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Effect of density on the thermal decomposition mechanism of epsilon-CL-20: a ReaxFF reactive molecular dynamics simulation study

机译:密度对ε-CL-20热分解机制的影响:Reaxff反应性分子动力学模拟研究

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摘要

The explosive detonation reaction occurs when explosives are compressed by different shock strengths, and the degree of compression affects the chemical reaction of the detonation process. The thermal decomposition mechanism of explosives under different compression densities has thus attracted significant research interest, and a better understanding of this mechanism would be helpful for determining the mechanism of the detonation reaction of explosives. In this study, a epsilon-CL-20 supercell was constructed, and the thermal decomposition was calculated at different compression densities and temperatures using molecular dynamics simulations based on the ReaxFF-lg reactive force field. We analyzed the effect of density on the main elementary reaction, which consists of the initial reaction and the formation of final products. In addition, we studied the effect of density on the generation of clusters and the reaction kinetics of the thermal decomposition. The results indicate that the initial reaction pathway of the CL-20 molecule is the cleavage of the N-NO2 bond at different densities and that the frequency of N-NO2 bond breakage decreases at high density. As the density increases, clusters easily form and are resistant to decomposition at the later stage of thermal decomposition, which eventually leads to a decrease in the number of final products. Increasing the initial density of CL-20 significantly increases the reaction rate of the initial decomposition but hardly changes the activation energy of the decomposition.
机译:当通过不同的冲击强度压缩爆炸物时,发生爆炸性爆炸反应,并且压缩程度会影响爆炸过程的化学反应。因此,不同压缩密度下爆炸物的热分解机制引起了显着的研究兴趣,更好地了解这种机制将有助于确定炸药的爆轰反应的机制。在该研究中,构建了epsilon-Cl-20超级胶片,并且在不同的压缩密度和使用基于Reaxff-LG反应力场的分子动力学模拟的温度计算热分解。我们分析了密度对主要基本反应的影响,该反应包括初始反应和最终产品的形成。此外,我们研究了密度对簇产生的影响和热分解的反应动力学。结果表明,Cl-20分子的初始反应途径是在不同密度下N-NO 2键的切割,并且N-NO2粘合断裂的频率在高密度下降低。随着密度的增加,簇容易形成并且在热分解的后期阶段易于分解,这最终导致最终产品数量的减少。增加Cl-20的初始密度显着提高了初始分解的反应速率,但几乎没有改变分解的激活能量。

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    Beijing Inst Technol State Key Lab Explos Sci &

    Technol Beying 100081 Peoples R China;

    Beijing Inst Technol State Key Lab Explos Sci &

    Technol Beying 100081 Peoples R China;

    Beijing Inst Technol State Key Lab Explos Sci &

    Technol Beying 100081 Peoples R China;

    Beijing Inst Technol State Key Lab Explos Sci &

    Technol Beying 100081 Peoples R China;

    Beijing Inst Technol State Key Lab Explos Sci &

    Technol Beying 100081 Peoples R China;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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