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Fizika Goreniya i Vzryva, 2007, Volume 43, Issue 1, Pages 99–111 (Mi fgv1469)  

This article is cited in 19 scientific papers (total in 19 papers)

Propellant performance of organic explosives and their energy output and detonation velocity limits

V. I. Pepekin, S. A. Gubin

Semenov Institute of Chemical Physics, Russian Academy of Sciences, Moscow, 119991
Citations (19)
Abstract: Methods for determining the propellant performance of high explosives (HEs) are considered. The common and distinguishing features of the techniques of end acceleration of plates and shell expansion are shown. Experimental data on the propellant performance of individual explosives are given. The influence of metal additives on the brisance (propellant performance) and blast effect of explosive compositions is considered. A theoretical method for estimating the propellant performance is proposed, and the propellant performance of hydrogen-free HEs is calculated using experimental data on the enthalpies of formation and densities of single crystals. The energy output and detonation velocity limits of organic HEs are considered and estimated. Promising directions in the investigation of the properties of HEs are considered.
Keywords: propellant performance, blast effect, detonation velocity, energy output, explosives.
Received: 20.12.2005
English version:
Combustion, Explosion and Shock Waves, 2007, Volume 43, Issue 1, Pages 84–95
DOI: https://doi.org/10.1007/s10573-007-0013-6
Bibliographic databases:
Document Type: Article
UDC: 530.46:534.222.2
Language: Russian
Citation: V. I. Pepekin, S. A. Gubin, “Propellant performance of organic explosives and their energy output and detonation velocity limits”, Fizika Goreniya i Vzryva, 43:1 (2007), 99–111; Combustion, Explosion and Shock Waves, 43:1 (2007), 84–95
Citation in format AMSBIB
\Bibitem{PepGub07}
\by V.~I.~Pepekin, S.~A.~Gubin
\paper Propellant performance of organic explosives and their energy output and detonation velocity limits
\jour Fizika Goreniya i Vzryva
\yr 2007
\vol 43
\issue 1
\pages 99--111
\mathnet{http://mi.mathnet.ru/fgv1469}
\elib{https://elibrary.ru/item.asp?id=17012279}
\transl
\jour Combustion, Explosion and Shock Waves
\yr 2007
\vol 43
\issue 1
\pages 84--95
\crossref{https://doi.org/10.1007/s10573-007-0013-6}
Linking options:
  • https://www.mathnet.ru/eng/fgv1469
  • https://www.mathnet.ru/eng/fgv/v43/i1/p99
  • This publication is cited in the following 19 articles:
    1. Muhamed Bisić, Adi Pandžić, Lecture Notes in Networks and Systems, 792, New Trends in Engineering Research, 2024, 168  crossref
    2. Jing Zhou, Junlin Zhang, Bozhou Wang, Lili Qiu, Ruoqian Xu, Aleksei B. Sheremetev, “Recent synthetic efforts towards high energy density materials: How to design high-performance energetic structures?”, FirePhysChem, 2:2 (2022), 83  crossref
    3. Alexander V. Belyakov, Vitalii A. Losev, Anatolii N. Rykov, Igor F. Shishkov, Vladimir V. Kuznetsov, Artem V. Khakhalev, Aleksei B. Sheremetev, “Combined gas-phase electron diffraction and coupled cluster determination of the molecular structure of 3,4-dinitrofurazan - A propellant ingredient”, Journal of Molecular Structure, 1250 (2022), 131669  crossref
