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The possibility of using composite nanoparticles in high energy materials M. V. Komarova, A. B. Vorozhtsov, A. G. Wakutin

By: Komarova, M. VContributor(s): Vorozhtsov, Alexander B | Wakutin, A. GMaterial type: ArticleArticleSubject(s): металлические нанопорошки | скорость горения | высокоэнергетические материалыGenre/Form: статьи в журналах Online resources: Click here to access online In: Russian physics journal Vol. 59, № 9. P. 1454-1459Abstract: The effect of nanopowders on the burning rate varying with the metal content in mixtures of different high energy composition is investigated. Experiments were performed on compositions based on an active tetrazol binder and electroexplosive nanoaluminum with addition of copper, nickel, or iron nanopowders, and of Al–Ni, Al–Cu, or Al–Fe composite nanoparticles produced by electrical explosion of heterogeneous metal wires. The results obtained from thermogravimetric analysis of model metal-based compositions are presented. The advantages of the composite nanoparticles and the possibility of using them in high energy materials are discussed.
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The effect of nanopowders on the burning rate varying with the metal content in mixtures of different high energy composition is investigated. Experiments were performed on compositions based on an active tetrazol binder and electroexplosive nanoaluminum with addition of copper, nickel, or iron nanopowders, and of Al–Ni, Al–Cu, or Al–Fe composite nanoparticles produced by electrical explosion of heterogeneous metal wires. The results obtained from thermogravimetric analysis of model metal-based compositions are presented. The advantages of the composite nanoparticles and the possibility of using them in high energy materials are discussed.

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