikov, V. L. Efremov
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60–65 |
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Effect of calcium chloride on the decomposition of ammonium perchlorate L. A. Akerman, È. D. Kuznets, V. G. Kozlova, B. M. Maevskaya
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65–69 |
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Influence of two-dimensionality of the front with heat losses on the limits of stationary gasless combustion V. V. Aleksandrov, A. A. Davydenko, Yu. A. Kovalenko, N. P. Poddubnyi
|
70–80 |
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Mechanisms underlying the evolvement of oscillation during the gas-phase oxidation of hydrocarbons S. G. Bernatosyan, A. A. Mantashyan
|
80–83 |
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Detonation transformations in an aerated liquid B. N. Kondrikov, G. D. Kozak, V. B. Oblomskii, A. V. Savkin
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83–91 |
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Mechanism of longwave acoustic perturbation generation in the atmosphere by a floating cloud of explosion products Yu. A. Gostintsev, Yu. V. Shatskikh
|
91–97 |
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Penetration of a high-velocity flux of elongated elements into an obstacle I. I. Tomashevich
|
97–101 |
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Deformation and collapse of hollow conical casing L. A. Merzhievskii, A. D. Resnyanskii
|
102–110 |
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Deformation of conical casing L. V. Efremova, A. I. Korneev, V. G. Trushkov
|
110–115 |
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Investigation of the adiabat of heterogeneous two-phase detonation A. E. Medvedev, A. V. Fedorov, V. M. Fomin
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115–121 |
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Dynamics of the formation of a gas suspension behind a shock wave sliding over the suface of a loose material V. M. Boiko, A. N. Papyrin
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122–126 |
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Interaction of sulfur with tin in shock waves S. S. Batsanov, D. L. Gur'ev
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127–129 |
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Detonation limits of clouds of coal dust in mixtures of oxygen and nitrogen D. H. Edwards, P. J. Fearnley, M. A. Nettleton
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129–136 |
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Effect of cooling on polymorphism of TiO$_2$, ZrO$_2$, and HfO$_2$ under shock waves D. L. Gur'ev, L. I. Kopaneva, S. S. Batsanov
|
137–138 |