Background Image
Previous Page  12 / 12
Information
Show Menu
Previous Page 12 / 12
Page Background

И.Ф. Кобылкин, А.А. Горбатенко

12

Comparative study of the protection ability of reactive

armor elements with reduced impact on defended object

© I.F. Kobylkin, A.A. Gorbatenko

Bauman Moscow State Technical University, Moscow 105005, Russia

The article discusses the numerical simulation of interaction between shaped charge jet

(SCJ) and explosive reactive armor (ERA) units containing different materials. Numeri-

cal simulation shows a small advantage of ERA with ceramic plates over other materials

in case of equal mass of high explosive and plates. Protection ability value of such reac-

tive armor is 0,95L

0

and 0,93L

0

(L

0

is the depth of penetration cavern in homogeneous

steel armor) for ERA with steel plates. Extension of hole diameter for ceramic ERA plates

is much smaller, thus ceramic ERA plates can interact with SCJ directly after ERA high

explosive detonation. It is obtained by numerical simulation that value of protection abil-

ity for reactive armor with inert filler is the smallest (0,87 L

0

).

Keywords

: shaped charge jet, explosive reactive armor, non-explosive reactive armor,

inert filler, steel and ceramic plates.

REFERENCES

[1]

Grigoryan V.A., Dorokhov N.S., Kobylkin I.F., et al.

Chastnye voprosy

konechnoy ballistiki

[Particular issues of ultimate ballistics]. Moscow, BMSTU

Publ., 2006, 592 p.

[2]

Kobylkin I.F., et al.

Fizika vzryva

[Physics of Explosion]. In two vols.

Orlenko L.P., ed. 3rd edition. Moscow, FIZMATLIT Publ., 2002.

[3]

Grigoryan V.A., Dorokhov N.S., Kobylkin I.F., Bodrov S.A.,

Zhbankov Yu.P., Pototayev D.A.

Oboronnay tehnika – Defense Technology

,

2002, no. 1–2, pp. 20–25.

[4]

Bianchi S., Kaufmann H., Koch A. Effect of Ceramics, Fibre Reinforced Plastics

and Aluminium Ysed as Confinement Plates for Explosive Reactive Armors.

The 24th Int. Symp. on Ballistics

. New Orleans, USA, 2008, рр. 520–527.

[5]

Maiseless M., Bianchi S., Kaufmann H. etc. Non Metallic Reactive Armor.

The

27th Int. Symp. on Ballistics

. Freiburg. Germany, 2013, рр. 1745–1755.

[6]

Oruzhie i tekhnologii Rossii. Entsiklopedia. XXI vek. Boepripasy i sredstva

porazheniya

[Russia's Arms and Technologies. Encyclopedia. XXI Century.

Ordnance and Munitions]. Vol 12. Moscow, Oruzhie i tekhnologii Publ., 2006,

847 p.

[7]

Holmquist T.J., Johnson G.R., Grady D.E. High Strain Rate Properties and

Constitutive Modeling of Glass.

Proceedings of the Fifteenth International

Symposium on Ballistics

. Jerusalem, Israel, 1995.

Kobylkin I.F.

(b. 1951) graduated from the Bauman Moscow Higher Technical School

in 1974. Dr. Sci. (Eng.), professor of the Department of High-Precision Airborne Devices

at the Bauman Moscow State Technical University. The author of about 200 scientific

works and methodical works, including 11 monographs and textbooks on the theory ex-

plosive, blasting technology, chemical physics of combustion and explosion, materials

and structures of light armor, armor armored vehicles. e-mail:

kobylkin_ivan@mail.ru

Gorbatenko A.A.

(1992) graduated from the Bauman Moscow State Technical Universi-

ty in 2014. Graduate student at the Department of High-Precision Airborne Devices at

BMSTU.

e-mail:

selenta92@mail.ru