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On the Mechanism of Molecular Condensed EMs Transformation under the Effect of Shock and Detonation Waves

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Abstrakty
EN
Considerations based on available experimental data on regularities of molecular condensed EMs decomposition under the effect of shock waves of different intensities are presented. It follows from the considerations that there exist shock wave pressures p* typical for each charge (for TNT charges p* ~ 12 GPa) and the charges’ initial density ?0* (for TNT 0* ~ 1.40 g/cm3) such that at larger pressure and density EMs' decomposition proceeds according to the homogeneous mechanism (does not depend on the charge structure: initial density, size and structure of explosive particles, explosive state-liquid or solid, …) and at lower pressure and density – according to the hot spots mechanism (depends on the charge structure).
Rocznik
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31--44
Opis fizyczny
Bibliogr. 41 poz.
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autor
  • Institute of Problems of Chemical Physics Russian Academy of Sciences Chernogolovka, Moscow Region 142432, Russia
Bibliografia
  • [1] Mallard E., Le Chatelier Y.L., Recherches experimentales et théoriques sur la combustion des melanges gazeux explosifs-memoire i, temperature d’inflammation des mélanges gazeux, Ann. Mines, 1883, 4(8), 274-295.
  • [2] Berthelot M., Vieille P., L’oude explosive, Ann. Chem. Phys., 1883, 28(5), 283-332.
  • [3] Michelson V.A., Űber die normale Entzűndungsgeschwindigkeit explosiver Gazgemishe, Annalen der Physik und Chemie, 1889, 37(5), 1-24.
  • [4] Michelson V.A., On the Normal Ignition Velocity of Explosive Gaseous Mixtures, Scientific Transactions of Imperial Moscow University on Mathematics and Physics, 1893, 10, 1-93.
  • [5] Chapman D.L., On the Rate of Explosions in Gases, Philos. Mag., 1899, 47, 90-104.
  • [6] Jouguet E., On the Propagation of Chemical Reaction in Gases, J. de Mathématiques Pures et Appliqués, 1905, 7, 347-425.
  • [7] Jouguet E., On the Propagation of Chemical Reaction in Gases, ibid., 1906, 2, 5-85.
  • [8] Sokolic A.S., Self-ignition, Flame and Detonation in Gases, Nauka, Moscow 1960.
  • [9] Zeldovich Ya. B., Teoriya Udarnykh Voln I Vvedenie v Gazodinamiku (Shock Wave Theory and Introduction to Gasdynamics), Akad. Nauk SSSR, Moscow 1946.
  • [10] Shchelkin K.I., Troshin Ya. K., Gazodinamika Goreniya (Gasdynamics of Combustion), Acad. Nauk SSSR, Moscow 1963.
  • [11] Dremin A.N., Savrov S.D., Trofimov V.S., Shvedov K.K., Detonatsionnye Volny v Kondensirovannykh Sredakh (Detonation Waves in Condensed Media), Nauka, Moscow, 1970. (Translated from Russian by Foreign Technology Division, Wright-Patterson Air Forse Base, O.H., Aug. 1972, FTD-HT-23-1889-71).
  • [12] Dremin A.N., Toward Detonation Theory, Springer, New York 1999.
  • [13] Bone W.A., Frazer R.P., Wheeler W.H., II. A. Photographie Investigations of Flame Movements in Gaseous Explosions, Part VII – The Phenomenon of Spin in Detonations, Phil. Trans. R. Soc. London, A. 1936, 235, 29-68.
  • [14] R ivin M.A., Sokolic A.S., Explosion Limits of Gaseous Mixtures, Phys. Chem. J. (USSR), 1936, 8(5), 767-773.
  • [15] R osing V.O., Chariton Yu.B., Explosive Detonations at Small Charge Diameter, Dokl. Akad. Nauk USSR, 1940, 26(4), 360-361.
  • [16] Grib A.A., Hydrodynamic Theory of Explosive Waves, Ph.D. Thesis in Phys-Math. Sci., Tomsk Univ. 1940, annotated in Prikl. Mekh. Mat., 1944, 8(4), 273.
  • [17] Zeldovich Ya.B., On the Theory of the Propagation of Detonation in Gaseous Systems, Sov. Phys. JETP, 1940, 10(5), 542-568.
  • [18] Von Neumann J., Report on “theory of detonation waves” (OD-02), Technical report, National Defense Research Committee of the Office of Scientific Research and Development, Division B, Section B-1, Serial # 238, 1942.
  • [19] Döring W., Über der Detonation Verging in Gasen, Ann. Phys., 1943, 43(5), 421-436.
