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Correlation of parameters in the burning rate law and its influence on intraballistic characteristics of a rocket motor
Rashkovskiy S., Milekhin Y., Fedorychev A.
Combustion of Aluminum and Boron Agglomerates Free Falling in Air. II. Experimental Results
Glotov O., Surodin G.
New Nanocarbon High-Energy Materials
Mansurov Z., Atamanov M., Elemesova Z., Lesbaev B., Chikradze M.
Ignition and Combustion of Condensed Systems with Energy Fillers
Arkhipov V., Zhukov A., Kuznetsov V., Zolotorev N., Osipova N., Perfil’eva K.
Solid propellant combustion in a high-velocity cross-flow of gases (review)
Arkhipov V., Zarko V., Zharova I., Zhukov A., Kozlov E., Aksenenko D., Kurbatov A.
Critical Conditions of Spark Ignition of a Bidisperse Aluminum Powder in Air
Moiseeva K., Krainov A., Dement’ev A.
Influence of Activated Carbon on the Thermal Decomposition of Hydroxylammonium Nitrate
Atamanov M., Amrousse R., Hori K., Kolesnikov B., Mansurov Z.
Is It Possible to Determine Normal Burning Parameters from the Detonation Theory?
Vasil’ev A.
Burning of Mixtures of Copper Oxide with Titanium
Mikhailov Y., Aleshin V., Vershinnikov V., Ignat’eva T.
Impact of mechanical activation on the burning rate of pressed and bulk-density samples from a Ni + Al mixture
Seplyarskii B., Kochetov N., Kochetkov R.
Performance optimization of a standard-flow hybrid rocket engine
Arkhipov V., Bondarchuk S., Zhukov A., Zolotorev N., Perfil’eva K.
Mathematical modeling of combustion of a frozen suspension of nanosized aluminum
Krainov A., Poryazov V.
Combustion of Aluminum and Boron Agglomerates Free Falling in Air. I. Experimental Approach
Glotov O., Surodin G.
Calculation of pressure in a solid-propellant rocket motor with the use of a real dependence of the solid propellant burning rate on pressure
Lipanov A.
Catalytic effect of submicron TiO2 particles on the methane–air flames speed
Bolshova T., Korobeinichev O., Toropetskii K., Shmakov A., Chernov A.
Effects of Obstacles on the Passage of Filtering Combustion Waves along a Porous Titanium Tape
Vadchenko S.
Shock wave induced primary thermal fragmentation of coal particles
Jaisankar S., Patadiya D., Sheshadri T.
Validation of a kinetic scheme for numerical investigation of hydrogen–methanol–air flames
Zamashchikov V., Bunev V., Shvartsberg V., Babkin V.
Study on Energy Output Characteristics of Explosives Containing B/Al in the Air Blast
Li X., Cao W., Song Q., Gao D., Zheng B., Guo X., Lu Y., Wang X.
Dependence of the Burning Rates of Tapes of Ti + xB Mixtures on Boron Concentration
Vadchenko S.
Relationship between the dust flame propagation velocity and the combustion mode of fuel particles
Poletaev N.
High-Energy Salts of 5.5′-Azotetrazole. 2. Burning Behavior and the Combustion Mechanism
Sinditskii V., Bogdanova L., Levshenkov A.
Combustion of Spherical Agglomerates of Titanium in Air. III. Motion of Agglomerates and the Effect of Blowing Velocity on Nanosized Combustion Products and Burning Time
Glotov O., Surodin G., Baklanov A.
Burning of the Ti + xC (1 > x > 0.5) powder and granulated mixtures
Seplyarskii B., Kochetkov R., Vadchenko S.
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