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通过分子动力学模拟确定水吸附对炸药JOB-9003的灵敏度和爆轰性能的影响。

Determination of the effects of water adsorption on the sensitivity and detonation performance of the explosive JOB-9003 by molecular dynamics simulation.

作者信息

Hang GuiYun, Yu WenLi, Wang Tao, Li Zhen

机构信息

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

出版信息

J Mol Model. 2016 Nov;22(11):275. doi: 10.1007/s00894-016-3143-5. Epub 2016 Oct 26.

Abstract

In order to determine the adsorption mechanism of water on the crystal surfaces of the explosive JOB-9003 and the effect of this adsorption on the sensitivity and detonation performance of this explosive, a model of the crystal of JOB-9003 was created in the software package Materials Studio (MS). The adsorption process was simulated, and molecular dynamics simulation was performed with the COMPASS force field in the NPT ensemble to calculate the sensitivity and detonation performance of the explosive. The results show that the maximum trigger bond length decreases whereas the interaction energy of the trigger bond and the cohesive energy density increase after adsorption, indicating that the sensitivity of JOB-9003 decreases. The results for the detonation performance show that the detonation pressure, detonation velocity, and detonation heat decrease upon the adsorption of water, thus illustrating that the detonation performance of JOB-9003 is degraded. In summary, the adsorption of water has a positive effect on the sensitivity and safety of the explosive JOB-9003 but a negative effect on its detonation performance.

摘要

为了确定水在炸药JOB - 9003晶体表面的吸附机制以及这种吸附对该炸药感度和爆轰性能的影响,在材料工作室(MS)软件包中创建了JOB - 9003晶体模型。模拟了吸附过程,并在NPT系综中使用COMPASS力场进行分子动力学模拟,以计算该炸药的感度和爆轰性能。结果表明,吸附后最大引发键长度减小,而引发键的相互作用能和内聚能密度增加,这表明JOB - 9003的感度降低。爆轰性能结果表明,水吸附后爆轰压力、爆轰速度和爆轰热降低,从而说明JOB - 9003的爆轰性能下降。综上所述,水的吸附对炸药JOB - 9003的感度和安全性有积极影响,但对其爆轰性能有负面影响。

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