Experience of using synchrotron radiation for studying detonation processes

Author:

Titov V. M.,Pruuél E. R.,Ten K. A.,Luk’yanchikov L. A.,Merzhievskii L. A.,Tolochko B. P.,Zhulanov V. V.,Shekhtman L. I.

Publisher

Pleiades Publishing Ltd

Subject

General Physics and Astronomy,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering,General Chemistry

Reference26 articles.

1. A. N. Aleshaev, O. V. Evdokov, P. I. Zubkov, et al., “Application of synchrotron radiation for studying detonation and shock-wave processes,” Preprint No. 2000-92, Inst. Nuclear Phys., Sib. Branch, Russian Acad. of Sci., Novosibirsk (2000).

2. A. N. Aleshaev, P. I. Zubkov, G. N. Kulipanov, et al., “Application of synchrotron radiation for studying detonation and shock-wave processes,” Combust., Expl., Shock Waves, 37, No. 5, 585–593 (2001).

3. V. M. Aul’chenko, O. V. Evdokov, I. L. Zhogin, et al., “Detector for studying explosive processes on a synchrotron radiation beam,” Prib. Tekh. Éksp., No. 2, 1–16 (2010).

4. K. A. Ten, O. V. Evdokov, I. L. Zhogin, et al., “Density distribution at the detonation front of cylindrical charges of small diameter,” Combust., Expl., Shock Waves, 43, No. 2, 204–211 (2007).

5. L. V. Al’tshuler, G. S. Doronin, and V. S. Zhuchenko, “Detonation regimes and Jouguet parameters of condensed explosives,” Combust., Expl., Shock Waves, 25, No. 2, 209–224 (1989).

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