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基于双环HMX的PBXs结合能、力学性能和爆轰性能的分子动力学研究

Molecular dynamics study of binding energies, mechanical properties, and detonation performances of bicyclo-HMX-based PBXs.

作者信息

Qiu Ling, Xiao Heming

机构信息

Institute for Computation in Molecular and Material Science, School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, PR China.

出版信息

J Hazard Mater. 2009 May 15;164(1):329-36. doi: 10.1016/j.jhazmat.2008.08.030. Epub 2008 Aug 19.

Abstract

To investigate the effect of polymer binders on the monoexplosive, molecular dynamics simulations were performed to study the binding energies, mechanical properties, and detonation performances of the bicyclo-HMX-based polymer-bonded explosives (PBXs). The results show that the binding energies on different crystalline surfaces of bicyclo-HMX decrease in the order of (010)>(100)>(001). On each crystalline surface, binding properties of different polymers with the same chain segment are different from each other, while those of the polymers in the same content decrease in the sequence of PVDF>F(2311)>F(2314) approximately PCTFE. The mechanical properties of a dozen of model systems (elastic coefficients, various moduli, Cauchy pressure, and Poisson's ratio) have been obtained. It is found that mechanical properties are effectively improved by adding small amounts of fluorine polymers, and the overall effect of fluorine polymers on three crystalline surfaces of bicyclo-HMX changes in the order of (010)>(001) approximately (100). In comparison with the base explosive, detonation performances of the PBXs decrease slightly, but they are still superior to TNT. These suggestions may be useful for the formulation design of bicyclo-HMX-based PBXs.

摘要

为研究聚合物粘结剂对单质炸药的影响,进行了分子动力学模拟,以研究双环-HMX基聚合物粘结炸药(PBXs)的结合能、力学性能和爆轰性能。结果表明,双环-HMX不同晶面的结合能按(010)>(100)>(001)的顺序降低。在每个晶面上,具有相同链段的不同聚合物的结合性能彼此不同,而相同含量的聚合物的结合性能按PVDF>F(2311)>F(2314)≈PCTFE的顺序降低。已获得了十几个模型体系的力学性能(弹性系数、各种模量、柯西压力和泊松比)。发现添加少量含氟聚合物可有效改善力学性能,含氟聚合物对双环-HMX三个晶面的总体影响按(010)>(001)≈(100)的顺序变化。与单质炸药相比,PBXs的爆轰性能略有下降,但仍优于TNT。这些建议可能对双环-HMX基PBXs的配方设计有用。

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