ISSN Imprimer: 2150-766X
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International Journal of Energetic Materials and Chemical Propulsion
APPLICATION OF THE METHODOLOGY "COUNTERFLOW DIFFUSION FLAMES" FOR CALCULATING THE PENETRATING EFFECT OF FLUOROPLAST-BASED STRIKER
Evgeny A. Khmelnikov
Nizhny Tagil Technological Institute (branch) of Ural Federal University, Nizhny Tagil, Russian Federation
T. E. Zavodova
Ural Federal University, Nizhny Tagil, Russia, 622000
K. V. Smagin
Ural Federal University, Nizhny Tagil, Russia, 622000
The possibility of using fluoroplastic as a reactive material capable of replacing explosives in ammunition
used to defeat lightly armored and easily vulnerable targets is considered. The results of
experiments and mathematical modeling of the penetration process of fluoroplastic-based ammunition
into targets from light alloys. To account for the additional energy released as a result of the
interaction during the simulation, the counterflow diffusion flame (CDF) method was used.
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Khmelnikov, E.A., Smagin, K.V., and Zavodova, T.E., (2017) Application of the Methodology "Counter-flow Diffusion Flames" in Modeling of the Terminal Ballistic Processes of Munitions based on Reactionary Material, in Proc. of the 11th International High Energy Materials Conference Exhibits, Pune, India, 23-25 Nov. 2017,1, pp. 270-276.
Khmelnikov, E.A., Styrov, A.V., Smagin, K.V., Kravchenko, N.S., Rudenko, V.L., Sokolov, S.S., and Svidinsky, A.V., (2016) Study of High-Speed Interaction Processes between Fluoropolymer Projectiles and Aluminum and Titanium-Based Targets, Int. J. Energ. Mater. Chem. Propuls., 1, pp. 167-183.
Khmelnikov, E.A., Styrov, A.V., Smagin, K.V., Kravchenko, N.S., Rudenko, V.L., Falaleev, V.I., Sokolov, S.S., Svidinsky, A.V., and Svidinskaya, N.F., (2015) Study of High-Speed Interaction Processes between Fluoropolymer Projectiles and Aluminum-Based Targets, Defence Technol., 11(1), pp. 56-64.
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Zavodova, T.E., Khmelnikov, E.A., Styrov, A.V., Smagin, K.V., and Bochkarev, S.O., (2016) Numerical Modeling of High-Speed Interaction Processes between Fluoropolymer Projectiles and Light Alloy-Based Targets, in Proc. of 29th Intl. Symp. on Ballistics, BALLISTICS 2016, Edinburgh, Scotland, UK, 9-13 May 2016,2, pp. 1907-1917.
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