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Synergistic effect of proton irradiation and strain on the mechanical properties of polyimide fibers

机译:质子辐照和菌株对聚酰亚胺纤维力学性能的协同作用

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摘要

The damage behaviors of polyimide fiber after 150 keV proton irradiation and the synergistic effect of proton irradiation and strain were investigated. Changes in the mechanical properties, free radicals, element content, and element chemical state of the polyimide fiber before and after 150 keV proton irradiation were investigated. The results showed that the tensile strength and elongation at break of the material decreased significantly after proton irradiation. The synergistic effect of proton irradiation and strain weakened the reduction of mechanical properties caused by single proton irradiation. After proton irradiation and the combination of proton irradiation and strain, pyrolytic carbon free radicals were generated. According to XPS analysis, the proton-irradiated polyimide fiber underwent complex denitrification and deoxygenation reactions, and carbon enrichment appeared on the surface of the material.
机译:研究了150KeV质子辐照后聚酰亚胺纤维的损伤行为及质子辐照和菌株的协同作用。研究了在150keV质子辐射之前和之后的聚酰亚胺纤维的机械性能,自由基,元素含量和元素化学状态的变化。结果表明,质子辐射后,材料断裂的拉伸强度和伸长率显着降低。质子辐照和应变的协同效应削弱了单质子辐射引起的机械性能的降低。经过质子辐照和质子辐射和菌株的组合后,产生了热解碳自由基。根据XPS分析,质子辐照的聚酰亚胺光纤接受了复杂的脱氮和脱氧反应,并且在材料表面上出现了碳富集。

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