首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Microstructural evolution under high flux irradiation of dilute Fe-CuNiMnSi alloys studied by an atomic kinetic Monte Carlo model accounting for both vacancies and self interstitials
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Microstructural evolution under high flux irradiation of dilute Fe-CuNiMnSi alloys studied by an atomic kinetic Monte Carlo model accounting for both vacancies and self interstitials

机译:用原子动力学蒙特卡洛模型研究稀疏Fe-CuNiMnSi合金在高通量辐照下的微观组织演变,该模型考虑了空位和自填隙

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摘要

Under neutron irradiation, a large amount of point defects (vacancies and interstitials) are created. In the irradiated pressure vessel steels, weakly alloyed, these point defects are responsible for the diffusion of the solute atoms, leading to the formation of solute rich precipitates within the matrix. Ab initio calculations based on the density functional theory have been performed to determine the interactions of point defects with solute atoms in dilute FeX alloys (X = Cu, Mn, Ni or Si). For Mn, the results of these calculations lead to think that solute transport in alpha-Fe can very likely take place through an interstitial mechanism as well as via vacancies while the other solutes (Cu, Ni and Si) which establish strong bonds with vacancies diffuse more likely via vacancies only. The database thus created has been used to parameterize an atomic kinetic Monte Carlo model taking into account both vacancies and interstitials. Some results of irradiation damage in dilute Fe-CuNiMnSi alloys obtained with this model will be presented.
机译:在中子辐照下,会产生大量的点缺陷(空位和间隙)。在弱合金化的辐照压力容器钢中,这些点缺陷导致溶质原子的扩散,从而导致在基体中形成富溶质的沉淀。已经执行了基于密度泛函理论的从头计算,以确定稀释FeX合金(X = Cu,Mn,Ni或Si)中点缺陷与溶质原子的相互作用。对于锰,这些计算结果导致认为,α-Fe中的溶质很可能通过间隙机制以及通过空位发生,而其他与空位建立强键的溶质(Cu,Ni和Si)则扩散仅通过空缺更有可能。如此创建的数据库已用于参数化考虑空位和间隙的原子动力学蒙特卡洛模型。将介绍用此模型获得的稀Fe-CuNiMnSi合金中的辐照损伤的一些结果。

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