Flash Lamps as Ignition and Initiation Sources of the VS‑2 Pyrotechnic Composition

被引:0
|
作者
Gerasimov S.I. [1 ,2 ,3 ,4 ]
Ilyushin M.A. [5 ,6 ]
Putis S.M. [5 ,6 ]
Dushenok S.A. [5 ]
Shugalei I.V. [6 ]
Sudarikov A.M. [7 ]
机构
[1] Russian Federal Nuclear Center-All-Russian Research Institute of Experimental Physics, Sarov
[2] Sarov Institute of Physics and Technology is a Branch of the Scientific Research Nuclear University MEPhI, Sarov
[3] Nizhny Novgorod State Technical University Named after R.E. Alekseev, Nizhny Novgorod
[4] RAS Institute for Studying Problems in Mechanical Engineering, -is a Branch of the RAS Applied Physics Institute, Nizhny Novgorod
[5] "Technologist" Special Design and Technological Bureau, St. Petersburg
[6] Saint-Petersburg State Institute of Technology(Technical University), St. Petersburg
[7] Russian State Hydro-meteorological University, St. Petersburg
基金
俄罗斯基础研究基金会;
关键词
Blasting action; Flash lamps; Ignition; Transition of combustion to detonation; VS‑2 pyrotechnic composition;
D O I
10.11943/CJEM2021323
中图分类号
学科分类号
摘要
In the present work it is found that the pyrotechnic composition VS‑2 can be initiated with flash lamps IFC‑500 and EVIS. VS‑2 pyrotechnic composition contains 90% of mercury(Ⅱ) 5‑hydrazinotetrazolate perchlorate and 10% of optically transparent copolymer of 2‑methyl‑5‑vinyltetrazole and methacrylic acid (PVMT). We have found that the flash lamps make it possible to initiate combustion of VS‑2 composition with its transition to detonation both in cylindrical charges placed in brass caps of 5 mm diameter and 2 mm high, and film charges with 10 mm×80 mm in size and surface weights of 60 mg·cm-2 and 90 mg·cm-2, showing ignition delay times 10 μs and 3 μs, respectively. We also measured detonation velocities for VS‑2 composition film charges, which were 4375-4505 m·s-1 (of the charge being surface mass 60 mg·cm-2) and 4221-4281 m·s-1 (of the charge being surface mass 90 mg·cm-2) and their blasting action on the aluminum plate. The depths of the normal shock wave imprints at the charge‑barrier interface were 0.6-0.7 mm (for surface mass of the film charges 60 mg·cm-2) and 1.2-1.3 mm (for surface mass of the film charges 90 mg·cm-2). © 2022, Editorial Board of Chinese Journal of Energetic Materials. All right reserved.
引用
收藏
页码:370 / 378
页数:8
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