|
Large-diameter shock tube study of the processes in a gas-dynamic laser S. A. Losev, V. N. Makarov, V. A. Pavlov, O. P. Shatalov
|
463–473 |
|
Piecewise-one-dimensional models of supersonic combustion and pseudo shock in a duct E. S. Shchetinkov
|
473–483 |
|
Numerical integration of chemical-kinetics equations V. I. Golovichev
|
483–488 |
|
Ignition of metal particles with a logarithmic oxidation law A. P. Aldushin, V. N. Bloshenko, B. S. Seplyarsky
|
489–496 |
|
Formation of a fluidized layer with the combustion of condensed systems with solid nonagglomerating additives in a field of mass forces V. I. Yukhvid, È. I. Maksimov, A. G. Merzhanov, V. S. Kozlov
|
496–501 |
|
Self-similar combustion conditions of a powder with variable optical properties Yu. A. Gostintsev, I. G. Assovskii
|
501–506 |
|
Experimental study of critical conditions during the ignition and combustion of powders V. F. Mikheev, Yu. V. Levashov
|
506–510 |
|
Ignition of hexogen by heated wires at pressures of 1000–13000 kg/cm$^2$ I. S. Klochkov, N. D. Manachinskii
|
510–515 |
|
Calculation of the ignition limit of a particle of boron E. A. Zolotar', E. S. Ozerov
|
515–521 |
|
Approximate physical model of a small-velocity detonation in liquid substances A. V. Dubovik, A. A. Goncharov, V. K. Bobolev
|
521–529 |
|
Simple thermodynamic method for evaluating the temperature of the shock compression of a condensed medium V. S. Trofimov
|
530–535 |
|
Transformation of meteoritic material in experiments with shock compression at pressures of 500 and 1000 kbar produced by explosions G. P. Vdovykin, A. N. Dremin, S. V. Pershin, I. D. Shevaleevskii
|
535–541 |
|
Generalized electrical pulse and dissipation dynamics of high-explosive-charge explosion products A. P. Boronin, Yu. A. Medvedev, B. M. Stepanov
|
541–551 |
|
Shock interaction with a wedge cavity N. S. Kozin, V. A. Simonov
|
551–558 |
|
Throwing of flat plates by layers of condensed explosives G. E. Kuz'min, V. I. Mali, V. V. Pai
|
558–562 |
|
Attenuation of a plane shock wave with a high-velocity shock È. I. Andriankin, M. M. Kononenko
|
562–566 |
|
Destruction of metallic rings in a plastic state V. M. Kuznetsov
|
567–571 |
|
Surface effects in metals after passage of a plane shock T. M. Sobolenko, T. S. Teslenko
|
571–575 |
|
On the transformation of shock compression into isentropic compression G. A. Adadurov, V. V. Gustov, V. S. Zhuchenko, M. Yu. Kosygin, P. A. Yampolsky
|
576–579 |
|
Similarity of flows generated during refelection of weak shock waves from a rigid wall and a free surface B. I. Zaslavskii, R. A. Safarov
|
579–585 |
|
A laser-Doppler velocity measurement device for the investigation of rapid gas-dynamic flows A. P. Alkhimov, V. A. Arbuzov, A. N. Papyrin, R. I. Soloukhin, M. S. Shtein
|
585–595 |
|
Brief Communications
|
|
The transitional process in combustion of a condensed substance Yu. I. Babenko
|
596–598 |
|
Effect of an oxidizer on the destruction rate of a polymer binder O. P. Korobeinichev, G. I. Anisiforov
|
599 |
|
Shock adiabats of some laminar plastics B. I. Shekhter, L. A. Shushko
|
599–601 |
|
Effect of the initial temperature of a condensed substance on the value of the negative erosion V. N. Vilyunov, A. A. Dvoryashin
|
602 |
|
Critical duration of an electrical discharge for ignition of methane-air and hydrogen-air mixtures V. S. Kravchenko, A. T. Eryzin, V. P. Yakovlev
|
603–604 |
|
Deviations from the Le Chatelier rule for the limits of the propagation of a flame V. A. Bunev, V. S. Babkin
|
605–607 |