首页> 外文期刊>Propellants, Explosives, Pyrotechnics >Calculation of Decomposition Products from Components of Gunpowder by using ReaxFF Reactive Force Field Molecular Dynamics and Thermodynamic Calculations of Equilibrium Composition
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Calculation of Decomposition Products from Components of Gunpowder by using ReaxFF Reactive Force Field Molecular Dynamics and Thermodynamic Calculations of Equilibrium Composition

机译:利用ReaxFF反应力场分子动力学计算火药成分的分解产物及平衡组成的热力学计算。

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摘要

The major combustion products from munitions containing nitro-based propellants are water, carbon monoxide, carbon dioxide, hydrogen, and nitrogen. In addition, compounds including hydrogen cyanide, ammonia, methane, nitrogen oxides, benzene, acrylonitrile, toluene, furan, aromatic amines, benzopyrene, and various polycyclic aromatic hydrocarbons are detected in minor concentrations. The literature shows that the thermodynamic prediction of the major decomposition products agrees fairly well with the measurements. However, poor agreement is found for the minor species. We have studied the thermal decomposition products of the main gunpowder ingredients. Each of the components nitrocellulose, nitroglycerine, and the nitrate ester stabilizers diphenylamine and ethyl centralite were thermally decomposed with ReaxFF reactive force field molecular dynamics and equilibrium thermodynamics. The molecular dynamics results for the major decomposition products from nitrocellulose were partly consistent with measurements. Compared to the thermodynamic calculations, the molecular dynamics simulations agreed considerably better with experimental results for minor species like hydrogen cyanide. The nitrate ester stabilizers are the main sources for ammonia and aromatic combustion products, whereas hydrogen cyanide is produced from nitrocellulose as well as from the stabilizers when gunpowder is combusted.
机译:含有硝基推进剂的弹药的主要燃烧产物是水,一氧化碳,二氧化碳,氢气和氮气。此外,还检测到了微量的化合物,包括氰化氢,氨,甲烷,氮氧化物,苯,丙烯腈,甲苯,呋喃,芳族胺,苯并re和各种多环芳烃。文献表明,主要分解产物的热力学预测与测量结果相当吻合。但是,发现次要物种的协议不佳。我们研究了主要火药成分的热分解产物。利用ReaxFF反应力场分子动力学和平衡热力学,将硝酸纤维素,硝化甘油和硝酸酯稳定剂二苯胺和乙基重金属中的每一种热分解。硝酸纤维素主要分解产物的分子动力学结果与测量结果部分一致。与热力学计算相比,分子动力学模拟与氰化氢等次要物种的实验结果吻合得更好。硝酸酯稳定剂是氨和芳族燃烧产物的主要来源,而氰化氢则是由硝化纤维以及燃烧火药时的稳定剂产生的。

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