首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Effects of tungsten on thermal desorption of helium from Fe-9Cr-2W ferritic alloy irradiated with low energy helium ions
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Effects of tungsten on thermal desorption of helium from Fe-9Cr-2W ferritic alloy irradiated with low energy helium ions

机译:钨对低能氦离子辐照Fe-9Cr-2W铁素体合金中氦热解吸的影响

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摘要

Thermal desorption of helium gas atoms from Fe-9Cr-2W ferritic alloy which was irradiated with 5 keV He~+ ions has been studied, particularly to extract tungsten effects, by Thermal Desorption Spectroscopy (TDS) at temperatures from room temperature to 1370 K. Three small peaks (peaks I, II, III) and three large peaks (peaks IV, V, VI) appeared, and dependence of these peaks on the irradiation temperature and fluence has been demonstrated. The small peaks I, II and III have been related to the release of helium atoms by shrinkage or glide of different size dislocation loops. The large peaks have been attributed to release of helium gas atoms by migration of different size bubbles to the specimen surface. In comparison with TDS spectra in Fe-9Cr, these large peaks have been found to shift to higher temperatures. The present results suggest that tungsten atoms precipitated on the bubble surface could retard the bubble migration.
机译:已通过热解吸光谱法(TDS)在室温至1370 K的温度下研究了用5 keV He〜+离子辐照的Fe-9Cr-2W铁素体合金中氦气原子的热脱附,特别是提取钨效应。出现了三个小峰(I,II,III峰)和三个大峰(IV,V,VI峰),这些峰对辐照温度和通量的依赖性已得到证实。小峰I,II和III与不同大小的位错环的收缩或滑动引起的氦原子释放有关。较大的峰归因于不同大小的气泡向样品表面迁移所释放的氦气原子。与Fe-9Cr中的TDS光谱相比,已发现这些大的峰移向更高的温度。目前的结果表明,沉积在气泡表面的钨原子可能会延迟气泡的迁移。

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