CHINESE JOURNAL OF ENERGETIC MATERIALS
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三叠氮化铝分子结构及爆炸性能理论研究
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北京理工大学,北京理工大学,北京理工大学,北京理工大学

作者简介:

周雪松(1984-),女,硕士,研究方向为应用量子化学。 e-mail:xuesong070317@163.com

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Theoretical Study on Structure and Explosion Performance for Aluminum Triazide
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Beijing Institute of Technology,Beijing Institute of Technology,Beijing Institute of Technology,Beijing Institute of Technology

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    摘要:

    采用B3LYP/6-311G*方法对三叠氮化铝进行结构优化;理论计算了其密度、升华焓、生成焓,将其作为单质炸药,计算了其爆炸参数,并与TNT作比较;再将其加入硝酸铵与梯恩梯的混合炸药中,按零氧平衡原则预测混合炸药各爆炸参数,并与含有相同质量分数Al的混合炸药作比较。结果表明: 三叠氮化铝的爆热、爆容、爆温、爆速、爆压、作功能力分别为5170.20 kJ·kg-1、585.62 L·kg-1、5028.12 K、9095.23 m·s-1、31.02 GPa、1105.14 kJ·kg-1,除爆容小于TNT及作功能力与TNT相当外,其余性能都优于TNT,因此是一种潜在的单质炸药;铝含量为6%时,三叠氮化铝、硝酸铵和梯恩梯混合炸药以上各参数分别为4351.49 kJ·kg-1、892.22 L·kg-1、3142.50 K、8344.09 m·s-1、27.55 GPa、1417.11 kJ·kg-1; 三叠氮化铝能提高硝酸铵与梯恩梯混合炸药的爆热、爆温、爆速、爆压和作功能力,是一种潜在的高能可燃剂。

    Abstract:

    The geometrical structure of aluminum triazide was optimized at the B3LYP/6-311G* level of theory. Its density, heat of sublimation and heat of formation of aluminum triazide were estimated theoretically, and explosion parameters was calculated and compared with TNT. According to the principle of zero oxygen balance, when it added into the composite explosive of AN and TNT, those parameters were predicted and compared with those of composite explosive containing the same quality of Al. The detonation heat, specific volume of explosion, detonation temperature, detonation velocity, detonation pressure and working capacity of aluminum triazide is 5170.20 kJ·kg-1, 585.62 L·kg-1, 5028.12 K, 9095.23 m·s-1, 31.02 GPa, 1105.14 kJ·kg-1respectively, indicating that its properties are better than those of TNT except detonation velocity and working capacity. Therefore it is a potential explosive compound. When the quality percentage of Al is 6%, the above parameters of the composite explosive of AN, TNT and aluminum triazide were 4351.49 kJ·kg-1, 892.22 L·kg-1, 3142.50 K, 8344.09 m·s-1, 27.55 GPa, 1417.11 kJ·kg-1 respectively. Aluminum triazide is a potential high-energy ignition agent,since it can improve the detonation heat, detonation temperature, detonation velocity, detonation pressure and working capacity of the composite explosive.

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引用本文

周雪松,罗琼,焦清介,等.三叠氮化铝分子结构及爆炸性能理论研究[J].含能材料, 2011, 19(6):641-645. DOI:10.3969/j. issn.1006-9941.2011.06.010.
ZHOU Xue-song, LUO Qiong, JIAO Qing-jie, et al. Theoretical Study on Structure and Explosion Performance for Aluminum Triazide[J]. Chinese Journal of Energetic Materials, 2011, 19(6):641-645. DOI:10.3969/j. issn.1006-9941.2011.06.010.

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  • 收稿日期: 2010-11-02
  • 最后修改日期: 2011-04-25
  • 录用日期: 2011-01-13
  • 在线发布日期: 2012-02-22
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