Технологии расснаряжения боеприпасов…
15
Technologies of munition demilitarization
using electrodynamics effects
© A.V. Babkin, S.V. Ladov, S.V. Fedorov
Bauman Moscow State Technical University, Moscow, 105005, Russia
A method of munition shell and explosive charge separation is suggested. The method
consists in expanding the shell body under magnetic field. This field was pre-created in
the material of the shell body and charge chamber and then sharply reduced nearby the
outer surface. The method of extracting the shaped charge metal liner using pulse elec-
tromagnetic impact on the elements of construction was also suggested. Theoretical
analysis, and assessment calculations of required magnetic field parameters were per-
formed and laboratory tests were carried out.
Keywords:
demilitarization, munition, shell, explosive charge, liner, electrodynamic ef-
fect, magnetic field.
REFERENCES
[1]
Rakoshits G.S.
Electroimpulsnaya shtampovka
[Spark-discharge forming].
Moscow, Vysshaya shkola Publ., 1990, 191 p.
[2]
Volosatov V.A., ed.
Spravochnik po electrohimicheskim i electrofizicheskim
metodam obrabotki
[Handbook of electrochemical and electrophysical methods
of processing]. Leningrad, Mashinostroenie Publ., 1988, 719 p.
[3]
Belyi I.V., Fertik S.M., Himenko L.T.
Spravochnik po magnitoimpulsnoy
obrabotke metallov
[Handbook of magnetoimpulse metal processing]. Kharkov,
HGU Publ., 1977, 168 p.
[4]
Andreev S.G., Prudenskiy G.A.
Dvoynye technologii – Dual-Use
Technologies
, 1988, no. 2, рр. 11–29.
[5]
Selivanov V.V., Kobylkin I.F., Novikov S.A.
Vzryvnye technologii
[Blasting
technology]. Moscow, BMSTU Publ., 2014, 529 p.
[6]
Fedorоv S.V., Babkin A.V., Ladov S.V., et al.
Fizika goreniya i vzryva –
Combustion, Explosion, and Shock Waves
, 2000, vol. 36, no. 6, pp. 792–808.
[7]
Shvetsov G.A., Matrosov A.D., Fedorov S.V., Babkin A.V., Ladov S.V. Effect
of external magnetic fields on shaped–charge operation.
International Journal of
Impact Engineering
, 2011, vol. 38, no. 6, pp. 521–526.
[8]
Babkin A.V., Ladov S.V., Fedorov S.V., Matrosov A.D., Shvetsov G.A.
Prikladnaya mekhanika i tekhnicheskaya fizika – Journal of Applied Mechanics
and Technical Physics
, 2000, vol. 41, no. 3, р. 394.
[9]
Fedorov S.V.
Zhurnal tekhnicheskoi fiziki –The Russian Journal of Applied
Physics
, 2012, vol. 57, no. 10, pp. 1341–1352.
[10]
Fedorov S.V., Babkin A.V., Ladov S.V., Matrosov A.D., Shvetsov G.A.
Zhurnal tekhnicheskoi fiziki – The Russian Journal of Applied Physics
, 2003,
vol. 48, no. 7, pp. 829–836.
[11]
Fedorov S.V., Babkin A.V., Ladov S.V.
Fizika goreniya i vzryva – Combustion,
Explosion, and Shock Waves
, 1999, vol. 35, no. 5, pp. 598–599.
[12]
Fedorov S.V., Babkin A.V., Ladov S.V., Matrosov A.D., Shvetsov G.A.
Prikladnaya mekhanika i tekhnicheskaya fizika – Journal of Applied Mechanics
and Technical Physics
, 2007, vol. 48, no. 3, pp. 393–400.
[13]
Fedorov S.V., Babkin A.V., Ladov S.V.
Zhurnal tekhnicheskoi fiziki – The
Russian Journal of Applied Physics
, 2003, vol. 48, no. 8, pp. 1047–1052.