Wang Mingxin, Wang Qian, Xiao Yakai, Wang Mingliang, Wang Jianwei, Wang Haowei, Chen Zhansheng
State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University, Shanghai 200240, China.
Shanghai Institute of Satellite Engineering, No. 3666 Yuanjiang Road, Shanghai 201109, China.
Materials (Basel). 2025 May 29;18(11):2558. doi: 10.3390/ma18112558.
As space missions become increasingly complex, protection against high-energy charged particles has emerged as a critical factor for the safe operation of spacecraft. These electrical particles, including protons and electrons, can penetrate spacecraft structures and cause severe damage to internal components. Therefore, this review discusses the characteristics of the high-energy charged particle environment in Earth orbits. Accordingly, various passive shielding materials have been evaluated, highlighting their advantages, disadvantages, and applicability in different orbital environments. Specifically, the importance of optimizing shielding materials and structures to enhance the radiation resistance of spacecraft has been emphasized. Furthermore, advancements in passive shielding materials for high-energy charged particles in Earth orbit over the past few years have been examined. Finally, future research directions have been proposed, including the development of lighter and more efficient shielding materials, the optimization of multi-layer shielding structures, and the integration of passive shielding with other protective technologies.
随着太空任务变得越来越复杂,防范高能带电粒子已成为航天器安全运行的关键因素。这些带电粒子,包括质子和电子,能够穿透航天器结构并对内部组件造成严重损坏。因此,本综述讨论了地球轨道上高能带电粒子环境的特征。相应地,对各种被动屏蔽材料进行了评估,突出了它们的优点、缺点以及在不同轨道环境中的适用性。具体而言,强调了优化屏蔽材料和结构以提高航天器抗辐射能力的重要性。此外,还研究了过去几年地球轨道上高能带电粒子被动屏蔽材料的进展。最后,提出了未来的研究方向,包括开发更轻、更高效的屏蔽材料,优化多层屏蔽结构,以及将被动屏蔽与其他防护技术相结合。