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Results of DTA-TG investigation and chemical analysis of electro-exploded aluminum nanopowders coated and/or passivated with the reactive reagents: nitrocellulose (NC), oleic (C17H33COOH) and stearic (C17H35COOH) acids, amorphous boron and air (for a comparison) are discussed. Surface protection of aluminum nanopowders by coatings of different origin results in significant advantages in the energetic properties of the powders. Aluminum nanopowders with a protecting surface show increased stability to oxidation during storage period.
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65--72
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Bibliogr. 4 poz.
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Bibliografia
- [1] Wang S., Yang Y, Yu H., DIolt D. D.. Dynamical Effect of the Oxide Layer in Aluminum Nanoenergetic Materials, PropeUants, Explos., Pyrotech., 2005, 30, 148-155.
- [2] Krause H. H., New Energetic Materials, (Energetic Materials, U. Teipel), Wiley, 2004, pp. 1-25.
- [3] KwonY S., Gromov A. A., Ilyin A. P., Rim G. H., Passivation Process for Superfine Aluminum Powders Obtained by Electrical Explosion of Wires, Appl. Surface Sc., 2003.277,57-67.
- [4] Kwon Y. S., Jung Y. H., Yavorovsky N. A., Ilyin A. P., Kim J. S., Ultrafine Metal Powders by Wires Electric Explosion Method, Scripta Mater., 2001, 44, 2247-2251.
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Bibliografia
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bwmeta1.element.baztech-article-BAT1-0036-0005