The nature of exothermic reactions in highly dispersed initiating explosives
- Autores: Dimukhametov R.R.1, Sharova A.P.1, Knutov A.A.1, Ivanova D.S.1, Plakhov V.V.1
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Afiliações:
- Kazan National Research Technological University
- Edição: Volume 44, Nº 8 (2025)
- Páginas: 26-32
- Seção: Combustion, explosion and shock waves
- URL: https://kazanmedjournal.ru/0207-401X/article/view/688998
- DOI: https://doi.org/10.31857/S0207401X25080037
- ID: 688998
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Resumo
Highly dispersed initiating explosives and igniting compositions based on them in the form of an aqueous suspension and paste have been obtained, which can significantly improve the safety of the technological process of equipping pyrotechnic initiation devices. The properties of the obtained explosives are analyzed, and the scope of their application in the form of film pyroelements is proposed. A visual - thermal analysis of the exothermic transformation in film pyroelements under normal conditions has been performed. It has been shown that high-temperature exothermic reactions do not occur in the form of a detonation wave, but in the form of stationary layered combustion at the rate of 20 to 200 mm/s under normal conditions, with intense release of dispersed products and flames.
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Sobre autores
R. Dimukhametov
Kazan National Research Technological University
Autor responsável pela correspondência
Email: dim_rus2000@mail.ru
Rússia, Kazan
A. Sharova
Kazan National Research Technological University
Email: dim_rus2000@mail.ru
Rússia, Kazan
A. Knutov
Kazan National Research Technological University
Email: dim_rus2000@mail.ru
Rússia, Kazan
D. Ivanova
Kazan National Research Technological University
Email: dim_rus2000@mail.ru
Rússia, Kazan
V. Plakhov
Kazan National Research Technological University
Email: dim_rus2000@mail.ru
Rússia, Kazan
Bibliografia
- Matyas R., Pachman J. Primary Explosives. Berlin-Heidelberg: Springer-Werlag, 2013.
- Gelfman M.I., Kovalevich O.V., Yustratov V.P. Colloid chemistry. St. Petersburg: Lan, 2004. [In Russian].
- Bagal L.I. Chemistry and technology of initiating explosives. M.: Mechanical Engineering, 1975. [In Russian].
- Abdullin I.A., Dimukhametov R.R., Belkova O.P., Fadeev D.V., Ageev V.N. et al. // Ammunitions and high-energy condensed systems. 2016. Special Issue № 3. P. 48.
- Akhmedshina V.A. Bazotov V.Ya. Crystallization of energy-saturated compounds from solutions. Training manual. Kazan: Kazan National Research Technological University, 2012.
- Belyaev A.F., Belyaeva A.E. // The USSR Academy of Science Reports. 1946. V. 52. P. 507.
- Danilov Yu.N., Ilyushin M.A., Tselinsky I.V. Industrial explosives. Part I. Initiating explosives. Text of lectures. St. Petersburg: SPbGTI (TU), 2001.
- Andreev K.K. Thermal decomposition and combustion of explosives. 2nd ed. M.: Science, 1966 [In Russian].
- Svetlov B.S., Vogelzang A.E. // Сombust. Explos. Shock Waves. 1969. V. 5. № 1. P. 67.
- Vogelzang A.E., Egorshev V.Yu., Pimenov A.Yu., Sinditsky V.P., Saklanty A.R. et al. // The USSR Academy of Science Reports. 1985. V. 282. № 6. P. 1449.
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