CHINESE JOURNAL OF ENERGETIC MATERIALS
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含Al-Li合金混合炸药的安全性和能量输出特性研究
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南京理工大学化学与化工学院

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国家自然科学基金(12402436, 22208272)


Safety and Energy Performance of Composite Explosives Containing Al-Li Alloy
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School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology

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    摘要:

    提高Al基金属燃料的利用率并增强混合炸药的能量输出性能是目前含能材料领域的重要研究方向。为探究Al-Li合金对混合炸药安全性及能量输出特性的影响,采用兰利D-最优化法、爆热测试及水下爆炸实验系统开展分别含Al、Al-2.3Li和Al-5Li的3种混合炸药(EAlEAl-2.3LiEAl-5Li)的机械感度、爆热及水下爆炸性能研究。结果表明,在50%发火概率条件下,与EAl相比,EAl-2.3LiEAl-5Li炸药的撞击能量分别降低33.02%和42.36%,摩擦载荷分别降低19.73%和32.88%,可见Al-Li合金的加入会提高炸药的机械感度,且随Li含量增加,炸药对机械刺激的敏感性进一步增强。在爆热方面,Al-Li合金能够显著提高炸药爆热,其中EAl-2.3Li的爆热最高,达到8.712 MJ·kg-1,较EAl提高约6.3%。在水下爆炸方面,EAl-2.3LiEAl-5Li的总能量分别达到7.177 MJ·kg-1和6.954 MJ·kg-1,较EAl分别提高8.33%和4.97%,表明Al-Li合金的加入能够增强炸药的水下释能能力。综合分析表明,适量Li的引入能够有效提高炸药的综合能量输出性能,但Li含量存在最优范围,EAl-2.3Li在安全性与能量输出特性之间表现出更佳的综合性能。揭示了Al-Li合金中Li含量对混合炸药安全性能与能量释放特性的调控规律,为高能金属炸药中活性金属燃料的优化设计与工程应用提供理论依据和实验参考。

    Abstract:

    Improving the utilization efficiency of Al-based metallic fuels and enhancing the energy output performance of composite explosives constitute a crucial research direction in the field of energetic materials. To explore the effects of Al-Li alloys on the safety and energy output characteristics of composite explosives, systematic investigations on the mechanical sensitivity, explosion heat, and underwater explosion performance of three composite explosives (EAlEAl-2.3Li, and EAl-5Li) containing pure Al, Al-2.3Li alloy, and Al-5Li alloy were carried out via the Langley D-optimization method, explosion heat tests, and underwater explosion experiments.The results show that under the condition of 50% ignition probability, compared with the EAl explosive, the impact energies of EAl-2.3Li and EAl-5Li are reduced by 33.02% and 42.36%, and their friction loads are decreased by 19.73% and 32.88%, respectively. The addition of Al-Li alloys increases the mechanical sensitivity of composite explosives, and the sensitivity to mechanical stimuli is further aggravated with the increase of Li content. In terms of explosion heat, Al-Li alloys can significantly improve the explosion heat of composite explosives. Among all formulations, EAl-2.3Li exhibits the maximum explosion heat of 8.712 MJ·kg-1, which is approximately 6.3% higher than that of EAl. In the underwater explosion tests, the total energy of EAl-2.3Li and EAl-5Li reaches 7.177 MJ·kg-1 and 6.954 MJ·kg-1, increased by 8.33% and 4.97% compared with EAl, which indicates that the incorporation of Al-Li alloys can effectively enhance the underwater energy release capacity of explosives.Comprehensive analysis demonstrates that the introduction of an appropriate amount of Li can effectively improve the comprehensive energy output performance of explosives, whereas the Li content has an optimal range. The EAl-2.3Li explosive achieves an excellent balance between safety and energy output performance, presenting superior comprehensive properties. This study reveals the regulation law of Li content in Al-Li alloys on the safety performance and energy release characteristics of composite explosives, and provides theoretical basis and experimental references for the optimal design and engineering application of reactive metal fuels in high-energy metal-based explosives.

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引用本文

张宇,夏语,程志鹏,等.含Al-Li合金混合炸药的安全性和能量输出特性研究[J].含能材料, 2026, 34(7):777-785. DOI:10.11943/CJEM2026132.
ZHANG Yu, XIA Yu, CHENG Zhipeng, et al. Safety and Energy Performance of Composite Explosives Containing Al-Li Alloy[J]. Chinese Journal of Energetic Materials, 2026, 34(7):777-785. DOI:10.11943/CJEM2026132.

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  • 收稿日期: 2026-06-02
  • 最后修改日期: 2026-07-07
  • 录用日期: 2026-06-26
  • 在线发布日期: 2026-07-06
  • 出版日期: