Lan Guanchao, Jin Shaohua, Wang Dongxu, Li Jing, Lu Zhiyan, Jing Baochao, Li Lijie
School of Materials Science and Engineering, Beijing Institute of Technology, Beijing, 100081, China.
School of Mechatronical Engineering, Beijing Institute of Technology, Beijing, 100081, China.
J Mol Model. 2018 Jul 2;24(7):186. doi: 10.1007/s00894-018-3670-3.
The influences of the temperature and the BDNPA/BDNPF (A3) content on the mechanical properties of and the binding energies between hexanitrohexaazaisowurtzitane (HNIW) and cellulose acetate butyrate (CAB)/A3 were studied via molecular dynamics simulations. The morphology of HNIW in acetone was simulated using an attachment energy (AE) model to elucidate the HNIW surfaces that are present under real-world conditions. The simulation results were consistent with the experimentally derived ones, and they indicated that the exposed HNIW surfaces were (0 0 1), (1 1 0), and (1 1 -1). The mechanical properties of CAB with different amounts of A3 were calculated at different temperatures, and the results showed that the amount of A3 was a stronger influence than the temperature on the mechanical properties. The binding energies between CAB/A3 and the exposed HNIW surfaces were calculated. Based on the binding energy and the area of each exposed surface, the weighted-average binding energy was calculated and then used instead of the total binding energy to evaluate the effect of the temperature and the A3 content on the binding energy. The average binding energy was found to be highest when the temperature was 313 K and the mass fraction of A3 was 0.15.
通过分子动力学模拟研究了温度和BDNPA/BDNPF(A3)含量对六硝基六氮杂异伍兹烷(HNIW)与醋酸丁酸纤维素(CAB)/A3之间的力学性能及结合能的影响。利用附着能(AE)模型模拟了丙酮中HNIW的形态,以阐明实际条件下存在的HNIW表面。模拟结果与实验结果一致,表明暴露的HNIW表面为(0 0 1)、(1 1 0)和(1 1 -1)。在不同温度下计算了不同A3含量的CAB的力学性能,结果表明,A3含量对力学性能的影响比温度更强。计算了CAB/A3与暴露的HNIW表面之间的结合能。基于结合能和每个暴露表面的面积,计算了加权平均结合能,然后用其代替总结合能来评估温度和A3含量对结合能的影响。发现当温度为313 K且A3的质量分数为0.15时,平均结合能最高。