中国空间科学技术 ›› 2025, Vol. 45 ›› Issue (3): 56-66.doi: 10.16708/j.cnki.1000.758X.2025.0038

• 综述 • 上一篇    下一篇

核热火箭堆芯组件电加热测试技术研究进展

李晓亮,邵明雪,蔡开元,李小多,吴逊亮,丰松江*   

  1. 航天工程大学,北京101416
  • 收稿日期:2024-03-18 修回日期:2024-07-21 录用日期:2024-08-16 发布日期:2025-05-15 出版日期:2025-06-01

Progress in electric heating test technology for nuclear thermal rockets core assembly

LI Xiaoliang, SHAO Mingxue, CAI Kaiyuan, LI Xiaoduo, WU Xunliang , FENG Songjiang*   

  1. Space Engineering University, Beijing101416, China
  • Received:2024-03-18 Revision received:2024-07-21 Accepted:2024-08-16 Online:2025-05-15 Published:2025-06-01

摘要: 核热推进作为空间核动力的关键方向,近年来被不断发展。堆芯组件作为核热火箭的重要组成部分,对其在较高温度下的耐热性、氢兼容性以及材料结构的稳定性进行检测,对核热火箭发动机的研制非常重要。对比国外开展的一些先进的电加热测试技术,分别介绍了地面感应加热、电弧加热、射频加热以及直流电直接加热四种方式设计的用于开发和测试堆芯组件的地面模拟设施。分析了不同设备开展地面模拟实验的一些具体的工作参数,对各装置的优缺点进行对比分析。指出开展地面模拟实验可以在较低成本下了解样本材料和组件的热稳定性、结构强度、抗热氢腐蚀能力和抗辐照能力方面的优缺点,进而筛选最佳材料。地面模拟实验设施的不断发展和改进将使核热火箭堆芯组件的开发更加准确可靠,这对推动中国核热火箭的研制,进而实现空间核动力推进有重要意义。

关键词: 核热推进, 地面模拟, 电加热, 堆芯组件, 热性能

Abstract: Nuclear-thermal propulsion has been developed in recent years as a key direction for nuclear power in space. The core assembly,as an important part of the nuclear thermal rocket, is very important for the development of the nuclear thermal rocket motor by testing its heat resistance, hydrogen compatibility, and stability of the material structure at higher temperatures. In comparison with some advanced electric heating test technologies carried out abroad, four types of ground simulation facilities designed for the development and testing of core assemblies, namely, ground induction heating, electric arc heating, radio frequency heating, and direct current direct heating, are introduced. Some specific working parameters of different devices for ground simulation experiments are analyzed, and the advantages and disadvantages of each device are compared and analyzed. It is pointed out that ground-based simulations can be carried out to understand the strengths and weaknesses of sample materials and components in terms of thermal stability, structural strength, resistance to hydrothermal corrosion, and irradiation at low cost, and then to select the best materials. The continuous development and improvement of the ground simulation experiment facility will make the development of nuclear thermal rocket core components more accurate and reliable, which is of great significance in promoting the development of China's nuclear thermal rockets and thus realizing nuclear power propulsion in space.

Key words: nuclear thermal propulsion, ground-based simulations, electrical heating, core assembly, thermal performance