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基于分子动力学模拟的CL-20/TNT共晶与复合炸药的结构、力学性能、感度、稳定性及爆轰性能的对比研究

Comparative studies on structures, mechanical properties, sensitivity, stabilities and detonation performance of CL-20/TNT cocrystal and composite explosives by molecular dynamics simulation.

作者信息

Hang Gui-Yun, Yu Wen-Li, Wang Tao, Wang Jin-Tao, Li Zhen

机构信息

Department of Nuclear Engineering, Xi'an High-Tech Research Institute, Shaanxi, Xi'an, 710025, People's Republic of China.

出版信息

J Mol Model. 2017 Sep 19;23(10):281. doi: 10.1007/s00894-017-3455-0.

Abstract

To investigate and compare the differences of structures and properties of CL-20/TNT cocrystal and composite explosives, the CL-20/TNT cocrystal and composite models were established. Molecular dynamics simulations were performed to investigate the structures, mechanical properties, sensitivity, stabilities and detonation performance of cocrystal and composite models with COMPASS force field in NPT ensemble. The lattice parameters, mechanical properties, binding energies, interaction energy of trigger bond, cohesive energy density and detonation parameters were determined and compared. The results show that, compared with pure CL-20, the rigidity and stiffness of cocrystal and composite models decreased, while plastic properties and ductility increased, so mechanical properties can be effectively improved by adding TNT into CL-20 and the cocrystal model has better mechanical properties. The interaction energy of the trigger bond and the cohesive energy density is in the order of CL-20/TNT cocrystal > CL-20/TNT composite > pure CL-20, i.e., cocrystal model is less sensitive than CL-20 and the composite model, and has the best safety parameters. Binding energies show that the cocrystal model has higher intermolecular interaction energy values than the composite model, thus illustrating the better stability of the cocrystal model. Detonation parameters vary as CL-20 > cocrystal > composite, namely, the energy density and power of cocrystal and composite model are weakened; however, the CL-20/TNT cocrystal explosive still has desirable energy density and detonation performance. This results presented in this paper help offer some helpful guidance to better understand the mechanism of CL-20/TNT cocrystal explosives and provide some theoretical assistance for cocrystal explosive design.

摘要

为了研究和比较CL-20/TNT共晶炸药和复合炸药的结构与性能差异,建立了CL-20/TNT共晶和复合模型。采用分子动力学模拟,在NPT系综下使用COMPASS力场研究共晶和复合模型的结构、力学性能、感度、稳定性和爆轰性能。确定并比较了晶格参数、力学性能、结合能、触发键相互作用能、内聚能密度和爆轰参数。结果表明,与纯CL-20相比,共晶和复合模型的刚性和硬度降低,而塑性和延展性增加,因此在CL-20中添加TNT可有效改善力学性能,且共晶模型具有更好的力学性能。触发键的相互作用能和内聚能密度顺序为CL-20/TNT共晶>CL-20/TNT复合>纯CL-20,即共晶模型比CL-20和复合模型更不敏感,具有最佳的安全参数。结合能表明共晶模型比复合模型具有更高的分子间相互作用能值,从而说明共晶模型具有更好的稳定性。爆轰参数变化为CL-20>共晶>复合,即共晶和复合模型的能量密度和功率减弱;然而,CL-20/TNT共晶炸药仍具有理想的能量密度和爆轰性能。本文给出的结果有助于更好地理解CL-20/TNT共晶炸药的机理,并为共晶炸药设计提供一些理论帮助。

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