Regulations of the Influence of External Thermal Influences on Speed and Explosive Safe Combustion Modes of Pyrotechnic Nitrate-Metallized Mixtures with Metal Fluoride

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A study was made of the regularities of the influence of the main parameters of external thermal effects (elevated heating temperatures and external pressures) on the rate and explosive modes of combustion development of compacted mixtures of magnesium, aluminum and sodium nitrate with fluoride additives metals for different values of technological parameters (excess ratio of the oxidizing agent, nature and content of the additive, dispersion of the components). The effect of technological parameters (ratio and dispersion of components, compaction coefficient, charge diameter, shell material, etc.) on the dependence of the burning rate of mixtures on elevated heating temperatures and external pressures was established; critical ranges of changes in these parameters are determined, the excess of which leads to premature explosive development of combustion of mixtures and fire hazardous destruction of products. On the basis of the research, methods were developed to prevent these destructions of products by regulating technological parameters at the stage of preparation of charge mixtures, which increases the stability of the combustion process of mixtures to external thermal influences. A database has been obtained on the burning rates of compacted mixtures of metal powders (Mg, Al), nitrate-containing oxidizer (NaNO3 ) and additives of inorganic substances (metal fluorides (LiF, NaF, BaF2 , SiF2 , SrF2 , AlF3 )) under conditions elevated heating temperatures and external pressures for various values of technological parameters, which makes it possible to determine the explosive modes of their combustion.

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155-165

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August 2023

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© 2023 Trans Tech Publications Ltd. All Rights Reserved

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[1] V.A. Vashchenko, O.V. Kirichenko, Yu. G. Lega, P.I. Zaika, I.V. Yatsenko, V.V. Tsybulin, Processes of combustion of metallized condensed systems, Naukova dumka, Kyiv, 2008.

Google Scholar

[2] V.A. Vashchenko, O.V. Kyrychenko, Yu. G. Lega, P.S. Pashkovskyi, Fundamentals of fire safety of pyrotechnic nitrate-containing products in the conditions of external thermal influences, Naukova dumka, Kyiv, 2012.

Google Scholar

[3] A.V. Molodyk, N.I. Nosov, G.A. Smolyar, D.V. Lozbin, Experience and prospects of solving thermophysical problems of creating optical-electronic special parts of infrared technology, Second Ukrainian Scientific and Technical Conference "Special Instrumentation: Status and Prospects", Kyiv, Arsenal, Kyiv, (2016) 54 – 56.

Google Scholar

[4] V.M. Balanyuk, N.M. Kozyar, O.I. Garasymiiuk, Application of gas-aerosol-powder fire-extinguishing mixtures for protection against incendiary mixtures, Scientific Journal Science Rise, 2(22) (2016) 11–14.

Google Scholar

[5] V.M. Fateev, Yu.P. Prykhodko, L.I. Taborov, Pyrotechnics, Naukova dumka, Kyiv, 2017.

Google Scholar

[6] O.V. Kyrychenko, O.S. Dibrova, R.B. Motrichuk, V.A. Vashchenko, S.O. Kolinko, Investigation of ignition and combustion of particles of aluminum and magnesium alloys in the decomposition products of solid pyrotechnic fuels, Scientific Bulletin Civil Protection and Fire Safety, 2(8) (2019) 81 – 85.

Google Scholar

[7] V.V. Kovalishyn, V.M. Marych, T.M. Voytovych, B.M. Husar, Use of environmentally acceptable fire extinguishing substances, International Scientific Conference, Environmental safety as the basis of sustainable development of society. European experience and perspectives, Lviv State University of Life Safety, Lviv, 2018.

Google Scholar

[8] Study of trends and regularities of the dynamics of the main indicators of fire statistics in Ukraine according to the territorial principle, Report on the research work, UkrNDITCZ, 2018.

Google Scholar

[9] V.V. Kovalyshyn, V.M. Marych, Y.M. Novitskyi, В.M. Gusar, V.V. Chernetskiy, O.L. Mirus. Improvement of a discharge nozzle damping attachment to suppress fires of class D, Eastern-European Journal of Enterprise Technogies, 5 (95) (2018) 68–76.

DOI: 10.15587/1729-4061.2018.144874

Google Scholar

[10] DSTU 8828:2019. Fire Security. Terms, UkrNDICZ, Kyiv, 2019.

Google Scholar

[11] DSTU 8829:2019. Fire and explosion hazard of substances and materials. Nomenclature of indicators and methods of their determination. Classification, UkrNDICZ, Kyiv, 2019.

Google Scholar

[12] O.V. Kyrychenko, O.S. Dibrova, R. B. Motrichuk, V. A. Vashchenko, S. O. Kolinko, T.I. Butenko, V.V. Tsybulin, Determination of critical regimes of development of combustion processes of pyrotechnic nitrate-metal mixtures under conditions of external thermal effects, Scientific Journal of the Cherkasy State Technological University, Cherkasy, (2020)123– 133.

