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Theoretical investigation of the structures and properties of CL-20/DNB cocrystal and associated PBXs by molecular dynamics simulation

机译:分子动力学模拟Cl-20 / DNB COCRYSTAL和相关PBX结构和性能的理论研究

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In this work, a CL-20/DNB cocrystal explosive model was established and six different kinds of fluoropolymers, i.e., PVDF, PCTFE, F-2311, F-2312, F-2313 and F-2314 were added into the (1 0 0), (0 1 0), (0 0 1) crystal orientations to obtain the corresponding polymer bonded explosives (PBXs). The influence of fluoropolymers on PBX properties (energetic property, stability and mechanical properties) was investigated and evaluated using molecular dynamics (MD) methods. The results reveal a decrease in engineering moduli, an increase in Cauchy pressure (i.e., rigidity and stiffness is lessened), and an increase in plastic properties and ductility, thus indicating that the fluoropolymers have a beneficial influence on the mechanical properties of PBXs. Of all the PBXs models tested, the mechanical properties of CL-20/DNB/F-2311 were the best. Binding energies show that CL-20/DNB/F-2311 has the highest intermolecular interaction energy and best compatibility and stability. Therefore, F-2311 is the most suitable fluoropolymer for PBXs. The mechanical properties and binding energies of the three crystal orientations vary in the order (0 1 0) (0 0 1) (1 0 0), i.e., the mechanical properties of the (0 1 0) crystal orientation are best, and this is the most stable crystal orientation. Detonation performance results show that the density and detonation parameters of PBXs are lower than those of the pure CL-20 and CL-20/DNB cocrystal explosive. The power and energetic performance of PBXs are thus weakened; however, these PBXs still have excellent detonation performance and are very promising. The results and conclusions provide some helpful guidance and novel instructions for the design and manufacture of PBXs.
机译:在这项工作中,建立了CL-20 / DNB共聚物爆炸模型,并加入了六种不同种类的含氟聚合物,即PVDF,PCTFE,F-2311,F-2312,F-2313和F-2314(1 0 0),(0 1 0),(0 01)晶体取向,得到相应的聚合物键合炸药(PBX)。使用分子动力学(MD)方法研究和评估含氟聚合物对PBX性能(能量性质,稳定性和机械性能)的影响。结果揭示了工程模量的降低,Cauchy压力的增加(即,减少刚度和刚度),以及塑性性质和延展性的增加,从而表明含氟聚合物对PBX的机械性能具有有益的影响。在测试的所有PBXS模型中,CL-20 / DNB / F-2311的机械性能是最好的。绑定能量显示CL-20 / DNB / F-2311具有最高的分子间相互作用能量和最佳兼容性和稳定性。因此,F-2311是最合适的PBX含氟聚合物。三晶方向的机械性能和粘合能量在顺序(0 1 0)&gt时变化。 (0 0 1)& (1 0 0),即(0 1 0)晶体取向的机械性能最好,这是最稳定的晶体取向。爆轰性能结果表明,PBX的密度和爆轰参数低于纯C1-20和CL-20 / DNB COCRYSTAL爆炸物的密度和爆轰参数。因此,PBX的功率和能量性能被削弱;然而,这些PBX仍然具有出色的爆轰性能,并且非常有前景。结果和结论为PBXS设计和制造提供了一些有用的指导和新颖的指导。

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