CHINESE JOURNAL OF ENERGETIC MATERIALS
+高级检索
CL-20及其共晶炸药热力学稳定性与爆轰性能的理论研究
作者:
作者单位:

(1. 中国工程物理研究院高性能数值模拟软件中心, 北京 100088; 2. 北京应用物理与计算数学研究所, 北京 100088; 3. 湘潭大学材料科学与工程学院, 湖南 湘潭 411105)

作者简介:

张蕾(1985-),女,副研究员,主要从事含能材料物性研究、方法建设和软件开发研究。e-mail: zhang_lei@iapcm.ac.cn 通信联系人: 陈军(1969-),男,研究员,主要从事PBX炸药物性计算方法和材料损伤多尺度数值模拟方法的系统建立,深入开展炸药物性和损伤动力学行为研究。e-mail: jun_chen@iapcm.ac.cn

通讯作者:

陈军(1969-),男,研究员,主要从事PBX炸药物性计算方法和材料损伤多尺度数值模拟方法的系统建立,深入开展炸药物性和损伤动力学行为研究。e-mail: jun_chen@iapcm.ac.cn

基金项目:

国家自然科学基金(11604017),国防基础科研核科学挑战专题(TZZT2017-D2-HT013J),国家重点研发计划(2017YFB0202403)


Theoretical Study on Thermodynamic Stability and Detonation Performance of CL-20 and Its Cocrystal
Author:
Affiliation:

(1. CAEP Software Center for High Performance Numerical Simulation, Beijing 100088, China; 2. Laboratory of Computational Physics, Institute of Applied Physics and Computational Mathematics, Beijing 100088, China; 3. School of Materials Science and Engneering, Xiangtan University, Xiangtan 411105, China)

Fund Project:

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献
  • |
  • 相似文献
  • |
  • 引证文献
  • |
  • 资源附件
    摘要:

    基于自主研发的第一性原理软件研究了六硝基六氮杂异伍兹烷(CL-20)炸药五种晶相、苯并三氧化呋咱(BTF)炸药晶体及CL-20/BTF共晶炸药结构的热力学稳定性、力学性能和爆轰性能。研究表明, 弱氢键的静电吸引作用使CL-20/BTF共晶的分子间结合能相对于无氢BTF晶体增加39%, 提升了共晶结构的热力学稳定性并较大地改变了其体弹模量和声速等力学性能。CL-20/BTF共晶虽与纯BTF晶体有相近的密度, 但由于共晶的氧平衡系数得到优化, 因此其爆压、爆速分别相对提高约11%、5%;与β-CL-20晶体相比, 共晶的密度与氧平衡均有所下降, 因而其爆压、爆速分别相对下降约15%、6%。设计新型钝感共晶炸药应避免共价键强度极弱的分子和具有高密度振动谱特征峰的结构, 应有效利用氢键对分子空间堆积的热力学稳定效应, 同时适量控制氢元素含量以保障炸药的高能量密度。

    Abstract:

    Based on the first-principle software developed by ourselves, the thermodynamic stability, mechanical properties, and detonation performances of structure for hexanitrohexaazaisowurtzitane(CL-20) explosive with five crystallline phase, benzotrifuroxane(BTF) crystal explosive and CL-20/BTF cocrystal explosive were studied. Results show that the electrostatic attraction effect of weak hydrogen bonds makes the intermolecular binding energy of CL-20/BTF cocrystal increase by 39% compared with that of hydrogen-free BTF crystal, which improves thermodynamic stability of cocrystal structure and significantly changes its mechanical properties, such as bulk modulus and sound speed etc. Although the BTF/CL-20 cocrystal and pure BTF crystal have the similar density, but due to the oxygen balance coefficient of the cocrystal has been optimized, so its detonation velocity and detonation pressure are improved by about 11% and 5%, respectively. Compared with the β-CL-20 crystal, the density and oxygen balance of the cocrystal are decreased, the detonation pressure and detonation velocity relatively decrease by about 15% and 6%, respectively. Design of a new type of insensitive cocrystal explosive should avoid the molecule with extremely weak strength covalent bonds and structure with characteristic peaks of high density vibration spectrum, thermodynamic stability effect of hydrogen bond on the molecular space packing should be effectively used, and the hydrogen element content should be moderately controlled to protect the high energy density of explosives.

    参考文献
    相似文献
    引证文献
文章指标
  • PDF下载次数:
  • HTML阅读次数:
  • 摘要点击次数:
  • 引用次数:
引用本文

张蕾,赵艳红,姜胜利,等. CL-20及其共晶炸药热力学稳定性与爆轰性能的理论研究[J].含能材料, 2018, 26(6):464-470. DOI:10.11943/j. issn.1006-9941.2018.06.001.
ZHANG Lei, ZHAO Yan-hong, JIANG Sheng-li, et al. Theoretical Study on Thermodynamic Stability and Detonation Performance of CL-20 and Its Cocrystal[J]. Chinese Journal of Energetic Materials, 2018, 26(6):464-470. DOI:10.11943/j. issn.1006-9941.2018.06.001.

复制
历史
  • 收稿日期: 2017-09-25
  • 最后修改日期: 2018-01-22
  • 录用日期:
  • 在线发布日期: 2018-06-20
  • 出版日期: 2018-06-25