PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Influence of casing and liner inertia of wedge cumulative war-head on displacement velocity of their explosively driven elements, and on active mass of explosive

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The influence of casing and liner inertia of the wedge cumulative war-head on a displacement velocity of their explosively driven elements and on the explosive active mass, has been analysed in this paper. Simple algebraic formulae were derived to estimate the displacement velocity of the casing and liner elements, and of the explosive active mass. The results of theoretical calculations, obtained with the aid of these formulae, are in agreement with the experimental data.
Rocznik
Strony
19--33
Opis fizyczny
Bibliogr. 43 poz., wykr.
Twórcy
  • Military University of Technology, Faculty of Armament and Aviation Technology, 00-908 Warsaw, S. Kaliskiego 2, Poland
Bibliografia
  • 1. L.V. Dubnov, N.S. Bakharevich, A.I. Romanov, Industrial explosives [in Russian], Nedra, Moskva 1973.
  • 2. Z.G. Pozdnyakov, B.D. Rossi, Handbook on the industry condensed explosives and the mining shot agents [in Russian], Nedra, Moskva 1977.
  • 3. Ya.B. Zel’dovich, Yu.P. Raiizer, Physics of shock waves and of the high-temperature hydrodynamic phenomena [in Russian], Nauka, Moskva 1966.
  • 4. A.F. Bielyaev, M.A. Sadovskii, Explosion physics [in Russian], AN SSSR, Moskva 1952.
  • 5. K.K. Shvedov, On determination of the explosives working ability [in Russian], FGV, 20, 3, 1984
  • 6. A. A. Deribas, Physics of consolidation and of welding by explosion [in Russian], Nauka, Novosi- birsk 1972.
  • 7. A.V. Krupin, V.Ya. Solov’iev, N.I. Sheftiel, A.G. Kobielev, Deformation of metals by shot agents [in Russian], Metallurgya, Moskva 1975.
  • 8. J.S. Rinehart, J. Pearson, Explosive working of metals, A Pergamon Press Book, the Macmillan Company, New York 1963.
  • 9. W. Babul, S. Ziemba, Explosives in the technology processes of material working [in Polish], PWN, Warszawa 1972.
  • 10. W. Babul, Deformation of metals by an explosion [in Polish], WNT, Warszawa 1980.
  • 11. L.M. Geiman, Explosion: history, practice, perspectives [in Russian], Nauka, Moskva 1978.
  • 12. V.N. Mosiniec, Shattering and seismic explosion action in rock masses [in Russian], Nedra, Moskva 1976.
  • 13. M.A. Cook, The science of high explosives, Reinhold Publishing Corporation, New York; Chapman and Hall, Ltd., London 1958.
  • 14. F.A. Baum, L.P. Orlenko, K.P. Stanyukovich, W.P. Chelyshev, B.I. Shekhter, Explosion physics [in Russian], Nauka, Moskva 1975.
  • 15. R. Trębiński, W. Trzciński, E. Włodarczyk, Estimation of the active mass of explosives in plane liner driving [in Polish], Biul. WAT, XXXV, 3, 1986; Engng. Trans. 35, 3, 1987.
  • 16. W.E. Baker, P.A. Cox, P.S. Westine, J.J. Kulesz, R.A. Strehlow, Explosion hazards and evaluation, Vol. 1 and 2, Elsevier Scientific Publishing Company, Amsterdam - Oxford - New York 1983.
  • 17. P.A. Urtiev, P.M. Erikson et al, Measurement of pressure and particie velocity in solids at the dynamic loading [in Russian], FGV, 22, 5, 1986.
  • 18. G.P. Demidyuk, L.V. Dubnov, V.V. Stoyanov et. al, Engineering and technology of explosive works in quarries [in Russian], Nedra, Moskva 1978.
  • 19. A.N. Khanukaev, Physics processes of rock masses mining with the aid of explosion [in Russian], Nedra, Moskva 1974.
