LI Xiao-dong, YANG Rong-jie. Combustion and thermal decomposition of ammonium dinitramide catalyzed by carbon nanotubes. New Carbon Mater., 2010, 25(06): 444-448.
Citation: LI Xiao-dong, YANG Rong-jie. Combustion and thermal decomposition of ammonium dinitramide catalyzed by carbon nanotubes. New Carbon Mater., 2010, 25(06): 444-448.

Combustion and thermal decomposition of ammonium dinitramide catalyzed by carbon nanotubes

Funds:  Energetic Materials Combustion Defence Sci-Tech Key Lab Foundation (51455030105BQ0101).
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  • Author Bio:

    LI Xiao-dong (1969-), male, Master, Associate Professor, engaged in research of application of carbon nanotubes and nano-materials in solid propellant. E-mail: bitlxt@bit.edu.cn

  • Received Date: 2008-12-24
  • Accepted Date: 2010-12-29
  • Rev Recd Date: 2010-12-06
  • Publish Date: 2010-12-20
  • The catalysis of carbon nanotubes (CNTs), carbon nanotubes supporting ferric oxide (Fe2O3/CNT) and carbon nanotubes supporting iron and copper (Fe · Cu/CNT) on the combustion and thermal decomposition of ammonium dinitramide (ADN) were investigated through burning rate measurements and TG analysis. Results show that all three catalysts increase the burning rate of ADN. The burning rates are related to combustion pressure by a power function and the pressure exponents decrease with the amount of catalyst for all of the three catalysts. When 3mass% of catalyst is used the burning rate of ADN at 4MPa increases from 30.49 to 50.59, 39.72 and 38.79mm · s-1 and the pressure exponents decrease from 0.81 to 0.36, 0.67 and 0.75 for the CNTs, Fe2O3/CNTs and Fe · Cu/CNTs respectively, TG tests show that all three catalysts decrease the thermal decomposition temperature of ADN. The primary thermal decomposition temperatures of ADN decrease to 18.3℃, 12.1℃, and 11.6℃ for the CNTs, Fe2O3/CNTs and Fe · Cu/CNTs respectively when 1mass% catalyst was added to ADN.
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