Sichel M, Baek S W, Kauffman C W, et al. The Shock Wave Ignition of Dusts [J]. AIAA J, 1985, 23(9): 1374-1380.
[2]
Renlund A M. Spectroscopic Studies of Detonating Heterogeneous Explosives [R]. SAND-84-1605C, 1984.
[3]
Blaic N C. Real Time Analysis of Detonation Products [R]. LA-UR-87-928, 1987.
[4]
Tao W C. Understanding Composite Explosive Energentic [A]//Short J M. The Tenth International Detonation Symposium [C]. Boston: Office of Naval Research, 1993: 59-64.
[5]
Baudin G. A Reaction Model for Aluminized PBX Applied to Underwater Explosion Calculations [A]//Short J M. The Tenth International Detonation Symposium [C]. Boston: Office of Naval Research, 1993: 136-140.
[6]
Young S K, Alexander A, Alwxander P I, et al. The Mechanism of Combustion of Super Aluminum Powder [J]. Combustion and Flame, 2003, 133(3): 385-391.
[7]
Streletsk A, Kobanev I V, Borunova A B, et al. Mechanochemically Activated Aluminum Preparation, Struture, and Chemical Properties [J]. J Materials Science, 2004, 39(12): 5175-5179.
[8]
Jones M K. Reactive Temperature Measurement of Aluminum Powder [J]. J Quant Spectrosc, 1991, 46(1): 109-114.
[9]
Li Zh N, Hu D, Sun Zh M, et al. Detonation Temperature for Hydrogen-Oxygen Mixtures Using Multiwavelength Pyrometer [J]. Chinese Journal of High Pressure Physics, 1990, 4(4): 276-283. (in Chinese)
Hu D, Sun Zh M, Deng X D. Measurements of Dynamic Temperature in High-Speed Combustion Fuels [J]. Chinese Journal of Fuel Chemistry and Technology, 1993, 21(2): 219-223. (in Chinese)