CHINESE JOURNAL OF ENERGETIC MATERIALS
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三氢化铝的制备与应用研究进展
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内蒙合成化工研究所 航天化学能源全国重点实验室, 内蒙古 呼和浩特 010010

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Recent Progresses on Synthesis and Application of Aluminum Trihydride
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National Key Laboratory of Aerospace Chemical Power, Inner Mongolia Research Institute of Synthetic Chemical Industry, Hohhot 010010, China

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    三氢化铝(AlH3)具有含氢量高、燃烧热值高、燃气分子量低等优点,一直被视为复合固体推进剂及炸药等领域理想高能燃料之一。研究系统综述了AlH3的制备方法、稳定化改性及应用研究进展,基于晶型控制、粒径调控、纯度优化等不同维度对比分析不同制备方法优劣特性,归纳总结了AlH3稳定化技术的最新研究动态及含AlH3固体推进剂在体系相容性、燃烧性能等方面的研究现状,探讨了AlH3未来工程化应用面临的挑战,并对AlH3作为高能燃料亟需开展的研究方向进行了展望:重点开展液相合成路径合成参数高通量筛选、转晶多相体系传热精准调控、合成过程安全控制研究,实现高品质AlH3安全放大制备;开展AlH3稳定化多尺度建模和性能预测,推动稳定化工作由“经验试错”向“智能设计”转型;多尺度解析AlH3的湿热稳定性及与推进剂组分相容性,开展适配推进剂材料体系的设计与筛选,依靠材料体系创新解决根源问题。

    Abstract:

    Aluminum trihydride (AlH3) is regarded as one of the ideal high-energy fuels in the fields of composite solid propellants and explosives due to its high hydrogen content, high combustion calorific value, and low molecular weight of combustion gas. The research progress on the preparation methods, stabilization modification and application of AlH3 was systematically reviewed. The advantages and disadvantages of different preparation methods from different dimensions such as crystal form control, particle size regulation and purity optimization were deeply compared and analyzed. The latest research trends in AlH3 stabilization technology and the current research status of solid propellants containing AlH3 in terms of system compatibility and combustion performance were summarized. The challenges faced by the future engineering application of AlH3 and looks forward to the research directions that need to be urgently carried out for AlH3 as a high-energy fuel are as follows: Focusing on high-throughput screening of synthesis parameters in liquid-phase synthesis routes, precise control of heat transfer in multi-phase systems during crystal transformation, and studying on the safety control during the synthesis process to achieve safe large-scale preparation of high-quality AlH3; Conducting multi-scale modeling and performance prediction of AlH3 stabilization to promote the transformation of stabilization work from “trial and error based on experience” to “intelligent design”; Multi-scale analysis of the wet-heat stability of AlH3 and its compatibility with propellant components, conducting the design and screening of propellant material systems that are compatible with AlH3, and relying on material system innovation to solve the root problems.

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引用本文

刘亚君,暴利军,白瑞,等.三氢化铝的制备与应用研究进展[J].含能材料, 2025, 33(8):940-959. DOI:10.11943/CJEM2025147.
LIU Ya-jun, BAO Li-jun, BAI Rui, et al. Recent Progresses on Synthesis and Application of Aluminum Trihydride[J]. Chinese Journal of Energetic Materials, 2025, 33(8):940-959. DOI:10.11943/CJEM2025147.

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历史
  • 收稿日期: 2025-06-12
  • 最后修改日期: 2025-08-26
  • 录用日期: 2025-08-25
  • 在线发布日期: 2025-08-25
  • 出版日期: