Ignition and combustion of pyrotechnic compositions based on micro- and nanoparticles of aluminum diboride in air flow in a two-zone combustion chamber
- Authors: Yagodnikov D.A.1, Voronetskii A.V.1, Sarab’ev V.I.2
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Affiliations:
- Bauman Moscow State Technical University
- Federal Research and Production Center “Research Institute of Applied Chemistry”
- Issue: Vol 52, No 3 (2016)
- Pages: 300-306
- Section: Article
- URL: https://ogarev-online.ru/0010-5082/article/view/152502
- DOI: https://doi.org/10.1134/S0010508216030072
- ID: 152502
Cite item
Abstract
This paper presents the experimental study of ignition and combustion of micro- and nanoparticles of aluminum diboride as part of pyrotechnic energy-saturated compositions in a gas generator with an air afterburner chamber and the thermodynamic calculations of combustion of pyrotechnic compositions based on aluminum diboride in air. The discharge of the combustion products from the afterburner chamber is recorded on video. It is shown that replacing micron aluminum diboride by powdered diboride with a mass-average diameter of particles equal to ≈270 nm in the pyrotechnic composition and increasing the pressure in the afterburner chamber cause the combustion efficiency in air to increase by 5–20%.
About the authors
D. A. Yagodnikov
Bauman Moscow State Technical University
Author for correspondence.
Email: daj@bmstu.ru
Russian Federation, Moscow, 105005
A. V. Voronetskii
Bauman Moscow State Technical University
Email: daj@bmstu.ru
Russian Federation, Moscow, 105005
V. I. Sarab’ev
Federal Research and Production Center “Research Institute of Applied Chemistry”
Email: daj@bmstu.ru
Russian Federation, Sergiyev Posad, 141313
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