nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
Analysis of the Critical Conditions for Ignition of GasParticle Mixtures by a Heated Body with Pulsed Energy Supply
|
B. S. Seplyarskii |
|
2004 |
40 |
2 |
p. 127-135 9 p. |
artikel |
2 |
Analysis of the Critical Conditions for Ignition of Gas–Particle Mixtures by a Heated Body with Pulsed Energy Supply
|
Seplyarskii, B. S. |
|
2004 |
40 |
2 |
p. 127-135 |
artikel |
3 |
Application of the Gilvarry Distribution to the Statistical Description of Fragmentation of Solids under Dynamic Loading
|
V. V. Sil'vestrov |
|
2004 |
40 |
2 |
p. 225-237 13 p. |
artikel |
4 |
Application of the Gilvarry Distribution to the Statistical Description of Fragmentation of Solids under Dynamic Loading
|
Sil'vestrov, V. V. |
|
2004 |
40 |
2 |
p. 225-237 |
artikel |
5 |
Divacancy Model of Heavy Metal Azide Initiation
|
B. P. Aduev |
|
2004 |
40 |
2 |
p. 209-213 5 p. |
artikel |
6 |
Divacancy Model of Heavy Metal Azide Initiation
|
Aduev, B. P. |
|
2004 |
40 |
2 |
p. 209-213 |
artikel |
7 |
Effect of Channel Geometry and Mixture Temperature on DetonationtoDeflagration Transition in Gases
|
N. N. Smirnov |
|
2004 |
40 |
2 |
p. 186-199 14 p. |
artikel |
8 |
Effect of Channel Geometry and Mixture Temperature on Detonation‐to‐Deflagration Transition in Gases
|
Smirnov, N. N. |
|
2004 |
40 |
2 |
p. 186-199 |
artikel |
9 |
Experimental Study of the Disperse Composition of Condensed Products of AluminumParticle Combustion in Air
|
D. A. Yagodnikov |
|
2004 |
40 |
2 |
p. 154-162 9 p. |
artikel |
10 |
Experimental Study of the Disperse Composition of Condensed Products of Aluminum‐Particle Combustion in Air
|
Yagodnikov, D. A. |
|
2004 |
40 |
2 |
p. 154-162 |
artikel |
11 |
Fragmentation of a Steel Sphere by a HighVelocity Impact on a Highly Porous Thin Bumper
|
V. V. Sil'vestrov |
|
2004 |
40 |
2 |
p. 238-252 15 p. |
artikel |
12 |
Gasless Combustion of TiAl Bimetallic Multilayer Nanofoils
|
A. S. Rogachev |
|
2004 |
40 |
2 |
p. 166-171 6 p. |
artikel |
13 |
Gasless Combustion of Ti–Al Bimetallic Multilayer Nanofoils
|
Rogachev, A. S. |
|
2004 |
40 |
2 |
p. 166-171 |
artikel |
14 |
Ignition of βAzidoethanol Droplets in Air
|
V. V. Golovko |
|
2004 |
40 |
2 |
p. 145-149 5 p. |
artikel |
15 |
Ignition of β‐Azidoethanol Droplets in Air
|
Golovko, V. V. |
|
2004 |
40 |
2 |
p. 145-149 |
artikel |
16 |
Mathematical Simulation of Sintering of an Ultrafine Powder
|
Yu. A. Gosteev |
|
2004 |
40 |
2 |
p. 163-165 3 p. |
artikel |
17 |
Mathematical Simulation of Sintering of an Ultrafine Powder
|
Gosteev, Yu. A. |
|
2004 |
40 |
2 |
p. 163-165 |
artikel |
18 |
Metallochemical Analysis of the Reaction in a Mixture of Nickel and Aluminum Powders
|
O. B. Kovalev |
|
2004 |
40 |
2 |
p. 172-179 8 p. |
artikel |
19 |
Metallochemical Analysis of the Reaction in a Mixture of Nickel and Aluminum Powders
|
Kovalev, O. B. |
|
2004 |
40 |
2 |
p. 172-179 |
artikel |
20 |
Model Estimation of the Viscosity of Explosion Products of Condensed Explosives
|
V. P. Kopyshev |
|
2004 |
40 |
2 |
p. 200-208 9 p. |
artikel |
21 |
Model Estimation of the Viscosity of Explosion Products of Condensed Explosives
|
Kopyshev, V. P. |
|
2004 |
40 |
2 |
p. 200-208 |
artikel |
22 |
Modeling and Large Eddy Simulation of Deflagration Dynamics in a Closed Vessel
|
D. V. Makarov |
|
2004 |
40 |
2 |
p. 136-144 9 p. |
artikel |
23 |
Modeling and Large Eddy Simulation of Deflagration Dynamics in a Closed Vessel
|
Makarov, D. V. |
|
2004 |
40 |
2 |
p. 136-144 |
artikel |
24 |
Similarity Criteria for Underwater Explosions
|
B. E. Gel'fand |
|
2004 |
40 |
2 |
p. 214-218 5 p. |
artikel |
25 |
Similarity Criteria for Underwater Explosions
|
Gel'fand, B. E. |
|
2004 |
40 |
2 |
p. 214-218 |
artikel |
26 |
Specific Features of Electric Phenomena in SelfPropagating HighTemperature Synthesis
|
A. I. Kirdyashkin |
|
2004 |
40 |
2 |
p. 180-185 6 p. |
artikel |
27 |
Specific Features of Electric Phenomena in Self‐Propagating High‐Temperature Synthesis
|
Kirdyashkin, A. I. |
|
2004 |
40 |
2 |
p. 180-185 |
artikel |
28 |
Thermal Explosion of a Hollow Cylinder Under ThirdKind Boundary Conditions
|
R. Sh. Gainutdinov |
|
2004 |
40 |
2 |
p. 150-153 4 p. |
artikel |
29 |
Thermal Explosion of a Hollow Cylinder Under Third‐Kind Boundary Conditions
|
Gainutdinov, R. Sh. |
|
2004 |
40 |
2 |
p. 150-153 |
artikel |
30 |
Transmission of Bubble Detonation through a Layer of an Inert Liquid
|
A. V. Pinaev |
|
2004 |
40 |
2 |
p. 219-224 6 p. |
artikel |
31 |
Transmission of Bubble Detonation through a Layer of an Inert Liquid
|
Pinaev, A. V. |
|
2004 |
40 |
2 |
p. 219-224 |
artikel |