Detonation Parameters as Inferred from Shock Adiabats of Reaction Products V.S. Trofimov, V.A. Veretennikov Institute of Structural Macrokinetics and Materials.

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Detonation Parameters as Inferred from Shock Adiabats of Reaction Products V.S. Trofimov, V.A. Veretennikov Institute of Structural Macrokinetics and Materials Science, Russian Academy of Sciences Chernogolovka, Moscow, Russia XII International Symposium on Explosive Production of New Materials: Science, Technology, Business, and Innovations (EPNM-2014) May 25-30, 2014 Cracow, Poland

A B P V This is the well known representation of a detonation wave in terms of the fluid- dynamic theory developed by Zel’dovich XII International Symposium on Explosive Production of New Materials: Science, Technology, Business, and Innovations (EPNM-2014) May 25-30, 2014 Cracow, Poland

E(P,V) specific internal energy E s (V), P s (V ) specific internal energy and pressure on the shock adiabat of products, respectively Grüneisen coefficient XII International Symposium on Explosive Production of New Materials: Science, Technology, Business, and Innovations (EPNM-2014) May 25-30, 2014 Cracow, Poland

V 00 specific volume of HE in its initial state V 0 specific volume of detonation products in their condensed state at normal conditions Q P reaction heat at P = P 0 = const.  i mass fraction of the i -th product V i (P) specific volume on the shock adiabat of the i -th product XII International Symposium on Explosive Production of New Materials: Science, Technology, Business, and Innovations (EPNM-2014) May 25-30, 2014 Cracow, Poland

1. Anisichkin V.F., Generalized shock adiabats and zeroth isotherms of the elements, Fiz. Goreniya Vzryva, 1979, vol. 15, no. 2, pp Trofimov V.S., Trofimov O.V., Caloric equation of state for condensed matter as inferred from generalized shock adiabats, Khim. Fiz., 2009, vol. 28, no. 2, pp  0 = 1/V 0 initial density a initial volumetric speed of sound [1] and [2] XII International Symposium on Explosive Production of New Materials: Science, Technology, Business, and Innovations (EPNM-2014) May 25-30, 2014 Cracow, Poland

HE  00, kg/m 3  00 /  0 D, m/s (meas) D, m/s (cltd) P, GPa (meas) P, GPa (cltd) Amatol 50/50,  0 = 1111 kg/m – – – – –12.0 RDX,  0 = 1063 kg/m TNT,  0 = 1295 kg/m XII International Symposium on Explosive Production of New Materials: Science, Technology, Business, and Innovations (EPNM-2014) May 25-30, 2014 Cracow, Poland

Спасибо за внимание! Thank you for your attention! Dziękuję za uwagę! XII International Symposium on Explosive Production of New Materials: Science, Technology, Business, and Innovations (EPNM-2014) May 25-30, 2014 Cracow, Poland

XII International Symposium on Explosive Production of New Materials: Science, Technology, Business, and Innovations (EPNM-2014) May 25-30, 2014 Cracow, Poland