Publishing House SB RAS:

Publishing House SB RAS:

Address of the Publishing House SB RAS:
Morskoy pr. 2, 630090 Novosibirsk, Russia



Advanced Search

Combustion, Explosion and Shock Waves

2021 year, number 3

Detonation of Ultrafine Explosives

A. P. Ershov1, V. V. Andreev1, A. O. Kashkarov1, Ya. L. Luk'yanov1, D. A. Medvedev1, E. R. Pruuel1, I. A. Rubtsov1, N. P. Satonkina1, S. A. Solov'ev2
1Lavrent'ev Institute of Hydrodynamics, Siberian Branch, Russian Academy of Sciences, Novosibirsk, 630090 Russia
2Biysk Oleum Plant, Biysk, 659315 Russia
Keywords: detonation, explosion, nanomaterials

Abstract

Detonation of PETN and HMX with a particle size of about 1  m was investigated by an electromagnetic method. At an initial density of 0.9 ÷ 1.2 g/cm3, the von Neumann spike was weak or not observed at all. This indicates a fast reaction, whose time is outside the experimental resolution (about 5 ns). Electrical conductivity measurements provided only a rather rough upper-bound estimate of the reaction time (less than tens of nanoseconds). Density measurements using synchrotron radiation showed that the initiation of PETN with an air shock wave led to almost instantaneous detonation initiation, without any acceleration region. In general, the results of the study confirm the acceleration of the chemical reaction in ultrafine explosives.