|
Review on advanced energetic materials for insensitive munition formulations M. Anniyappan, M. B. Talawar, R. K. Sinha, K. P. Murthy
|
3 |
|
Effect of $\mathrm{SiO}_2$ content and mechanical activation on $\mathrm{Ni}$–$\mathrm{Al}$–$\mathrm{SiO}_2$ combustion N. A. Kochetov, A. E. Sytschev
|
32 |
|
Evaluation of conditions for suppression of combustion and detonation waves A. A. Vasil'ev
|
39 |
|
Application of synthesis gas to intensify kerosene combustion in a supersonic flow P. K. Tret'yakov, A. V. Tupikin, A. L. Kuranov, S. V. Kolosenok, A. A. Savarovskiy, V. M. Abashev
|
45 |
|
Continuous detonation of $\mathrm{CH}_4/\mathrm{H}_2$–air mixtures in an annular combustor with varied geometry F. A. Bykovskii, S. A. Zhdan, E. F. Vedernikov
|
49 |
|
Thermodynamically consistent detonation model for solid explosives H. Zheng, M. Yu
|
57 |
|
Structure of detonation waves in mixtures of tetranitromethane with nitrobenzene and methanol A. V. Utkin, V. M. Mochalova, A. M. Astakhov, V. E. Rykova, S. A. Koldunov
|
69 |
|
Distribution of aluminum clusters and their ignition in air during dispersion of aluminum nanoparticles in a shock wave P. S. Kuleshov, V. D. Kobtsev
|
80 |
|
Effect of the aluminum particle size, solid content, and aluminum/oxygen ratio on the underwater explosion performance of aluminum-based explosives F. Xiao, W. Gao, J. Li, R. Yang
|
91 |
|
Mathematical model of critical condition for friction ignition X.-Y. Liang, G.-B. Mi, P.-J. Li, J.-X. Cao, X. Huang
|
99 |
|
Impact sensitivity of pyrotechnics: a model based on activation energy S. P. Sivapirakasam, K. Harisivasri Phanindra, J. Rohin, S. L. Aravind
|
106 |
|
Computational and experimental study of operation of shaped charges with hemispherical facings of degressive thickness S. V. Fedorov, S. V. Ladov, Ya. M. Nikolskaya, A. E. Kurepin, K. S. Kolobov
|
116 |
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Influence of the strength of the charge casing on the performance of solid-propellant pulsating explosive devices V. O. Soloviev, N. M. Ovchinnikov, M. S. Kelner
|
130 |