On assessment method of brass as the material for explosively formed penetrator lining
Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, no. 4 (2011), pp. 188-190.

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The calculation of a front tossing speed of plates by A-IX-1 and Cyclotol-50/50 charges was made on the basis of tossing elements dynamic adiabats. It is shown that as opposed to copper plate the kinetic module for the mass unit is about 4 % higher for tossing the brass plate in case of using A-IX-1 and is about 8 % higher in case of using Cyclotol-50/50.
Keywords: shock adiabat, express method, front tossing.
Mots-clés : brass
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I. I. Reout; A. L. Krivchenko. On assessment method of brass as the material for explosively formed penetrator lining. Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, no. 4 (2011), pp. 188-190. http://geodesic.mathdoc.fr/item/VSGTU_2011_4_a25/

[1] van Thiel M., Kusubov A. S., Mitchell A. C., Compendium of shock wave data, Technical Report UCRL-50108, Lawrence Radiation Lab., Livermore, CA, 1967

[2] Anisichkin V. F., “Generalized shock adiabats of the elements”, J. Appl. Mech. Tech. Phys., 19:3, 376–379 | DOI

[3] Andreev S. G., Babkin A. V., Baum F. A., et al., Physics of Explosion, v. 1, ed. L. P. Orlenko, Fizmatlit, Moscow, 2004, 823 pp.

[4] Krivchenko A. L., Krivchenko D. A., Reout I. I., Churkin O. Yu., “Calculation of shock adiabats for d-metals and their alloys on the basis of Mendeleev periodic law”, Shock waves in condensed matter, St. Petersburg, 2008, 253–255

[5] Ivanchenko E. S., Precise models of shock adiabatic and TEFIS database, Ph. D. Thesis (Phys. Math.), IMM RAN, Moscow, 2009, 22 pp.