Ma Xiufang, Zhu Weihua, Xiao Jijun, Xiao Heming
Institute for Computation in Molecular and Material Science, Nanjing University of Science and Technology, Nanjing, PR China.
J Hazard Mater. 2008 Aug 15;156(1-3):201-7. doi: 10.1016/j.jhazmat.2007.12.068. Epub 2008 Feb 20.
To investigate the structure and performance of simple and double bases propellants, the nitrocellulose (NC), nitroglycerin (NG), and double mixed system (NC+NG) have been simulated by using the molecular dynamics (MD) method with the COMPASS force field. The interactions between NC and NG have been analyzed by means of pair correlation functions. The mechanical properties of the three model systems, i.e. elastic coefficients, modulus, Cauchy pressure, and Poisson's ratio, etc., have been obtained. It is found that the rigidity, ductibility, and tenacity of the double bases propellants (NC+NG) are stronger than those of simple base propellants (NC), which attributes to the effect of NG and the strong interactions between NC and NG. The detonation properties of the three systems have also been calculated and the results show that compared with the simple base propellant (NC), the detonation heat and detonation velocity of the double base propellants (NC+NG) are increased.
为研究单基和双基推进剂的结构与性能,采用具有COMPASS力场的分子动力学(MD)方法对硝化纤维素(NC)、硝化甘油(NG)及双混合体系(NC + NG)进行了模拟。通过对关联函数分析了NC与NG之间的相互作用。获得了三个模型体系的力学性能,即弹性系数、模量、柯西压力和泊松比等。发现双基推进剂(NC + NG)的刚性、延展性和韧性比单基推进剂(NC)更强,这归因于NG的作用以及NC与NG之间的强相互作用。还计算了三个体系的爆轰性能,结果表明,与单基推进剂(NC)相比,双基推进剂(NC + NG)的爆热和爆速有所提高。