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Formation and migration of helium bubbles in Fe and Fe-9Cr ferritic alloy

机译:Fe和Fe-9Cr铁素体合金中氦气泡的形成和迁移

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摘要

Formation and migration of helium bubbles in high purity Fe and an Fe-9Cr ferritic alloy have been studied by in situ electron microscopy and scanning transmission electron microscope-electron energy loss spectrometry (STEM-EELS) analysis. The swelling under irradiation with 10 keV He+ ions in the ferritic alloy was retarded in the low fluence region at 400 degreesC and was reduced at 600 degreesC even under heavy irradiation. These results suggest trapping effects of vacancies by Cr and its modulation with helium atoms in the bubble formation. Furthermore, it is found that the mean square of the bubble migration distance in both materials is proportional to time, which is a quantitative evidence of Brownian type motion and yields lower diffusivities of the bubbles in Fe-9Cr than in Fe. The retardation of the bubble mobility in Fe-9Cr should be caused by Cr segregation on the bubble surface which was revealed by STEM-EELS analysis. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 14]
机译:通过原位电子显微镜和扫描透射电子显微镜-电子能量损失谱(STEM-EELS)分析,研究了高纯度Fe和Fe-9Cr铁素体合金中氦气泡的形成和迁移。在10 keV He +离子的照射下,铁素体合金中的溶胀在400℃下的低注量区域中得到抑制,并且即使在强辐射下在600℃下也减小了。这些结果表明,Cr的空位陷阱效应及其在气泡形成过程中对氦原子的调制作用。此外,发现两种材料中气泡迁移距离的均方与时间成正比,这是布朗型运动的定量证据,并且在Fe-9Cr中气泡的扩散率比在Fe中低。 Fe-9Cr中气泡迁移率的降低应归因于STEM-EELS分析表明,气泡在气泡表面偏析。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:14]

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