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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >The effects of loop size on the unfaulting of Frank loops in heavy ion irradiation
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The effects of loop size on the unfaulting of Frank loops in heavy ion irradiation

机译:循环尺寸对弗兰克回路在重离子照射中的效果

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摘要

When stainless steels are exposed to high irradiation dose, a fraction of Frank loops will unfault and transform into perfect loops. After unfaulting, perfect loops can glide and impinge into other loops to form dislocation networks, and dislocation networks will act as sinks for point defects and solute elements. Besides, unfaulting will influence the extent of irradiation hardening as well. Based on previous theories, the size of Frank loops was considered to be a key factor in unfaulting. To better understand the unfaulting process, 316L stainless steel model alloy was irradiated to 5dpa at 350 degrees C, 400 degrees C and 450 degrees C by 3 MeV Ni ions. Method was developed to quantitatively compare the size and density between Frank loops and perfect loops through relrod and weak-beam dark field techniques. Results showed that unfaulting barely occurred at 350 degrees C but was distinct at 400 degrees C and 450 degrees C. The majority of perfect loops were in the size range of 8-16 nm at 400 degrees C and were in the size range of 12-20 nm at 450 degrees C. The existence of a critical loop size for unfaulting was not supported by our results. Moreover, by our results, the energy of Frank loops does not play a decisive role in unfaulting, and the simple approximation of geometric constraint in the rate theory to calculate unfaulting diameter needs to be revisited. Irradiation hardening was also analyzed by nano-indention. It was found that loop unfaulting played an important role in the hardening decrease from 350 degrees C to 450 degrees C. (C) 2019 Elsevier B.V. All rights reserved.
机译:当不锈钢暴露在高辐射剂量上时,弗兰克环的一小部分将展开并转化为完美的环。在脱气后,完美的环路可以滑行并冲击其他环,以形成位错网络,并且位错网络将充当点缺陷和溶质元素的沉积。此外,未引导会影响照射硬化的程度。基于以前的理论,弗兰克循环的尺寸被认为是一个展开的关键因素。为了更好地理解未引导过程,316L不锈钢模型合金在350℃,400℃和450℃下照射到5dPa,达到3meV Ni离子。开发了方法以通过REDROD和弱束暗场技术定量比较弗兰克回路和完美环之间的尺寸和密度。结果表明,在350℃下勉强发生,但在400摄氏度和450℃下不同。大部分完美环在400℃下的大小范围为8-16nm,尺寸范围为12-在450℃下20nm。我们的结果不支持临界环尺寸的临界环尺寸。此外,通过我们的结果,Frank循环的能量在未引导中没有起到决定性作用,并且需要重新审视计算速率理论中的几何限制的简单近似。纳米凝视还分析了辐照硬化。结果发现,循环展开在将350摄氏度降低到450度C.(c)2019年Elsevier B.v.保留所有权利。

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