首页 / 资料库 / 文献详情

Damage Effect of Space Proton Irradiation with the Low Energy of 50~200 keV on Methyl Silicone Rubber

Li-xinZhangChengminWANGShiyuHE

2004Acta Scientiarum Naturalium Universitatis SunyatseniMaterials Science被引 2

出版方页面 →

摘要

The damage effects and mechanisms of proton irradiation with 50~200 keV energy to space-grade methyl silicone rubber was performed using a ground-based simulator for space irradiation environment. The changes in surface morphology, mechanical properties, cross-linking density, glass temperature, infrared attenuated total reflection spectrum, mass spectrum and pyrolysis gas chromatography-mass spectrum indicated that, under lower energy, the proton irradiation would induce cross-linking effect, resulting in an increase in tensile strengths and hardness of the methyl silicon rubber. However, after the irradiation of protons for more than 150 keV, the irradiation induced degradation,which decreased the tensile strengths and hardness, became a dominant effect. A macromolecular network destruction model for the silicone rubber radiated with the protons was proposed.

引用本文(GB/T 7714)

Li-xinZhang, ChengminWANG, ShiyuHE. Damage Effect of Space Proton Irradiation with the Low Energy of 50~200 keV on Methyl Silicone Rubber[J]. Acta Scientiarum Naturalium Universitatis Sunyatseni, 2004.

引文网络

参考文献与被引分析加载中…

本站仅收录题录与摘要供学习参考,全文版权归属出版方;如有侵权请联系我们删除。