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含能材料的组装及其性能研究进展

刘丹 王浚儒 赵煦 杨志剑

含能材料2024,Vol.32Issue(11):1225-1241,17.
含能材料2024,Vol.32Issue(11):1225-1241,17.DOI:10.11943/CJEM2023269

含能材料的组装及其性能研究进展

Advances of Assembly and Performance of Energetic Materials

刘丹 1王浚儒 1赵煦 1杨志剑1

作者信息

  • 1. 中国工程物理研究院化工材料研究所,四川 绵阳 621900
  • 折叠

摘要

Abstract

The morphology and structure of energetic materials have significant impact on their various properties.In order to im-prove the inherent performance of existing energetic materials and meet the different application requirements of weapon,the as-sembly of energetic materials is an effective technology.Based on the relevant works of domestic and foreign scholars,the cur-rent methods of energetic materials assembly and the effects on performances were summarized from two perspectives:the di-rectly affecting the structure of single-component energetic materials through assembly and regulating their performance,and the assembly components and composite structure of multi-component composite energetic materials synergistically regulating the performance.The enlightenment of other functional materials assembly for energetic material was elaborated.Currently,the as-sembly of single-component energetic materials can achieve new crystal morphology,while multi-component assembly can compensate for the inadequacy of available performance control,and achieve synergistic improvement of energy and safety per-formance.However,the development of energetic material assembly still faces problems such as monotonous assembly meth-ods,difficult process control,unclear assembly mechanisms,and insufficient research on multi-components.Future research may focus on three perspectives:the improvement of crystal assembly theory for energetic materials,the development of meso-scopic characterization techniques,and the exploration of new assembly technologies.

关键词

含能材料/组装/晶体形貌/多组分协同/性能调控

Key words

energetic materials/assembly/crystal morphology/multi-component collaboration/performance tuning

分类

军事科技

引用本文复制引用

刘丹,王浚儒,赵煦,杨志剑..含能材料的组装及其性能研究进展[J].含能材料,2024,32(11):1225-1241,17.

基金项目

国家自然科学基金(22375188) National Natural Science Foundation of China(No.22375188) (22375188)

含能材料

OA北大核心CSTPCD

1006-9941

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