    4. Igor L. Dalinger, Tatyana K. Shkineva, Irina A. Vatsadze, Alexandr V. Kormanov, Andrei M. Kozeev, Kyrill Yu. Suponitsky, Alla N. Pivkina, Aleksei B. Sheremetev, “Novel energetic CNO oxidizer: Pernitro-substituted pyrazolyl-furazan framework”, FirePhysChem, 1:2 (2021), 83  crossref
    5. Kyrill Y. Suponitsky, Alexander F. Smol'yakov, Ivan V. Ananyev, Artem V. Khakhalev, Alexander A. Gidaspov, Aleksei B. Sheremetev, “3,4‐Dinitrofurazan: Structural Nonequivalence of ortho‐Nitro Groups as a Key Feature of the Crystal Structure and Density”, ChemistrySelect, 5:46 (2020), 14543  crossref
    6. Tat'yana S. Kon'kova, Yurii N. Matyushin, Evgeniy A. Miroshnichenko, Nadezhda V. Palysaeva, Aleksei B. Sheremetev, “Improved Synthesis and Thermochemical Properties of Amino- and Hydrazino-1,2,4,5-Tetrazines”, Chem Heterocycl Comp, 56:11 (2020), 1449  crossref
    7. Danyang Liu, Lang Chen, Chen Wang, Junying Wu, “Aluminum Acceleration and Reaction Characteristics for Aluminized CL‐20‐Based Mixed Explosives”, Propellants Explo Pyrotec, 43:6 (2018), 543  crossref
    8. Vitaly Komarov, Gennady Sakovich, Nikolai Popok, Maxim Kazutin, Nikolai Kozyrev, A. Vorozhtsov, “Detonation propagation along percolating cluster in composite explosives”, MATEC Web Conf., 243 (2018), 00027  crossref
    9. Peter Politzer, Jane S. Murray, Challenges and Advances in Computational Chemistry and Physics, 25, Energetic Materials, 2017, 1  crossref
    10. Peter Politzer, Jane S. Murray, “Some molecular/crystalline factors that affect the sensitivities of energetic materials: molecular surface electrostatic potentials, lattice free space and maximum heat of detonation per unit volume”, J Mol Model, 21:2 (2015)  crossref
    11. Peter Politzer, Jane S. Murray, “Impact sensitivity and the maximum heat of detonation”, J Mol Model, 21:10 (2015)  crossref
    12. Sh. Sh. Nabiev, D. B. Stavrovskii, L. A. Palkina, V. L. Zbarskii, N. V. Yudin, V. L. Vaks, E. G. Domracheva, M. B. Chernyaeva, “Spectrochemical properties of some explosives in the vapor state”, Russ. J. Phys. Chem. B, 7:3 (2013), 203  crossref
    13. M. F. Gogulya, M. A. Brazhnikov, M. N. Makhov, A. Yu. Dolgoborodov, A. V. Lyubimov, I. L. Sokolova, “Effect of aluminum on the acceleration ability of composite formulations based on regular high explosives”, Russ. J. Phys. Chem. B, 6:6 (2012), 730  crossref
    14. V. I. Pepekin, T. V. Gubina, “On the critical diameter and detonability of explosives”, Russ. J. Phys. Chem. B, 5:5 (2011), 813  crossref
    15. I. I. Reout, A. L. Krivchenko, “Computing of throwing ability of the explosives at cylindric front tossing of metal”, Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 125 (2011), 173–177  mathnet  mathnet  crossref
    16. Y. A. Bogdanova, S. A. Gubin, B. L. Korsunskii, V. I. Pepekin, “Detonation characteristics of powerful insensitive explosives”, Combustion, Explosion and Shock Waves, 45:6 (2009), 738–743  mathnet  mathnet  crossref
    17. V. I. Pepekin, B. L. Korsunskii, Yu. N. Matyushin, “Explosive properties of furoxanes”, Combustion, Explosion and Shock Waves, 44:1 (2008), 110–114  mathnet  mathnet  crossref
    18. V. I. Pepekin, B. L. Korsunskii, A. A. Denisaev, “Initiation of solid explosives by mechanical impact”, Combustion, Explosion and Shock Waves, 44:5 (2008), 586–590  mathnet  mathnet  crossref
    19. Robert D. Chapman, Structure and Bonding, 125, High Energy Density Materials, 2007, 123  crossref
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