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Determination of Thermodynamic Characteristics of Phase-stabilized Ammonium Nitrate-Based High-energy Solid Combustible Materials
Combustion Science and Technology ( IF 1.9 ) Pub Date : 2020-06-29 , DOI: 10.1080/00102202.2020.1786076
S. Kh. Aknazarov 1, 2 , A. B. Seisenova 1, 2 , O. Yu. Golovchenko 1, 2 , N. Yu. Golovchenko 1, 2 , J. M. Gonzalez-Leal 3
Affiliation  

ABSTRACT

The thermodynamic and physical characteristics of the starting components and the synthesized high-energy solid combustible materials are determined. It was established that the reaction of the formation of aluminum nitride in the endothermic mode is possible at a temperature of about 3000 K. The adiabatic combustion temperatures of the synthesized fuel systems in the combustion chamber are calculated. The dependence of the values of the adiabatic temperature and specific impulse on the excess of the oxidizing agent, the nature of the binder and energy additives is established.



中文翻译:

相稳定硝酸铵基高能固体可燃材料热力学特性的测定

摘要

确定起始组分和合成的高能固体可燃材料的热力学和物理特性。已经确定,在大约 3000 K 的温度下,以吸热模式形成氮化铝的反应是可能的。计算了燃烧室中合成燃料系统的绝热燃烧温度。确定了绝热温度和比冲值对氧化剂过量、粘合剂和能量添加剂的性质的依赖性。

更新日期:2020-06-29
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