FLAMELESS COMBUSTION OF BALLASTED ENERGY SYSTEMS

Cover Page

Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

The review presents the available information on the process of flameless combustion of energy materials in ballasted systems. The methods of its organization, the results of studies of the process itself and the properties of the resulting composite materials, as well as its application for obtaining new functional materials are demonstrated.

About the authors

Yu. M. Mikhailov

Federal Research Center for Problems of Chemical Physics and Medicinal Chemistry

Email: vva@icp.ac.ru
Moscow, Russia

V. V. Aleshin

Federal Research Center for Problems of Chemical Physics and Medicinal Chemistry

Email: vva@icp.ac.ru
Moscow, Russia

A. V. Bakeshko

Federal Research Center for Problems of Chemical Physics and Medicinal Chemistry

Email: vva@icp.ac.ru
Moscow, Russia

V. S. Smirnov

Federal Research Center for Problems of Chemical Physics and Medicinal Chemistry

Author for correspondence.
Email: vva@icp.ac.ru
Moscow, Russia

References

  1. Andreev K.K. Termicheskoe razlozhenie i gorenie vzryv chatykh veshchestv [Thermal Decomposition and Combustion of Explosives], Nauka, Moscow, 1966, pp. 346. [in Russian].
  2. Kornilova G.E., Lurie V.A., Svetlov B.S. // Trudy chem-tech instituta by D.I. Mendeleev. 1969. V. 62. P. 62-66. (in Russian). EDN: YCXLTR
  3. Aleksandrov V.V., Boldyreva A.V., Boldyrev V.V., Tukhtaev R.K. // Combust. Explos. Shock Waves. 1973. V. 9, № 1, P. 117. https://doi.org/10.1007/BF00740372
  4. Ananev A.B., Istratov A.G. et al. // Khim. Fizika. 2001. Т. 20. № 12. С. 47. [in Russian].
  5. Marshakov V.N., Kolesnikov-Svinarev V.I., Finya­kov S.V. // Russ. J. Phys. Chem. B. 2009. V. 3. № 1. P. 85. https://doi.org/ 10.1134/S199079310901014X
  6. Marshakov V.N., Krupkin V.G. // Russ. J. Phys. Chem. B. 2023. V. 17. №. 2. P. 399. https://doi.org/10.1134/S1990793123020112
  7. Varma A., Mukasyan A.S., Rogachev A.S., Manu­kyan K.V. // Chem. Rev. 2016. V. 116. №. 23. P. 14493. https://doi.org/10.1021/acs.chemrev.6b00279
  8. Chick L.A., Pederson L.R., Maupin G., Bates J.L., Thomas L.E., Exarhos G.J. // Mater. Lett. 1990. V. 10. P. 6. https://doi.org/10.1016/0167-577X(90)90003-5
  9. Singanahally T. Aruna, Mukasyan A.S. // Current Opinion in Solid State and Materials Science. 2008. V. 12. P. 44. https://doi.org/10.1016/j.cossms.2008.12.002
  10. Rosljakov S.I., Kovalev D.Ju., Rogachev A.S. et al. // Doklady Chem. 2013. T. 449. № 3. С. 313. [in Russian]. https://doi.org/10.7868/S086956521309017X
  11. Pomogaǐlo A.D., Dzhardimalieva G.I. // Polym. Sci. A. 2004. V. 46. № 3.P. 250. https://doi.org/10.4028/www.scientific.net/SSP.94.323
  12. Pomogailo A.D., Rozenberg A.S., Dzhardimalieva G.I. // Russ. Chem. Rev. 2011. V. 80. № 3. P. 257. https://doi.org/10.1070/RC2011v080n03ABEH004079
  13. Sytschev A.E., Merzhanov A.G. // Russ. Chem. Rev. 2004. V. 73. № 2. P. 147. https://doi.org/10.1070/RC2004v073n02ABEH000837
  14. Mikhailov Yu.M., Plishkin N.A., Grigor’eva V.A., Batu­rin S.M. // Polym. Sci. A. 1996. V. 38. № 11. P. 1193. EDN: MOVOBR.
  15. Mikhailov Yu.M., Voyueva B.V., Leonova V.N., Grigo­r’eva V.A., Kalmykov Yu.B. // Polym. Sci. B. 2001. V. 43. № 5. P. 129.
  16. Mikhailov Yu.M., Leonova V.N. // Doklady Phys. Chem. 2002. V. 386. № 1-3. P. 203. https://doi.org/10.1023/A:1020338219537
  17. Strunin V.A., Mikhailov Y.M., D’yakov A.P., Leonova V.N., Manelis G.B. // Combust. Explos. Shock Waves. 2003. V. 39. № 4. P. 448. https://doi.org/10.1023/A:1024738922429
