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纳米铝粉及纳米铝粉/煤油凝胶体系能量性能研究
引用本文:刘香翠,张炜,朱慧,王春华.纳米铝粉及纳米铝粉/煤油凝胶体系能量性能研究[J].固体火箭技术,2005,28(3):198-200.
作者姓名:刘香翠  张炜  朱慧  王春华
作者单位:国防科技大学航天与材料工程学院,长沙 410073
摘    要:测定了各单组分及纳米铝粉/煤油凝胶体系的燃烧热,表征了纳米铝粉及纳米铝粉/煤油凝胶体系的能量性能。实验结果表明,随着纳米铝粉含量的增加,纳米铝粉/煤油凝胶体系的质量恒容燃烧热呈降低趋势,这是由于煤油的燃烧热值较高,铝粉的燃烧热值较低所致;而各纳米铝粉/煤油凝胶体系的密度随纳米铝粉含量的增加呈升高趋势,体系的体积燃烧热也随纳米铝粉含量增加而升高。

关 键 词:纳米铝粉  燃烧热  能量  密度
文章编号:1006-2793(2005)03-0198-03
收稿时间:2004-04-19
修稿时间:2005-06-07

Study on energy performances for nano-aluminum powder and nano-aluminum/kerosene gel system
LIU Xiang-cui,ZHANG Wei,ZHU Hui,WANG Chun-hua.Study on energy performances for nano-aluminum powder and nano-aluminum/kerosene gel system[J].Journal of Solid Rocket Technology,2005,28(3):198-200.
Authors:LIU Xiang-cui  ZHANG Wei  ZHU Hui  WANG Chun-hua
Abstract:Combustion heat of every ingredient and nano-aluminum/kerosene gel system was measured, and energy performances of nano-aluminum powder and nano-aluminum/kerosene gel system were characterized. The results show that the mass constant volume combustion heat of the nano-aluminum/kerosene gel system decreases with the increase of nano-aluminum powder content in the gel system. The reason is that combustion heat of nano-aluminum powder is lower than that of kerosene. But density and volumetric combustion heat of the systems increase with increment of nano-aluminum powder content.
Keywords:nano-aiuminum powder  combustion heat  energy  density
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