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Electronic irradiation ageing in the vicinity of glass transition temperature for PEEK space applications

机译:电子照射老化在玻璃过渡温度附近进行PEEK空间应用

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摘要

Satellites in space environment are subject to several environmental constraints. In the case of polymer materials, electronic irradiations can induce premature ageing which can lead to a shorter lifetime for the satellite. Moreover, synergistic effects between temperature and irradiation can occur and enhance this ageing. A previous study showed that PolyEtherEtherKetone (PEEK), a newly used polymer in space industry, presents great radiation tolerance properties. Nonetheless, it was necessary to investigate the influence of temperature factor on its ageing. This study focuses on the comparison of PEEK samples aged at two temperatures: room temperature and 165°C Irradiations have been performed under high-vacuum and with a mono-energetic electron beam. They led to doses representative of 15 years of exposure to geostationary electronic environment. The comparison between both types of samples showed that increase in irradiation temperature have a significant impact on ageing kinetics. In particular, analyses revealed a higher cross-linking density for 165°C irradiated samples which has been associated with a higher recombination rate of radicals due to amorphous phase mobility increase above glass transition.
机译:空间环境中的卫星受到几种环境限制。在聚合物材料的情况下,电子照射可以诱导早熟的老化,这可能导致卫星的寿命较短。此外,可以出现温度和辐射之间的协同效应并增强这种老化。先前的研究表明,聚醚酮(PEEK)是空间工业中新使用的聚合物,呈现出极大的辐射耐受性。尽管如此,有必要研究温度因数对其衰老的影响。该研究侧重于PEEK样品在两个温度下的比较:室温和165°C的照射已经在高真空和单能级电子束下进行。它们导致剂量为15年的地球静止电子环境接触。两种类型样品之间的比较显示,辐射温度的增加对老化动力学产生显着影响。特别地,分析显示出165℃的辐照密度较高,其辐照样品与由于非晶相迁移率增加到高于玻璃化转变而具有更高的自由基的重组率。

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