Previous Page  19 / 20 Next Page
Information
Show Menu
Previous Page 19 / 20 Next Page
Page Background

Метательное действие зарядов взрывчатых веществ при распространении…

Инженерный журнал: наука и инновации

# 4·2016 19

Explosive charge projectile action during initiating

and detonating wave propagation

© S.G. Andreev

1

, M.M. Boyko

1

,

V.Yu

. Klimenko

2

1

Bauman Moscow State Technical University, Moscow, 105005, Russia

2

Research institute Geodesy, Krasnoarmeysk, 119991, Russia

The article deals with the influence of factors (including dispersed aluminium addition

presence) causing initial shock wave evolution in the charges of standard explosives on the

charge projectile action characteristics. We carry out the mathematical modeling of char-

acteristic features of aluminium addition to the poor-porous charges in the acceleration

effect under the conditions of normal methods of defining the projectile ability as well as

under the conditions of shell-forming charges operation. The study shows a possibility of

improving the acceleration effect of the shell-forming charges when the standard explosives

are replaced by poor-porous aluminum-backed composition such as PAX-30.

Keywords:

explosive acceleration, initial shock wave, detonation, secondary reaction,

aluminium.

REFERENCES

[1]

Makhov M.N.

Gorenie i vzryv — Combustion and explosion.

Moscow, Torus

press Publ., 2013, no. 6, pp. 293–296.

[2]

Okhitin V.N., Menshakov S.S.

Inzhenernyy zhurnal: nauka i innovatsii —

Engineering Journal: Science and Innovation

, 2013, no. 1. Available at:

http://engjournal.ru/catalog/machin/blasting/561.html

[3]

Kulikov V.N., Osavchuk A.N., Imkhovik R.A., Odintsov V.A.

Inzhenernyy

zhurnal: nauka i innovatsii — Engineering Journal: Science and Innovation

,

2013, no. 1. Available at:

http://engjournal.ru/catalog/machin/blasting/564.html

[4]

Yashin V.B., Alekseyev V.V., Khodyrev S.P., Malkin A.V., Imkhovik A.N.,

Selivanov V.V., Simonov A.K.

Inzhenernyy zhurnal: nauka i innovatsii —

Engineering Journal: Science and Innovation

, 2013, no. 1. Available at:

http://engjournal.ru/catalog/machin/blasting/566.html

[5]

Andreyev S.G., Boyko M.M., Klimenko

V.Yu.

Inzhenernyy zhurnal: nauka i

innovatsii — Engineering Journal: Science and Innovation

, 2013, no. 1.

Available at:

http://engjournal.ru/catalog/machin/blasting/568.html

[6]

Andreyev S.G., Shestakov M.A.

Inzhenernyy zhurnal: nauka i innovatsii —

Engineering Journal: Science and Innovation

, 2015, no. 7. Available at:

http://engjournal.ru/catalog/mech/mlgp/1401.html

[7]

Davydov

V.Yu.

, Grishkin A.M., Muryshev

E.Yu.

Fizika goreniya i vzriva —

Physics of Combustion and Explosion,

1993, vol. 29, no 2, pp. 109–115.

[8]

Gogulya M.F., Brazhnikov M.A., Makhov M.N., Dolgoborodov

A.Yu

.,

Lyubimov A.E., Sokolova I.L.

Khimicheskaya fizika — Chemical physics

, 2012,

vol. 31, no. 11, pp. 33–47.

[9]

Orlenko L.P., ed.

Fizika vzryva

[Physics of explosion]. Moscow, FIZMATLIT

Publ., 2002, vol. 1, 824 p.

[10]

Balas W., Nicolich S., Capellos C., Hatch R. and Braithwaite P

2006 IM/EM

Symposium

. Bristol, UK, 2006. Available at:

http://www.imemg.org/

res/imemts2006_Hatch_1.ppt.pdf

[11]

Baker E.L., Balas W., Stiel L.I., Capellos C., Pincay J

.

Theory and Detonation

Products Equations of State for a New Generation of Combined Effects