CHINESE JOURNAL OF ENERGETIC MATERIALS
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高温下含缺陷CL-20初始化学反应的分子动力学模拟
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北京理工大学爆炸科学与技术国家重点实验室, 北京 100081

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爆炸科学与技术国家重点实验室(北京理工大学)自主课题 (QNKT20-04)


Molecular Dynamic Simulation of Initial Chemical Reaction of CL-20 with Defects at High Temperature
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State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, China

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    摘要:

    为研究晶体缺陷对六硝基六氮杂异伍兹烷(CL-20)初始化学反应影响规律,采用分子动力学方法和ReaxFF-lg反应性力场,对1500~3500 K高温下含空位缺陷CL-20的初始反应路径、热分解产物和反应动力学进行了研究。结果表明,1500~3500 K时,含空位缺陷CL-20的初始分解路径与完美晶体基本相同,首先N—NO2键断裂生成NO2。空位缺陷增大了CL-20开环反应频次、增加了NO2的生成量。比较完美晶体CL-20可见,空位缺陷可降低CL-20活化能,加速CL-20的热分解进程。2000 K和3000 K时含16.7%空位CL-20反应速率常数分别是完美CL-20的1.7倍和1.4倍。空位缺陷其周围的CL-20分子更容易发生热分解反应,导致CL-20的感度提高。

    Abstract:

    To study the influence of crystal defects on the initial reaction of hexanitrohexaazaisowurtzitane (CL-20), molecular dynamic simulation and ReaxFF-lg reactive force field are used to study the initial reaction path, thermal decomposition products, and reaction kinetics of CL-20 with vacancy defects at high temperature (1500-3500 K). The results show that the initial decomposition path of CL-20 with vacancy is the breaking of N─NO2 bond, the same as that of perfect crystal. The vacancy defects prove to increase the frequency of ring-opening reactions and the production of NO2. Compared with perfect CL-20, it can be seen that the vacancy defects would reduce the CL-20 activation energy barrier and accelerate its thermal decomposition process. The reaction rate constants of CL-20 with 16.7% vacancies are 1.7 and 1.4 times higher than that of perfect CL-20 at 2000 K and 3000 K, respectively. The CL-20 molecules around the vacancy are easier to decompose, leading to the increase of the sensitivity of CL-20.

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胡靖伟,甘强,冯长根,等.高温下含缺陷CL-20初始化学反应的分子动力学模拟[J].含能材料, 2021, 29(6):482-491. DOI:10.11943/CJEM2020245.
HU Jing-wei, GAN Qiang, FENG Chang-gen, et al. Molecular Dynamic Simulation of Initial Chemical Reaction of CL-20 with Defects at High Temperature[J]. Chinese Journal of Energetic Materials, 2021, 29(6):482-491. DOI:10.11943/CJEM2020245.

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  • 收稿日期: 2020-08-31
  • 最后修改日期: 2021-04-15
  • 录用日期: 2021-03-29
  • 在线发布日期: 2021-04-07
  • 出版日期: 2021-06-25