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含能材料  2010 

空气条件下氧化剂对铝/水基燃料燃烧特性的影响

DOI: 10.3969/j.issn.1006-9941.2010.03.013

Keywords: 物理化学,铝/水基燃料,六硝基六氮杂异伍兹烷(CL-20),奥克托今(HMX),空气气氛,燃烧特性

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Abstract:

利用多种实验技术研究了在空气气氛中添加剂奥克托今(HMX)和六硝基六氮杂异伍兹烷(CL-20)对Al/H2O基燃料燃烧特性的影响。实验发现添加HMX比CL-20更有利于铝粉的燃烧,对燃面温度的提高效果也更为显著,但是,添加CL-20能促进Al/H2O基燃料的热量传递,显著提高燃速。通过分析发现,实验结果与氧化剂CL-20和HMX本身的热分解和燃烧特性紧密相关。

References

[1]  Foote J P,Lineberry J T,Thompson B R. Investigation of aluminum particles combustion for underwater propulsion applications[J]. AIAA,1996-23086.
[2]  Vasilev A V. The effect of certain additives on critical diameter and combustion rates of mixtures of aluminum with gelled water . AD-A000210,1974.
[3]  Evgeny S,Victor D,Arvind V. Combustion of novel chemical mixtures for hydrogen generation[J]. Combustion and Flame,2006,144: 415-418.
[4]  Evgeny S,Victor D,Arvind V. Combustion-assisted hydrolysis of sodium borohydride for hydrogen generation[J]. International Journal of Hydrogen Energy,2007,32: 207-211.
[5]  郑邯勇,王永昌. 铝水反应机理的试验研究与分析[J]. 舰船科学技术,2005,27(3): 81-83. ZHENG Han-yong,WANG Yong-chang. Experimenrally study of aluminum-water reaction mechanism[J]. Ship Science and Technology,2005,27(3): 81-83.
[6]  李芳,张为华,张炜,等. 铝基水反应金属燃料性能初步研究[J]. 国防科技大学学报,2005,27(4): 4-7. LI Fang,ZHANG Wei-hua,ZHANG Wei,et al. A preliminary research on the performance of hydroreactive aluminium metal fuel[J]. Journal of National University of Defense Technology,2005,27(4): 4-7.
[7]  Sun Y L,Tian Y,Li S F. Theoretical study on the reaction mechanism of aluminum-water system[J]. Journal of Chinese Chemical Physics,2008,21: 245-249.
[8]  张仁. 固体推进剂的燃烧与催化[M]. 长沙: 国防科技大学出版社,1992. ZHANG Ren. Combustion and Catalysis of Solid Propellant[M]. Changsha: Press of National University of Defense Technology,1992.
[9]  Ostmark H,Bemm U,Bergman H,et al. N-guanylurea-dinitramide: A new energetic material with low sensitivity for propellants and explosives applications[J]. Thermochimica Acta,2002,384: 253-259.
[10]  郑剑. 新型含能材料——CL-20[J]. 推进技术,1994,15(1): 65-72. ZHENG Jian. CL-20-A new promising energetic martial[J]. Journal of Propulsion Technology,1994,15(1): 65-72.
[11]  陈鲁英,杨培进,张林军,等. CL-20炸药性能研究[J]. 火炸药学报,2003,26(3): 65-67. CHEN Lu-ying,YANG Pei-jin,ZHANG Lin-jun,et al. Study of the performance of explosive CL-20[J]. Chinese Journal of Explosives & Propellants,2003,26(3): 65-67.
[12]  王申,金韶华,成思源,等. 含CL-20的NEPE推进剂能量水平分析[J]. 火炸药学报,2002(1): 12-15. WANG Shen,JIN Shao-hua,SHENG Si-yuan,et al. Energetic level evaluation of NEPE solid propellant containing hexanitrohexaazaisowurtzitane(CL-20)[J]. Chinese Journal of Explosives & Propellants,2002(1): 12-15.
[13]  Braithwaite P C,Hatch R L,Lee K,et al. Development of high performance CL-20 explosives //Proceedings of 29th International Conference of ICT,Karlsruhe,1998.

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