防务技术2024,Vol.34Issue(4) :134-142.DOI:10.1016/j.dt.2023.11.011

Construction of core@double-shell structured energetic composites with simultaneously enhanced thermal stability and safety performance

Peng Wang Wen Qian Ruolei Zhong Fangfang He Xin Li Jie Chen Li Meng Yinshuang Sun Guansong He
防务技术2024,Vol.34Issue(4) :134-142.DOI:10.1016/j.dt.2023.11.011

Construction of core@double-shell structured energetic composites with simultaneously enhanced thermal stability and safety performance

Peng Wang 1Wen Qian 1Ruolei Zhong 1Fangfang He 2Xin Li 1Jie Chen 1Li Meng 1Yinshuang Sun 1Guansong He1
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作者信息

  • 1. Institute of Chemical Materials,China Academy of Engineering Physics,Mianyang 621900,China
  • 2. State Key Laboratory of Environment-friendly Energy Materials,School of Materials and Chemistry,Southwest University of Science and Technology,Mianyang 621010,China
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Abstract

The poor thermal stability and high sensitivity severely hinder the practical application of hexani-trohexaazaisowurtzitane(CL-20).Herein,a kind of novel core@double-shell CL-20 based energetic composites were fabricated to address the above issues.The coordination complexes which consist of natural polyphenol tannic acid(TA)and FeⅢ were chosen to construct the inner shell,while the graphene sheets were used to build the outer shell.The resulting CL-20/TA-FeⅢ/graphene composites exhibited simultaneously improved thermal stability and safety performance with only 1 wt%double-shell content,which should be ascribed to the intense physical encapsulation effect from inner shell combined with the desensitization effect of carbon nano-materials from outer shell.The phase transition(e to y)temper-ature increased from 173.70 ℃ of pure CL-20 to 191.87 ℃ of CL-20/TA-FeⅢ/graphene composites.Meanwhile,the characteristic drop height(H50)dramatically increased from 14.7 cm of pure CL-20 to 112.8 cm of CL-20/TA-FeⅢ/graphene composites,indicating much superior safety performance after the construction of the double-shell structure.In general,this work has provided an effective and versatile strategy to conquer the thermal stability and safety issues of CL-20 and contributes to the future application of high energy density energetic materials.

Key words

CL-20/Double-shell structure/Thermal stability/Safety performance/Tannic acid/Graphene sheets

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基金项目

国家自然科学基金(22275173)

Open Project of State Key Laboratory of Environmentfriendly Energy Materials(22kfhg10)

出版年

2024
防务技术
中国兵工学会

防务技术

CSTPCD
影响因子:0.358
ISSN:2214-9147
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