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十二氢十二硼酸双四乙基铵对铝粉燃烧反应机理的影响
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西安近代化学研究所, 陕西 西安 710065

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Effect of Dodecahydrododecaborate Bistetraethylammonium on Combustion Reaction Mechanism of Aluminum Powder
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Xi''an Modern Chemistry Research Institute, Xi''an 710065, China

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    摘要:

    为了探究固体硼氢燃料对铝粉燃烧反应机理的影响,采用同步热分析-红外质谱联用技术及热裂解原位池-傅里叶变换红外光谱联用技术,对十二氢十二硼酸双四乙基铵(BHN-12)的热分解反应机理及反应动力学进行研究。在此基础上,结合数值模拟建立BHN-12在爆炸流场中对铝粉燃烧反应影响的模型,探究硼氢燃料在流场中的反应时间、分散特性以及对铝粉的助燃效应。结果表明,BHN-12热分解开始温度约314 ℃,结束温度约360 ℃。分解过程中出现三个放热峰和两个吸热峰,总质量损失范围为32.3%~33.9%。分解过程遵从幂级数法则(Mampel power),动力学机理函数为。分解后的气体产物主要为H2、C2H4、C2H6和NH3,固体产物为非晶态的C和B单质。采用组分运输模型可较好地模拟Al/BHN-12体系的后燃烧反应过程,在该过程中,Al燃料的分散速度比BHN-12粒子的分散速度慢,20 ms时,Al燃料的分散半径约2.5 m,BHN-12的分散半径约3 m。在反应初期2 ms时,无分解气体产物出现;大约4 ms时,开始出现气体产物,反应火球中部的温度约为1800 ℃,BHN-12可提升体系的后燃反应温度约300 ℃。

    Abstract:

    To explore the effect of solid boron hydrogen fuel on the burning mechanism of aluminum powder, the simultaneous thermal analysis-infrared mass spectrometry technology and the pyrolysis in-situ cell-Fourier transform infrared spectroscopy technology were employed. Combining with the numerical model of the effect of BHN-12 on the burning reaction of aluminum powder in the explosion flow filed, the mentioned experiment was introduced to study the reaction time, dispersion characteristics and combustion-supporting effect of boron-hydrogen fuel. Results show that the thermal decomposition process of BHN-12 started from 314 ℃, and ended at 360 ℃. There are three exothermic peaks and two endothermic peaks during the decomposition process with a total mass loss 32.3%-33.9%. The decomposition process obeyed the law of power series (Mampel power), and the dynamic mechanism function is . The gaseous products of the thermal decomposition are mainly H2, C2H4, C2H6 and NH3, and the solid products are simple substances of amorphous C and B. The component transportation model was introduced to simulate the after- burning process of the Al/BHN-12 system. During the process, the dispersion speed of Al fuel was slower than that of BHN-12 particles. At the time of 20 ms, the dispersion radius of Al fuel was about 2.5 m, but it was 3m for BHN-12. In the first 2 ms of the reaction, there was no gaseous product produced, until 4m the gaseous products came out with a temperature 1800 ℃ in the middle of the fire ball. BHN-12 could increase the after-burning temperature of the entire system by about 300 ℃.

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引用本文

姜帆,牛余雷,卜宇凡,等.十二氢十二硼酸双四乙基铵对铝粉燃烧反应机理的影响[J].含能材料, 2021, 29(10):937-947. DOI:10.11943/CJEM2021090.
JIANG Fan, NIU Yu-lei, BU Yu-fan, et al. Effect of Dodecahydrododecaborate Bistetraethylammonium on Combustion Reaction Mechanism of Aluminum Powder[J]. Chinese Journal of Energetic Materials, 2021, 29(10):937-947. DOI:10.11943/CJEM2021090.

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  • 收稿日期: 2021-04-14
  • 最后修改日期: 2021-08-18
  • 录用日期: 2021-08-04
  • 在线发布日期: 2021-08-11
  • 出版日期: 2021-10-25