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Thermal Decomposition of Energetic Materials by ReaxFF Reactive Molecular Dynamics

机译:ReaxFF反应分子动力学对含能材料的热分解

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摘要

We report the study of thermal decomposition of 1,3,5-trinitrohexahydro-s-triazine (RDX) bonded with polyurethane (Estane) and of the bulk hydrazine by molecular dynamics (MD) simulations equipped with the reactive force field (ReaxFF). For the polymer binder explosive, the simulation results show that the thermal decomposition of RDX is affected by the presence of the polymer binder Estane. Generally, with addition of Estane the decomposition of RDX slows down. Final products including N2, H2O, CO, CO2 and intermediates NO2, NO and HONO have been identified from the thermal decomposition processes. For the bulk hydrazine, it is found that with the increase of temperature, its decomposition increases and more N2 and H2 are generated, but NH3 molecules are consumed much faster at higher temperatures. This simulation work provides us an approach to quickly test the response of various energetic materials to thermal conditions.
机译:我们报告了配备有反作用力场(ReaxFF)的分子动力学(MD)模拟对与聚氨酯(Estane)结合的1,3,5-三硝基六氢-s-三嗪(RDX)和本体肼的热分解的研究。对于聚合物粘合剂炸药,模拟结果表明,RDX的热分解受聚合物粘合剂Estane的存在影响。通常,添加Estane会降低RDX的分解速度。从热分解过程中已经鉴定出包括N2,H2O,CO,CO2以及中间体NO2,NO和HONO在内的最终产品。对于本体肼,发现随着温度的升高,其分解增加并且产生更多的N 2和H 2,但是在更高的温度下NH 3分子的消耗快得多。这项仿真工作为我们提供了一种快速测试各种高能材料对热工况响应的方法。

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