Vol. 61, No. 2, 2025
Combustion in Supersonic Flow in a Two-Section Channel with Side Supply of Compressed Air and Hydrogen
p. 171 abstract
Flame Propagation in CH4/Air and CH4/Air/Coal Dust Mixtures in a Closed Vertical Channel
p. 179 abstract
Suppression of Detonation Waves by Nitrogen and Carbon Dioxide: Methane and Hydrogen Mixtures
p. 188 abstract
Thermocouple Measurements of Heat Fluxes during Detonation Spraying
p. 195 abstract
X-Ray Radiography Study of the Interior Ballistics of a Model Solid Rocket Motor
p. 200 abstract
Effect of Modified Allotropic Forms of Carbon on the Burning Rate of Model Compositions of Paste-Like Fuels
p. 206 abstract
Growth of Carbon Particles during Detonation of Condensed Explosives
p. 213 abstract
Shock-Wave Mechanism of Detonation Initiation in Premixed Hydrogen–Argon–Oxygen Flow Around a High-Velocity Projectile
p. 229 abstract
Instability of the Charge Boundary Flow in a Nitromethane/Polymethyl Methacrylate Detonation
p. 242 abstract
Numerical Modeling of Detonation Propagation Using MK Kinetics in Small Cross-Section Channels Equipped with a PETN-Based Composition
p. 251 abstract
Experimental-Computational Method for Determining the Critical Detonation Diameter of High-Density Explosive Charges
p. 258 abstract
Study of Properties of Tetramethylammonium Perchlorate and Some Explosive Compositions Based on It
p. 267 abstract
Al–nB Boron-Containing Composite Fillers for Explosive Compositions: Properties, Compatibility with Binders, and Application
p. 275 abstract
Analysis of the Processes Accompanying Cylindrical Cumulation
p. 287 abstract
Convergence of Thick-Walled Cylindrical Copper Shells under Explosivie Loading
p. 294 abstract
Instability in the Dynamic Collapse of Shells
p. 301 abstract
Modeling the Behavior of Spherical Boron Carbide Shells under Explosive Compression
p. 309 abstract
Optical Radiation from Shock-Compressed Fused Silica
p. 319 abstract
Model of Shock Compression of Condensed Matter
p. 332 abstract
Increasing the Performance of Shaped Charges by Using High-Modulus Ceramic Lens Assemblies
p. 338 abstract