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生物炭/聚醚醚酮复合材料辐射屏蔽研究

Research on BC/PEEK Composite Material Radiation Shielding.

作者信息

Li Hongxia, Guo Hongping, Tu Hui, Chen Xiao, Zeng Xianghua

机构信息

College of Electrical, Energy and Power Engineering, Yangzhou University, Yangzhou 225009, China.

Innovation Center for Radiation Application, Beijing 102413, China.

出版信息

Polymers (Basel). 2024 Oct 15;16(20):2902. doi: 10.3390/polym16202902.

Abstract

There are various types of charged particles in the space environment, which can cause different types of radiation damage to materials and devices, leading to on-orbit failures and even accidents for spacecraft. Developing lightweight and efficient radiation-shielding materials is an effective approach to improving the inherent protection of spacecraft. The protective performance of different materials against proton and electron spectra in the Earth's radiation belts is evaluated using a Geant4 simulation. Based on the simulation results, suitable hardening components were selected to design composite materials, and BC/PEEK composites with different BC contents were successfully prepared. The experimental results demonstrate that the simulated and experimental results for the electron, proton and neutron shielding performance of the BC/PEEK composites are consistent. These composites exhibit excellent radiation shielding capabilities against electrons, protons and neutrons, and the radiation protection performance improves with increasing BC content in the BC/PEEK composite materials.

摘要

空间环境中存在各种带电粒子,它们会对材料和设备造成不同类型的辐射损伤,导致航天器在轨失效甚至事故。开发轻质高效的辐射屏蔽材料是提高航天器固有防护能力的有效途径。利用Geant4模拟评估了不同材料对地球辐射带中质子和电子能谱的防护性能。基于模拟结果,选择合适的强化组分来设计复合材料,并成功制备了不同BC含量的BC/PEEK复合材料。实验结果表明,BC/PEEK复合材料对电子、质子和中子的屏蔽性能的模拟结果与实验结果一致。这些复合材料对电子、质子和中子表现出优异的辐射屏蔽能力,并且随着BC/PEEK复合材料中BC含量的增加,辐射防护性能提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/427d/11510741/759acbde08b4/polymers-16-02902-g001.jpg

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