  • 20. E. Włodarczyk, Effectiveness of the cylindrical hollow charge, J. Tech. Phys. 42, 2, 2001.
  • 21. T.M. Salamakhin, Physical fundamentals of explosion mechanical action and determination methods of explosion loading [in Russian], VIA [Ed.], Moskva 1974.
  • 22. E. Włodarczyk, The backward launching of solids by products of detonation, J. Tech. Phys., 41, 2, 2000.
  • 23. J.E. Kennedy, Gurney energy of explosives: estimation of the velocity and impulse imparted to driven metal, Sandia National Laboratories, S.C.-RR-70-790, December, 1970.
  • 24. G. Birkhoff, et al., Explosives with lined cavities, J. Appl. Phys., 19, 6, 1948.
  • 25. M.A. Lavrentiev, Shaped charge and its work principles [in Russian], UMN, 12, 4, 1957.
  • 26. E. Włodarczyk, On hydrodynamic stationary theory of jet formation, J. Tech. Phys. 35, 3, 1994.
  • 27. W.P. Walters, J.A. Zukas, Fundamentals of shaped charges, A Wiley-Interscience Publication, John Wiley and Sons, New York-Chichester-Brisbane-Toronto-Singapore 1989.
  • 28. R.W. Gurney, The initial velocities of fragments from bombs, shells and grenades, BRL Report 405, Aberdeen Providing Ground, September 14, 1943.
  • 29. R.W. Gurney, Fragmentation of bombs, shells and grenades, BRL Report 635, March, 1947.
  • 30. J.G. Henry, The gurney formula and related approximations for the high-explosive deployment of fragments, Hughes Aircraft Company, Culver City, CA, Report No. PUB-189, April (AD 813398), 1967.
  • 31. E. Hirsch, Improved Gurney formulas for exploding cylinders and spheres using hard core approximation, Propell., Explos., Pyrotech., 11, 1, 1986.
  • 32. G.E. Jones, J.E. Kennedy, L.D. Berthof, Ballistics calculations of R. W. Gurney, Am. J. Phys., 48, 4, 1980.
  • 33. A.N. Dremin, S.D. Savrov, V.S. Trofimov, K.K. Shvedov, Detonation waves in condensed media [in Russian], Nauka, Moskva 1975.
  • 34. M.A. Nettleton, Gaseous detonations: their nature, effects and control, Chapman and Hall Ltd., London-New York 1987.
  • 35. W. Fickett, W.C. Davis, Detonation, University of California Press, Berkeley-Los Angeles-London 1979.
  • 36. R. Cheret, Detonation of condensed explosives, Springer-Verlag New York, Inc., New York 1993.
  • 37. E. Włodarczyk, Fundamentals of detonation [in Polish], WAT, 1995.
  • 38. Ya. B. Zel’dovich, A.S. Kompaneec, Detonation theory [in Russian], ED. Gos. Izd. Tech.-Teor. Lit., Moskva 1955.
  • 39. R. Trębiński, Optimization of the shaped charge parameters, Report No. 0T00A 026 09, WAT, Warszawa 1998.
  • 40. J. Brown, I. Cullis, N. Griffiths, The effect of confining structures on shaped charge performance, Proc. of the 10th International Ballistic Symposium, vol. 2, San Diego, USA, 1987.
  • 41. M. Mayseless, S. Miller, E. Niv, D. Peretz, Experimental and computational comparison between the effects of asymmetries on peripherally initiated and point initiated shaped charge, Proc. of the 10th International Ballistic Symposium, vol. 2 San Diego, USA,
  • 42. J. Brown, I.D. Softly, P. Edwards, Experimental study of shaped charges with built-in asymmetries, Prop. Expl. Pyrotechn., 18, 225-258, 1993.
  • 43. J. Brown, Quantitative study of permissible tolerances in shaped charges, Proc. of the 16th International Symposium on Detonation, pp. 330-336, Albuquerque, USA 1985.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT5-0001-0084
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.