DOI: 10.15587/2312-8372.2020.199252

Google Scholar

[13] O.S. Dibrova, O.B. Kyrychenko, R.B. Motrichuk, V.A. Vashchenko, Increasing the fire safety of pyrotechnic nitrate-metal mixtures in conditions of external thermal effects, International Scientific Journal "Intenauka", Kyiv, (2020) № 5/5799.

DOI: 10.15587/2312-8372.2020.199252

Google Scholar

[14] E.P. Kyrychenko, Research of the processes of external thermoshock actions on pyrotechnic metal oxide products under the conditions of shot and flight, International Conference Fire Safety: Theory and Practice, Cherkasy Institute of Fire Safety named after Chernobyl Heroes, Cherkasy, (2021) 87–102.

DOI: 10.31474/1999-981x-2021-1-102-109

Google Scholar

[15] E. Kyrychenko, Research of the processes of external thermal shock effects on pyrotechnic metal oxide products under the conditions of a shot and flight, International Conference Emergency Situations: Prevention and Elimination, Cherkasy Institute of Fire Safety named after Chernobyl Heroes, Cherkasy, (2021) 37–51.

Google Scholar

[16] E. Kyrychenko, V. Gvozd, V. Vashchenko, O. Kyrychenko, O. Diadiushenko, V. Melnyk, Patterns of influence of technological parameters and external factors on the ignition temperature and combustion time of magnesium and aluminum particles in the decomposition products of metal oxides, Scientific Journal Civil defense and fire safety, 2(12)(2021)111-121.

Google Scholar

[17] O.V. Kyrychenko, O.S. Dibrova, R.B. Motrichuk, E.O. Tyshchenko, V.V. Tsybulin, Determination of permissible modes of heating of pyrotechnic mixtures during their operation, Scientific Journal of the Cherkasy State Technological University, Cherkasy, (2018) 5–11.

Google Scholar

[18] O. Dibrova, O. Kyrychenko, R. Motrychuk, M. Tomenko, V. Melnyk, Fire safety improvement of pyrotechnic nitrate-metal mixtures under external thermal conditions, Technology audit and production reserves, 1/1(51) (2022) 44–49.

DOI: 10.15587/2312-8372.2020.199252

Google Scholar

[19] O.S. Dibrova, O.V. Kyrychenko, R.B. Motrichuk, V.A. Vashchenko, Patterns of influence of technological parameters on the fire safety of pyrotechnic nitrate-titanium mixtures in conditions of external thermal actions, International Scientific Journal Internauka, 5/5798 (2020).

DOI: 10.15587/2312-8372.2020.199252

Google Scholar

[20] R.B. Motrichuk, O.V. Kyrychenko, V.A. Vashchenko, S.O. Kolinko, T.I. Butenko, E.P. Kyrychenko, V.V. Tsybulin, Regularities of influence of technological parameters and external factors on temperature and composition of combustion products of pyrotechnic nitrate-metal mixtures, Bulletin of Cherkasy State Technological University, 4 (2020) 131–142.

DOI: 10.4028/p-kww878

Google Scholar

[21] E. Kyrychenko, Methodology for determining the critical values of the parameters of external thermal effects on pyrotechnic metal oxide products under operating conditions, Scientific Journal of the Cherkasy State Technological University, Cherkasy, 2 (2022) 53–63

Google Scholar

[22] E.P. Kyrychenko, V.V. Kovalishyn, V.M. Gvozd, V.A. Vashchenko, S.O. Kolinko, V.V. Tsybulin, Study of the mechanism and development of a model of the development of the combustion process of pyrotechnic mixtures of metal fuel + metal oxide under external thermal effects, Scientific Journal of the Cherkasy State Technological University, Cherkasy, 4 (2021) 68–82.

Google Scholar

[23] E. Kyrychenko, Investigation of ignition processes and the development of combustion of two-component pyrotechnic mixtures made of magnesium, aluminum and metal oxide powders at elevated heating temperatures and external pressures, International Conference Emergency Situations: Prevention and Elimination, Cherkasy Institute of Fire Safety named after Chernobyl Heroes, Cherkasy, 6 (2022) 29–42.

Google Scholar

[24] M. Kustov, V. Kalugin, V. Tutunik, O. Tarakhno, Physicochemical principles of the technology of modified pyrotechnic compositions to reduce the chemical pollution of the atmosphere. Voprosy Khimii i Khimicheskoi Tekhnologii, 1 (2019) 92–99.

DOI: 10.32434/0321-4095-2019-122-1-92-99

Google Scholar

[25] L. Kutsenko, O. Semkiv, V. Asotskyi, L. Zapolskiy, O. Shoman, N. Ismailova, V. Danylenko, S. Vinogradov, E. Sivak, Geometric Modeling Of The Unfolding Of A Rod Structure In The Form Of A Double Spherical Pendulum In Weightlessness, Eastern-European Journal of Enterprise Technologies, 4(7–94) (2018) 13–24.

DOI: 10.15587/1729-4061.2018.139595

Google Scholar