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首页> 外文期刊>The Journal of Chemical Physics >Thermal decomposition of RDX from reactive molecular dynamics
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Thermal decomposition of RDX from reactive molecular dynamics

机译:RDX从反应分子动力学上的热分解

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We use the recently developed reactive force field ReaxFF with molecular dynamics to study thermal induced chemistry in RDX [cyclic-[CH2N(NO2)](3)] at various temperatures and densities. We find that the time evolution of the potential energy can be described reasonably well with a single exponential function from which we obtain an overall characteristic time of decomposition that increases with decreasing density and shows an Arrhenius temperature dependence. These characteristic timescales are in reasonable quantitative agreement with experimental measurements in a similar energetic material, HMX [cyclic-[CH2N(NO2)](4)]. Our simulations show that the equilibrium population of CO and CO2 (as well as their time evolution) depend strongly of density: at low density almost all carbon atoms form CO molecules; as the density increases larger aggregates of carbon appear leading to a C deficient gas phase and the appearance of CO2 molecules. The equilibrium populations of N-2 and H2O are more insensitive with respect to density and form in the early stages of the decomposition process with similar timescales. (C) 2005 American Institute of Physics.
机译:我们使用最新开发的具有分子动力学的反作用力场ReaxFF来研究RDX [环-[CH2N(NO2)](3)]在不同温度和密度下的热诱导化学。我们发现,利用单个指数函数可以很好地描述势能的时间演化,从中我们可以获得分解的总体特征时间,该特征的分解时间随密度的降低而增加,并表现出阿累尼乌斯温度依赖性。这些特征性时标与类似高能材料HMX [cyclic- [CH2N(NO2)](4)]中的实验测量值在定量上合理一致。我们的模拟表明,CO和CO2的平衡种群(以及它们的时间演化)在很大程度上取决于密度:在低密度下,几乎所有碳原子都形成CO分子。随着密度的增加,更大的碳聚集体出现,导致C缺乏气相和CO2分子的出现。 N-2和H2O的平衡族在密度和分解时间的早期以相似的时间尺度对密度更不敏感。 (C)2005美国物理研究所。

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