Search Results - "Glotov, O.G."

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    Combustion features of boron-based composite solid propellants by Glotov, O.G., Poryazov, V.A., Surodin, G.S., Sorokin, I.V., Krainov, D.A.

    Published in Acta astronautica (01-03-2023)
    “…This paper describes a technique for the sampling of condensed combustion products (CCPs) of metalized propellants. Experiments were carried out with model…”
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    Journal Article
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    The Effects of Fluorine-Containing Additives in Composite Propellants with Boron and Aluminum Dodecaboride on the Characteristics of Their Combustion by Glotov, O. G., Zamashchikov, V. V., Surodin, G. S., Belousova, N. S.

    “…The screening method has been used to investigate the effects of magnesium fluoride, polytetrafluoroethylene, and ammonium hexafluorotitanate additives in a…”
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    Combustion of Spherical Agglomerates of Titanium in Air. III. Motion of Agglomerates and the Effect of Blowing Velocity on Nanosized Combustion Products and Burning Time by Glotov, O. G., Surodin, G. S., Baklanov, A. M.

    “…The combustion of monodisperse titanium particles with a characteristic size of 38 and 320 μm moving in air was studied. Pyrotechnic samples generating…”
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    Investigating the Combustion of Energetic Materials with a Boron Additive by the Method of Small-Angle X-Ray Scattering by Pruuél, É. R., Rubtsov, I. A., Cheremisin, A. A., Glotov, O. G., Poryazov, V. A., Surodin, G. S., Kashkarov, A. O., Studennikov, A. A.

    “…The authors have presented results of investigation into the process of combustion of solid specimens consisting of ammonium perchlorate and a binder with…”
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    Formation of charged aggregates of Al2O3 nanoparticles by combustion of aluminum droplets in air by Karasev, V V, Onischuk, A A, Glotov, O G, Baklanov, A M, Maryasov, A G, Zarko, V E, Panfilov, V N, Levykin, A I, Sabelfeld, K K

    Published in Combustion and flame (01-07-2004)
    “…The mechanism of Al2O3 nanoparticles aggregation in air was studied under atmospheric pressure conditions. Alumina nanoparticles were generated by combustion…”
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    Formation of charged aggregates of Al 2O 3 nanoparticles by combustion of aluminum droplets in air by Karasev, V.V., Onischuk, A.A., Glotov, O.G., Baklanov, A.M., Maryasov, A.G., Zarko, V.E., Panfilov, V.N., Levykin, A.I., Sabelfeld, K.K.

    Published in Combustion and flame (2004)
    “…The mechanism of Al 2O 3 nanoparticles aggregation in air was studied under atmospheric pressure conditions. Alumina nanoparticles were generated by combustion…”
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    Journal Article
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