  • [20] Apin A. Ya., On the Mechanism of Tetril’s Explosive Decomposition, Dokl. Akad. Nauk SSSR, 1939, 24, 922.
  • [21] Eyring H., Powell R.E., Duffet G.H., Paril R.B., The Stability of Detonation, Chem. Rev., 1949, 45, 69-181.
  • [22] Apin A.Ya., Detonation and Explosive Combustion of Explosives, Dokl. Akad. Nauk SSSR, 1945, 50, 285.
  • [23] Chariton Yu.B., Problems of Explosive Theory, ch. “On explosives detonation capability”, Izd-vo Acad. Nauk SSSR, Moskva-Leningrad 1947, pp. 7-28.
  • [24] Pokhil P.F., Mal’tsev V.M., Zaitsev V.M., The Methods of Investigation of Combustion and Detonation Processes, Nauka, Moscow 1969.
  • [25] Campbell A.W., Davis W.L., Ramsay J.B., Travis J.R., Shock initiation of solid explosives, Phys. of Fluids, 1961, 4(3-4), 511-521.
  • [26] Dremin A.N., On Condensed Explosives Detonation Decomposition Mechanism, in: Symp. Int. on High Dynamic Pressure, Paris 1978, pp. 175-182.
  • [27] Koldunov S.A., Effect of Density on Transitional Processes with Shock-Wave Initiation, in: Shock Waves in Condensed Media (in Russian), St. Petersburg 1998, p. 93.
  • [28] Aleksandrov E.N., Veretennikov V.A., Dremin A.N., Shvedov K.K., Mechanism of Detonation of Porous HE, Fiz. Goreniya Vzryva, 1967, 3(4), 471-484.
  • [29] Shvedov K.K., Koldunov S.A., Effect of the Physical State and Charge Structure on the Time of Their Response upon Detonation, Nauka, Moscow 1972, pp. 439-443.
  • [30] Dremin A. N., Shvedov K. K., On Shock Wave Explosive Decomposition, in: Proc. 6th Symp. (Int.) on Detonation, San Diego, Aug. 24-27, 1976, pp. 29-35.
  • [31] Dremin A.N., Klimenko V.Yu., Davidova O.N., Zoludeva T.A., Multiprocess Detonation Model, in: Proc. 9th Symp. (Int.) on Detonation, Portland, Oregon, Aug. 28-Sept. 1, 1989, pp. 725-728.
  • [32] Smirnov A.L., Dremin A.N., Molecular Dynamics Modeling of Shock and Detonation Phenomena in Liquids of Polyatomic Molecules, in: Proc. 13th Intern. Detonation Symp. Norfolk, Virginia, July 23-28, 2006, pp.1241-1246.
  • [33] Klimenko V.Yu., Dremin A.N., On the Decomposition Reaction Kinetics in the Shock Wave Front, in: Detonation, chemical physics of combustion and explosion processes (Merzanov A.G. Ed.), Institute of Chemistry Physics, Chernogolovka 1980, pp. 69-73, (English translation in Sandia National Laboratories. Rep. RS 3180 (81/38, Feb. 1981).)
  • [34] Owens F.J., Sharma J., X-ray Photo Electron Spectroscopy and Paramagnetic Resonance Evidence for Shock-Induced Intramolecular Bond Breaking in Some Energetic Solids, J. Appl. Phys., 1979, 51, 1494-1497.
  • [35] Barltrop J.A, Cayle J.D., Excited states in organic chemistry, John Wiley, London 1975.
  • [36] Kondratiev V.N., The Energy of the Chemical Bond Dissociation, The Ionization Potentials and the Electron Affinity, Nauka, Moscow 1974.
  • [37] Dremin A.N., Modern Problems of Condensed Explosives Detonation Study, Scientific Transaction of the Institute of Mechanics of Moscow State University, 1973, 21, 150-157.
  • [38] Dremin A.N., Babare L.V., The Shock Wave Chemistry of Organic Substances, Proc. Shock Waves in Condensed Matter., (Nellis W.J., Seaman L., Graham R.A. Eds.), Am. Inst. Of Phys., New York 1981, pp. 27-41.
  • [39] Block S., Weir C.E., Piermarini P.J., Polymorphism in Benzene, Naphthalene and Anthracene at High Pressure, Science, 1970, 169, 586-587.
  • [40] Frank-Kamenetskiy D.A., Diffusion and Heat Transfer in Chemical Kinetics, Nauka, Moscow 1987.
  • [41] Kondratiev V.N., Gas-phase Reactions Rate Constants, Nauka, Moscow 1971.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT1-0034-0042
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