174
Views
5
CrossRef citations to date
0
Altmetric
Research Article

Determination of Thermodynamic Characteristics of Phase-stabilized Ammonium Nitrate-Based High-energy Solid Combustible Materials

ORCID Icon, , , & ORCID Icon
Pages 768-784 | Received 09 Mar 2020, Accepted 18 Jun 2020, Published online: 29 Jun 2020

References

  • Antiginya, S.A., Mukhetdinova, A.V. 2015. Diagnostics of aluminum powders of grades RA2-RA60. In All-russian scientific and practical seminar problems of metrology of nano-powders and nano-materials 33–34. Tomsk. (in Russian).
  • Arkhinov, V.A., Korotkikh, A.G., Bondarchuk, S.S. 2006. Production technology and dispersed characteristics of aluminum nanopowders. Min J 4:58–64. (in Russian).
  • Baum, F.A., Shipitsin, L.A. 1966. Thermal explosion at elevated hydrostatic pressures. Combustion. Explosion Shock Waves 2:60–64. doi:https://doi.org/10.1007/BF00750599.
  • Belov, G.V. 2005. Computer simulation of thermodynamic equilibria in complex heterogeneous systems. Math Model 17 (2):81–91. (in Russian).
  • Bilous, K.R. 2018. Ways to increase the energy characteristics of mixed compositions. Master’s dissertation, Tomsk: National Research Tomsk State University. (in Russian).
  • Brinkley, S.R. 1947. Calculation of the equilibrium composition of systems of many constituents. J Chem Phys 15:107–10. doi:https://doi.org/10.1063/1.1746420.
  • Dukhanin, G.A., Kozlovtsev, V.A. 2010. Thermodynamic calculations of chemical reactions. Volgograd: Volgograd State Technical University. (in Russian).
  • Elagin, A.A., Shishkin, R.A., Beketov, A.R., Baranov, M.V. 2013. Gas-phase method for preparing of aluminum nitride powder: A thermodynamic analysis. Mod Probl Sci Educ 2.
  • Gromov, A., Illyin, A., Ditts, A., Vereshchagin, V. 2005. Combustion of Al-Al2O3 mixtures in air. J Eur Ceram Soc 25:1575–79. doi:https://doi.org/10.1016/j.jeurceramsoc.2004.05.017.
  • Gurvich, L.V., Veyts, I.V., Alcock, C.B. 1979. Thermodynamic properties of individual substances. Vol. 2. Moscow: Nauka. (in Russian).
  • Holub, R., Voñka, P. 1976. The chemical equilibria of gaseous systems, 279. Dordrecht: Reidel Publ. Comp.
  • Karapetyants, M. Kh., Karapetyants, M.A. 1968. Basic thermodynamic constants of inorganic and organic substances. Moscow: Khimiya. (in Russian).
  • Korshunov, A. V. 2010. Patterns of interaction of aluminum powders with nitrogen. Bull Tomsk Polytech Univ 316 (3):17–23. (in Russian).
  • Orlova, E.Yu. 1973. Chemistry and technology of blasting explosives. Moscow: Khimiya. (in Russian).
  • Seisenova, A.B., Aknazarov, S. Kh., Gonzalez-Leal, J.M., Bayrakova, O.S., Golovchenko, O. Yu., Kapizov, O.S. 2018a. Synthesis of high-energy solid compounds. Proceedings of the V International scientific conference Modern problems of condensed matter physics, nanotechnology and nanomaterials (Sarsembinov readings), 335–41. Almaty. (in Russian).
  • Seisenova, A.B., Aknazarov, S. Kh., Gonzalez-Leal, J.M., Bayrakova, O.S., Golovchenko, O. Yu., Kapizov, O.S. 2018b. Synthesis of solid compounds with high energy characteristics. Collection of the XXV All-Russian Seminar with international participation in jet, tear-off and unsteady flows, 209–10. St. Petersburg. (in Russian).
  • Shindlovsky, A.A. 1970. Fundamentals of pyrotechnics. Moscow: Mashinostroenie. (in Russian).
  • Smith, W.R., Missen, R.W. 1982. Chemical reaction equilibrium analysis: Theory and algorithms, 364. New York: John Wiley.
  • Trusov, B.G. 1991. Modeling of chemical and phase equilibria at high temperatures. Moscow: Bauman Moscow State Technical University. (in Russian).
  • Vatolin, N. A., Moiseev, G. K., Trusov, B. G. 1994a. Thermodynamic modeling of metallurgical processes inorganic systems. Moscow: Metallurgiya. (in Russian).
  • Vatolin, N. A., Moiseev, G. K., Trusov, B. G. 1994b. Thermodynamic modeling in high-temperature inorganic systems. Moscow: Metallurgiya. (in Russian).
  • Vo, T.A., Jung, M., Adams, D., Shim, H., Hyunsoo, K., Raymoon, H., Oh, M. 2020. Dynamic modelling and simulation of the combustion of aluminized solid propellant with HMX and GAP using moving boundary approach. Combust Flame 213:409–25. doi:https://doi.org/10.1016/j.combustflame.2019.12.015.
  • Voronin, G.F. 1984. Calculations of phase and chemical equilibria in complex systems, 112–43. Moscow: Khimiya. (in Russian).
  • Wang, J., Qu, Y., Gong, F., Shen, J., Zhang, L. 2019. A promising strategy to obtain high energy output and combustion properties by self-activation of nano-Al. Combust Flame 204:220–26. doi:https://doi.org/10.1016/j.combustflame.2019.03.016.
  • White, W.B., Johnson, S.M., Dantzig, G.B. 1958. Chemical equilibrium in complex mixtures. J Chem Phys 28:751–55. doi:https://doi.org/10.1063/1.1744264.
  • Zhukov, B.P. 2000. Brief encyclopedic dictionary, energy condensed systems. Moscow: Janus-K. (in Russian).

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.