Productions of ultra‐fine powders and their use in high energetic compositions YF Ivanov, MN Osmonoliev, VS Sedoi, VA Arkhipov, SS Bondarchuk, ... Propellants, Explosives, Pyrotechnics: An International Journal Dealing with …, 2003 | 208 | 2003 |
Effect of iron and boron ultrafine powders on combustion of aluminized solid propellants AG Korotkikh, OG Glotov, VA Arkhipov, VE Zarko, AB Kiskin Combustion and Flame 178, 195-204, 2017 | 116 | 2017 |
The influence of aluminum powder dispersity on composite solid propellants ignitability by laser radiation VA Arkhipov, AG Korotkikh Combustion and Flame 159 (1), 409-415, 2012 | 103 | 2012 |
Influence of aluminum particle size on ignition and nonstationary combustion of heterogeneous condensed systems VA Arkhipov, SS Bondarchuk, AG Korotkikh, VT Kuznetsov, AA Gromov, ... Combustion, Explosion, and Shock Waves 48, 625-635, 2012 | 55 | 2012 |
Interaction of powdery Al, Zr and Ti with atmospheric nitrogen and subsequent nitride formation under the metal powder combustion in air AA Gromov, YI Pautova, AM Lider, AG Korotkikh, U Teipel, EV Chaplina, ... Powder Technology 214 (2), 229-236, 2011 | 51 | 2011 |
Combustion of metal nanopowders AA Gromov, TA Khabas, AP Il’in, EM Popenko, VA Arkhipov, AG Korotkikh, ... Deltaplan, Tomsk, 2008 | 36 | 2008 |
Effect of B, Fe, Ti, Cu nanopowders on the laser ignition of Al-based high-energy materials AG Korotkikh, IV Sorokin, EA Selikhova, VA Arkhipov Combustion and Flame 222, 103-110, 2020 | 32 | 2020 |
Laboratory method for measurement of the specific impulse of solid propellants VA Arkhipov, AB Kiskin, VE Zarko, AG Korotkikh Combustion, Explosion, and Shock Waves 50, 622-624, 2014 | 25 | 2014 |
Effect of Me/B‐powder on the ignition of high‐energy materials AG Korotkikh, IV Sorokin Propellants, Explosives, Pyrotechnics 46 (11), 1709-1716, 2021 | 22 | 2021 |
Study of ignition of high-energy materials with boron and aluminum and titanium diborides AG Korotkikh, VA Arkhipov, KV Slyusarsky, IV Sorokin Combustion, Explosion, and Shock Waves 54, 350-356, 2018 | 22 | 2018 |
Ignition and combustion of composite solid propellants based on a double oxidizer and boron-based additives AG Korotkikh, IV Sorokin, EA Selikhova, VA Arkhipov Russian Journal of Physical Chemistry B 14, 592-600, 2020 | 19 | 2020 |
Influence of the dispersity of aluminum powder on the ignition characteristics of composite formulations by laser radiation VA Arkhipov, AG Korotkikh, VT Kuznetsov, AA Razdobreev, IA Evseenko Russian Journal of Physical Chemistry B 5, 616-624, 2011 | 18 | 2011 |
Comparative analysis of methods for measuring the transient burning rate. II. Research results VA Arkhipov, SS Bondarchuk, AG Korotkikh Combustion, Explosion, and Shock Waves 46, 570-577, 2010 | 17 | 2010 |
Kinetics of coal char gasification in a carbon dioxide medium AG Korotkikh, KV Slyusarskiy, AA Ditts Russian Journal of Physical Chemistry B 10, 576-581, 2016 | 15 | 2016 |
Comparison of coal reactivityduring conversion into different oxidizing medium AG Korotkikh, KV Slyusarskiy, KB Larionov, VI Osipov Journal of Physics: Conference Series 754 (5), 052005, 2016 | 14 | 2016 |
Influence of metal powders dispersity on the characteristics of conductive and radiant ignition of mixed compositions VA Arkhipov, AG Korotkikh, VT Kuznetsov, ES Sinogina Khim. Fiz 26 (6), 58-67, 2007 | 14 | 2007 |
Ignition and combustion of high-energy materials containing aluminum, boron and aluminum diboride A Korotkikh, I Sorokin, E Selikhova MATEC Web of Conferences 194, 01055, 2018 | 13 | 2018 |
Kinetic study of coals gasification into carbon dioxide atmosphere AG Korotkikh MATEC Web of Conferences. Vol. 23: Heat and Mass Transfer in the Thermal …, 2015 | 13 | 2015 |
Comparative analysis of methods for measuring the transient burning rate. I. Research methods VA Arkhipov, SS Bondarchuk, AG Korotkikh Combustion, Explosion, and Shock Waves 46, 564-569, 2010 | 13 | 2010 |
Ignition and combustion of solid and gelled propellants containing ultra-fine aluminum AB Vorozhtsov, V Arkhipov, S Bondarchuk, A Korotkikh, V Kuznetsov, ... Rocket Propulsion: Present and Future, 2003 | 13 | 2003 |