  18. Mikhailov Y.M., Aleshin V.V. Leonova V.N. // Combust. Explos. Shock Waves. 2007. V. 43. № 3. P. 334. https://doi.org/10.1007/s10573-007-0046-x
  19. Mikhailov Y.M., Aleshin V.V. // Russ. Chem. Bull. 2011. V. 60. № 9. P. 1802. https://doi.org/10.1007/s11172-011-0272-y
  20. Mikhailov Yu.M., Plishkin N.A., Karluk L.V., Batu­rin S.M. The mass for producing a porous abrasive tool and the method of its manufacture. SU Patent. 2064856 // Bull. Izobr. 1996. № 8. P. 10.
  21. Mikhailov Y.M., Leonova V.N. // Doklady Chem. 2002. V. 386. № 1.
  22. Mikhailov Yu.M., Aleshin V.V., Zhemchugova L.V., Bakeshko A.V., Kovalev D.Yu. // Int. J. Self-Prop. High-Temp. Synth. 2021. V. 30. № 1. P. 11. https://doi.org/10.3103/S1061386221010088
  23. Mikhailov Y.M., Aleshin V.V., Zhemchugova L.V., Smirnov V.S., Kovalev D.Yu. // Combust. Explos. Shock Waves. 2023. V. 59. № 5. P. 563. https://doi.org/10.1134/S0010508223050040
  24. Mikhailov Yu.M., Smirnov V.S., Zhemchugova L.V., Aleshin V.V., Bakeshko A.V. // Combust. Explos. Shock Waves. 2024. V. 60. № 6. https://doi.org/10.1134/S0010508224060017 (in print).
  25. Marshakov V.N., Krupkin V.G. // Russ. J. Phys. Chem. B. 2023. V. 17. № 5. P. 399. https://doi.org/10.1134/S1990793123020112
  26. Marshakov V.N., Krupkin V.G. Rashkovskii S.A. // Russ. J. Phys. Chem. 2020. V. 14. № 6. P. 934. EDN: CWCEUH. https://doi.org/10.1134/S1990793120060111
  27. Mikhailov Yu.M., Aleshin V.V., Bakeshko A.V., Smir­nov V.S. // Proc. 17th All Russian Sympos. on Combust. and Explos. Suzdal: “Forum-SM Ltd”, 2024. P. 182. [In Russian].
  28. Michelson V.A. About ignition normal rate of fulminating gaseous mixtures. Moscow: Univer. Press, 1890. Part II. [In Russian].
  29. Rashkovskii S.A. // Combust Explos Shock Waves. 2005. V. 41. № 1. P. 35. https://doi.org/10.1007/s10573-005-0004-4
  30. Rogachev A.S., Mukas’yan A.S. // Combust. Explos. Shock Waves. 2015. V. 51. № 1. P. 53. https://doi.org/10.1134/S0010508215010050
  31. Mikhailov Y.M., Kalmykov Y.B., Aleshin V.V. // Combust. Explos. Shock Waves. 2019. V. 55. № 6. P. 661. https://doi.org/10.1134/S0010508219060054
  32. Mikhailov Yu.M., Aleshin V.V., Zhemchugova L.V., Kovalev D.Yu. // Int. J. Self-Prop. High-Temp. Synth. 2018. V. 27. № 3. P. 162. https://doi.org/ 10.3103/S106138621803007X
  33. Mikhailov Yu.M., Aleshin V.V., Kolesnikova A.M., Kova­lev D.Yu., Ponomarev V.I. // Prop. Explos. Pyrotech. 2015. V. 40. № 1. P. 88. https://doi.org/10.1002/prep.201400049
  34. Mikhailov Yu.M., Aleshin V.V., Kolesnikova A.M., Zhemchugova L.V. & Maksimov Yu.V. // Russ. Chem. Bull. 2017. V. 66. № 6. P. 975. https://doi.org/10.1007/s11172-017-1841-5
  35. Mikhailov Yu.M., Aleshin V.V., Zhemchugova L.V., Bakeshko A.V., Kovalev D.Yu. // Int. J. Self-Prop. High-Temp. Synth. 2021, V. 30. № 1. P. 11. https://doi.org/10.3103/S1061386221010088.
  36. Mikhailov Yu.M., Kustov L.M., Aleshin V.V., Tara­sov A.L., Leonova V.N. // Kataliz v promyshlennosti. 2011. № 1. P. 73. [In Russian].
  37. Mikhailov Y.M., Aleshin A.V., Zhemchugova L.V. et al. // Chem. Technol. Fuels Oils. 2012. V. 48. № 4. С. 253. https://doi.org/10.1007/s10553-012-0366-8

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2025 Russian Academy of Sciences

Согласие на обработку персональных данных

 

Используя сайт https://journals.rcsi.science, я (далее – «Пользователь» или «Субъект персональных данных») даю согласие на обработку персональных данных на этом сайте (текст Согласия) и на обработку персональных данных с помощью сервиса «Яндекс.Метрика» (текст Согласия).