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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Cluster dynamics modeling of the effect of high dose irradiation and helium on the microstructure of austenitic stainless steels
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Cluster dynamics modeling of the effect of high dose irradiation and helium on the microstructure of austenitic stainless steels

机译:高剂量辐照和氦气对奥氏体不锈钢显微组织影响的聚类动力学建模

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A mean field cluster dynamics model has been developed in order to study the effect of high dose irradiation and helium on the microstructural evolution of metals. In this model, self-interstitial clusters, stacking-fault tetrahedra and helium-vacancy clusters are taken into account, in a configuration well adapted to austenitic stainless steels. For small helium-vacancy cluster sizes, the densities of each small cluster are calculated. However, for large sizes, only the mean number of helium atoms per cluster size is calculated. This aspect allows us to calculate the evolution of the microstructural features up to high irradiation doses in a few minutes. It is shown that the presence of stacking-fault tetrahedra notably reduces cavity sizes below 400 degrees C, but they have little influence on the microstructure above this temperature. The binding energies of vacancies to cavities are calculated using a new method essentially based on ab initio data. It is shown that helium has little effect on the cavity microstructure at 300 degrees C. However, at higher temperatures, even small helium production rates such as those typical of sodium-fast-reactors induce a notable increase in cavity density compared to an irradiation without helium. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了研究高剂量辐照和氦气对金属微观结构演变的影响,已经开发了平均场簇动力学模型。在此模型中,考虑了自填隙团簇,堆垛层错四面体和氦空位团簇,其构型非常适合于奥氏体不锈钢。对于较小的氦空位簇尺寸,计算每个小簇的密度。但是,对于大尺寸,仅计算每簇尺寸的平均氦原子数。这方面使我们能够在几分钟内计算直至高辐照剂量的微观结构特征的演变。结果表明,堆垛层错四面体的存在显着减小了低于400摄氏度的腔体尺寸,但在此温度以上,它们对微观结构的影响很小。空洞与空洞的结合能是使用一种新的方法来计算的,该方法主要基于从头算数据。结果表明,氦气在300摄氏度时对腔体的微观结构影响很小。但是,在较高的温度下,与不使用辐射的情况相比,即使很小的氦气生成速率(如钠速反应器的典型生产率)也会导致腔体密度显着增加。氦。 (C)2015 Elsevier B.V.保留所有权利。

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