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铝镁硼合金燃料在三种动力系统中的理论性能分析

霍东兴 宗廷军 杨玉新 黄礼铿

固体火箭技术2026,Vol.49Issue(3):357-362,6.
固体火箭技术2026,Vol.49Issue(3):357-362,6.DOI:10.7673/j.issn.1006-2793.2026.03.003

铝镁硼合金燃料在三种动力系统中的理论性能分析

Theoretical performance analysis of Al-Mg-B alloy fuels in three propulsion systems

霍东兴 1宗廷军 2杨玉新 1黄礼铿1

作者信息

  • 1. 西安航天动力技术研究所,固体推进技术全国重点实验室,西安 710025
  • 2. 航天动力技术研究院,西安 710025
  • 折叠

摘要

Abstract

Metal fuels feature high energy density and excellent environmental adaptability.However,aluminum,magnesium,and boron exhibits great discrepancies in their energy performance,combustion behavior and density,these metals are frequently alloyed to achieve superior comprehensive performance.Based on the engineering background of multi-mode cross-medium combined motor,thermodynamic calculation were performed to analyze the theoretical specific impulse of Al-Mg-B alloy fuels under typical design conditions.The fuels were matched to air-breathing ramjets,water-breathing ramjets,and AP-based solid rocket motors(ammonium perchlorate as the oxidizer).The contour maps illustrating the variation of theoretical specific impulse with the mass fractures of the three metallic components were generated and plotted on ternary phase diagrams.The results show that for air-breathing and water-breathing ramjets,boron is the most prominent component affecting theoretical specific impulse,followed by aluminum and then magnesium.Both propulsion systems can use the same alloy fuel.At identical oxidizer-to-fuel ratio,compositional adjustments of Al-Mg-B alloy fuels lead to maximum specific impulse difference of roughly 120 N·s/kg,equivalent to around 6%of the nominal theoretical specific impulse.This research provides a reference for formulation optimization of metal-loaded propellants used in multi-modal cross-media combined motors.

关键词

金属燃料/理论比冲/空气冲压发动机/水冲压发动机/固体火箭发动机/跨介质

Key words

metal fuels/theoretical specific impulse/air-breathing ramjet/water-breathing ramjet/solid rocket motor/cross-medium

分类

航空航天

引用本文复制引用

霍东兴,宗廷军,杨玉新,黄礼铿..铝镁硼合金燃料在三种动力系统中的理论性能分析[J].固体火箭技术,2026,49(3):357-362,6.

基金项目

国家级项目. ()

固体火箭技术

1006-2793

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