• Journal of Inorganic Materials
  • Vol. 34, Issue 8, 873 (2019)
Yang GUO1、2, Wei ZHANG2、*, Xing ZHOU2、*, and Lei DENG2
Author Affiliations
  • 1PLA Academy of Military Science, Beijing 100091, China
  • 2College of Aerospace Science and Engineering, National University of Defense Technology, Changsha 410073, China
  • show less
    DOI: 10.15541/jim20180428 Cite this Article
    Yang GUO, Wei ZHANG, Xing ZHOU, Lei DENG. Oxidation Characteristics of Magnesium Diboride[J]. Journal of Inorganic Materials, 2019, 34(8): 873 Copy Citation Text show less
    References

    [1] M MITSUNO, T KUWAHARA, K KOSAKA et al. Combustion of Metallized Propellants for Ducted Rockets. AIAA-87-1724(1987).

    [2] T MIYAYAMA, H OSHIMA, S TOSHIYUKI. Improving Combustion of Boron Particles in Secondary Combustor of Ducted Rockets. AIAA 2006-5250(2006).

    [3] K OBUCHI, M TANABE, T KUWAHARA. Ignition Characteristics of Boron Particles in the Secondary Combustor of Ducted Rockets-Effects of Magnalium Particle Addition. AIAA 2008-943(2008).

    [4] T K LIU, S P LUH, H C PERNG. Effect of boron particles surface coating on combustion of solid propellants for ducted rockets. Propellants, Explosives, Pyrotechnics, 16, 156-166(1991).

    [5] D D BOYD, L B CHILDS. Method of Coating Boron Particles with Ammonium Perchlorate. USP 3976521(1976).

    [6] S F LI, R JIN. Improvement of Combustion Characteristics of Solid Propellant with Coated Boron. AIAA 99-2633(1999).

    [7] I M SHYU, T K LIU. Combustion characteristics of gap-coated boron particles and the fuel-rich solid propellant. Combustion and Flame, 100, 634-644(1995).

    [8] C L YEH. Ignition and Combustion of Boron Particles. Pennsylvania: The Pennsylvania State University(1995).

    [9] C L YEH, K K KUO. Ignition and combustion of boron particles. Progress in Energy and Combustion Science, 22, 511-541(1996).

    [10] H L BESSER, R STRECKER. Overview of Boron Ducted Rocket Development during the Last Two Decades. Combustion of Boron- Based Solid Propellants and Solid Fuels., 133-178(1993).

    [11] T K LIU, I M SHYU, Y S HSIA. Effect of fluorinated graphite on combustion of boron and boron-based fuel-rich propellants. Journal of Propulsion and Power, 12, 26-33(1996).

    [12] B J MACRI. Process for Making Spheroidal Agglomerates. USP 3646174(1972).

    [13] B J MACRI. Boron-Fuel-Rich Propellant Compositions. USP 3986909(1976).

    [14] W H HSIEH, A PERETZ, I T HUANG et al. Combustion behavior of boron-based BAMO/NMMO fuel-rich solid propellants. Journal of Propulsion and Power, 7, 497-504(1991).

    [15] A S YANG, I T HUANG, W H HSIEH et al. Burning-Rate Characteristics of Boron/[BAMO/NMMO] Fuel-Rich Solid Propellant Under Broad Ranges of Pressure and Temperature. Combustion of Boron-based Solid Propellants and Solid Fuels., 412-426(1993).

    [16] H T S HSIA. Air-Augmented Combustion of Boron and Boron- Metal Alloys. AFRPL-TR-71-80(1971).

    [17] R MESTWERDT, H SELZER. The Combustion of a Boron- Lithium Compound with Respect to Air Augmented Rockets. AIAA 75-247(1975).

    [18] R MESTWERDT, H SELZER. Experimental investigation of boron/ lithium combustion. AIAA Journal, 14, 100-102(1976).

    [19] J M MOTA, M A MARTINEZ, F J VELASCO et al. A method of making boride. A method of making boride and vitreous compound by powder metallurgy. Journal of Materials Processing Technology, 143-144, 764-768(2003).

    [20] J M MOTA, J ABENOJAR, M A MARTINEZ et al. Borides and vitreous compounds sintered as high-energy fuels. Journal of Solid State Chemistry, 117, 619-627(2004).

    [21] J M MOTA, M A MARTINEZ, F VELASCO et al. Preparation of aluminium boride by powder technology. Ceramics International, 30, 301-306(2004).

    [22] Ascharite Ores-determination of Boric Anhydride Content-Volumetric Method. HG/T 2956. 3-2001(2001).

    [23] T MUTLUER, M TIMUCIN. Phase equilibria in the system MgO-B2O3. Journal of the American Ceramic Society, 58, 196-197(1975).

    [24] XIAN-RUI ZHANG, YUAN-YUAN WANG, TAO CHEN et al. Thermal Oxidation Characteristics of Amorphous Boron Powder. The 29th Academic Annual Conference of Solid Propulsion Committee of Chinese Society of Astronautics,Ningbo, 611-614(2012).

    Yang GUO, Wei ZHANG, Xing ZHOU, Lei DENG. Oxidation Characteristics of Magnesium Diboride[J]. Journal of Inorganic Materials, 2019, 34(8): 873
    Download Citation