Journal of Inorganic Materials ›› 2019, Vol. 34 ›› Issue (8): 873-878.DOI: 10.15541/jim20180428

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Oxidation Characteristics of Magnesium Diboride

GUO Yang1,2,ZHANG Wei2(),ZHOU Xing2(),DENG Lei2   

  1. 1. PLA Academy of Military Science, Beijing 100091, China
    2. College of Aerospace Science and Engineering, National University of Defense Technology, Changsha 410073, China
  • Received:2018-09-14 Revised:2019-02-02 Published:2019-08-20 Online:2019-05-29
  • Supported by:
    Weapons and Equipment Advanced Research Program(9140A28020312KG01082)

Abstract:

The oxidation characteristics and energy releasing characteristics of MgB2 were studied using oxygen bomb calorimeter, thermal analyzer and tube furnace. Results show that the combustion heat and combustion efficiencies of MgB2 are all higher than those of amorphous boron. In the temperature range explored (298-1673 K), four successive phases are observed in the oxidation process of MgB2 under slow heating rate. The primary oxidation stage of MgB2 occurrs between 1200 K and 1665 K. However, the primary oxidation stage of amorphous boron occurrs nearly 1919 K. At 1665 K, the oxidation percentage of MgB2 is 94.3%, compared to 43.6% of amorphous boron. Compared with amorphous boron, the fact that complete oxidation of MgB2 can be achieved at lower temperature indicates its superiority.

Key words: boron, magnesium diboride, oxidation characteristics, combustion efficiency

CLC Number: