Combustion, Explosion, and Shock Waves
ISSN 0010-5082 (Print)
ISSN 1573-8345 (Online)
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Keywords
PETN
aluminum
burning rate
combustion
continuous spin detonation
detonation
enthalpy of formation
equation of state
explosion
high pressure
hydrogen
ignition
laser initiation
mathematical modeling
mechanical activation
methane
numerical simulation
self-propagating high-temperature synthesis
shock wave
thermal decomposition
thermal explosion
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Keywords
PETN
aluminum
burning rate
combustion
continuous spin detonation
detonation
enthalpy of formation
equation of state
explosion
high pressure
hydrogen
ignition
laser initiation
mathematical modeling
mechanical activation
methane
numerical simulation
self-propagating high-temperature synthesis
shock wave
thermal decomposition
thermal explosion
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Author Details
Author Details
Vadchenko, S. G.
Issue
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Title
File
Vol 52, No 6 (2016)
Article
Structure and phase formation in the Ti–Al–Nb system in the thermal explosion mode
Vol 52, No 6 (2016)
Article
Burning of the Ti +
x
C (1 >
x
> 0.5) powder and granulated mixtures
Vol 53, No 2 (2017)
Article
Ignition and phase formation in the Zr–Al–C system
Vol 55, No 2 (2019)
Article
Dependence of the Burning Rates of Tapes of Ti +
x
B Mixtures on Boron Concentration
Vol 55, No 3 (2019)
Article
Effects of Obstacles on the Passage of Filtering Combustion Waves along a Porous Titanium Tape
Vol 55, No 6 (2019)
Article
Direct Conversion of Chemical Energy into Electrical Energy in the Combustion of a Thin Three-Layer Charge
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