世界科技研究与发展 ›› 2025, Vol. 47 ›› Issue (6): 789-802.doi: 10.16507/j.issn.1006-6055.2025.11.010 cstr: 32308.14.1006-6055.2025.11.010

• 科技前沿与态势 • 上一篇    

美军航空装备与动力新趋势及其对我国的启示

郭永庆 严慧玲 孙露 李茜   

  1. 中国航发四川燃气涡轮研究院
  • 发布日期:2025-12-22

Emerging Trends in U.S. Aviation Equipment and Propulsion Systems and Implications for China

GUO Yongqing YAN Huiling SUN Lu LI Qian   

  1. AECC Sichuan Gas Turbine Establishment
  • Published:2025-12-22

摘要: 本文系统分析了美军新一代航空装备体系及其动力技术的发展现状与趋势,探讨了高超声速打击、下一代空中优势、协同作战飞机、隐身轰炸机B-21、未来垂直起降飞行器等重点项目的技术特征与作战需求。同时深入剖析了支撑这些装备实现跨越式发展的核心动力技术。研究指出,美军正通过新型战略思想转型,牵引航空装备的体系化、智能化、高速化和隐身化特征,同时推动动力技术向多模态、智能化、高能效方向演进。在此基础上,结合我国国情,本文提出应坚持体系化顶层设计、强化动力先行战略、深化军民融合与数字化转型、构建自主可控产业链等启示建议,以期为我国航空工业实现高水平自立自强提供参考。

关键词: 航空装备;航空动力;体系作战;自适应循环发动机;高超声速技术;无人机;智能化

Abstract: This paper presents a systematic analysis of the U.S. military’s next-generation aviation equipment architecture and associated propulsion technologies, examining both current developments and future trajectories. It investigates the technical profiles and mission requirements of key programs including hypersonic strike systems, Next Generation Air Dominance, Collaborative Combat Aircraft, the B-21 Raider stealth bomber, and Future Vertical Lift platforms. The study further conducts a detailed examination of breakthrough propulsion technologies enabling these capabilities. Findings indicate that the U.S. military is employing new strategic concepts to guide the development of integrated, intelligent, high-speed, and low-observable aviation systems, while concurrently advancing propulsion technologies toward multimodality, intelligent operation, and enhanced energy efficiency. Building on these observations and considering China’s national context, this paper recommends adhering to integrated top-level design, reinforcing the strategy of propulsion technology leadership, deepening civil-military integration and digital transformation, and establishing autonomous and secure industrial supply chains. These insights aim to support China’s aviation industry in achieving high-level self-reliance and technological advancement.

Key words: Aviation Systems; Aircraft Propulsion; System-of-systems Warfare; Adaptive Cycle Engine; Hypersonic Technology; Unmanned Aircraft System; Intelligentization