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Study on the relations of sensitivity with energy properties for HMX and HMX-based PBXs by molecular dynamics simulation

机译:通过分子动力学模拟研究HMX和基于HMX的PBX的灵敏度与能量性质的关系

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Molecular dynamics simulation was applied to study the structure and energy properties of β-HMX (β-cyclotetramethylene tetranitramine) crystal and its composite PBXs (polymer-bonded explosives) with F _(2311) as a polymer binder under different temperatures and F _(2311) concentrations. The interface interaction energy of HMX and F _(2311), the interaction energy E _(N-N) between N atoms in N-NO _2 trigger bond in HMX molecules, and the cohesive energy density (CED) are presented and analyzed. A meaningful finding is that there exists correlation between E _(N-N) and the sensitivity of β-HMX and its composites, i.e. the less the E _(N-N) is, the larger the sensitivity is. Additionally, molecular interactions are inherently disclosed by using pair correlation function (PCF) to analyze the interfacial structure between (1 0 0)HMX crystal surface and F _(2311) molecular chain.
机译:应用分子动力学模拟研究了在不同温度和F_(F_(2311)作为聚合物粘合剂的情况下,β-HMX(β-环四亚甲基四硝胺)晶体及其复合PBX(聚合物粘结炸药)的结构和能量性质。 2311)浓度。给出并分析了HMX与F _(2311)的界面相互作用能,H-N分子中N-NO _2触发键中N个原子之间的相互作用能E _(N-N)以及内聚能密度(CED)。一个有意义的发现是E _(N-N)与β-HMX及其复合物的灵敏度之间存在相关性,即E _(N-N)越小,灵敏度越大。此外,通过使用对相关函数(PCF)分析(1 0 0)HMX晶体表面与F _(2311)分子链之间的界面结构,固有地公开了分子相互作用。

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