Ojovan M I,Lee W E,Sobolev I A,Thermochemical processing using powder metal fuels of radioactive and hazardous waste,Journal of Process Mechanical Engineering,2004(Part E).
[3]
Maiden D E,Nutt G L,A hot-spot model for calculating the threshold for shock initiation of pyrotechnic mixtures,Chicago,Illinois:IIT Research Insitute,1986.
[4]
Merzhanov A G,Grigorjev Y M,Aluminum ignition,Combustion and Flame,1977.
[5]
郑波,胡栋,丁忄敬,铝粉尘激波点火的实验研究,爆炸与冲击,1997(2).
[6]
胡栋,叶松,吴旌贺,铝粉点火微观机理的光谱分析,高压物理,2006(3).
[7]
Rosenband V,Thermo-mechanical aspects of the heterogeneous ignition of metals,Combustion and Flame,2004.
[8]
洪滔,秦承森,铝颗粒激波点火机制初探,爆炸与冲击,2003(4).
[9]
洪滔,秦承森,悬浮铝粉尘爆轰波参数,含能材料,2004(3).
[10]
Bazyn T,Glumac N,Reflected shock ignition and combustion of aluminum and nanocomposite thermite powders,Combustion Science and Technology,2007(3).
[11]
FAN Run-hua,LU Hong-liang,Kinetics of thermite reaction in Al-Fe_2O_3 system,Thermochimica Acta,2006.
[12]
Moore K,Pantoya M L,Combustion behaviors resulting from bimodal aluminum size distributions[AIAA 2005-3605],.
[13]
Shackelford J F,Alexander W,Materials science and engineering handbook,CRC Press,Inc,2001.
[14]
朱自强,胡荣祖,肼氧混气热自燃的理论探讨,浙江大学学报,1963(3).
[15]
胡荣祖,泰安、特屈儿和黑索今的热爆炸温度与容器大小的关系,爆破器材,1966(1).
[16]
傅维镳,张永廉,王清安,燃烧学,北京:高等教育出版社,1989.
[17]
Fischer S H,Grubelich M C,A survey of combustible metals,thermites,and intermetallics for pyrotechnic applications[AIAA 96-3018],.