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Simulations of irradiated-enhanced segregation and phase separation in Fe-Cu-Mn alloys

机译:Fe-Cu-Mn合金中辐照增强偏析和相分离的模拟

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摘要

For reactor pressure vessel steels, the addition of Cu, Mn, and Ni has a positive effect on their. mechanical, corrosion and radiation resistance properties. However, experiments show that radiation-enhanced segregation and/or phase separation is one of the. important material property degradation processes. In this work, we develop a model integrating rate theory and phase-field approaches to investigate the effect of irradiation on solute segregation and phase separation. The rate theory is. used to describe the accumulation and clustering of radiation defects, while the phase-field approach describes the effect of radiation defects on phase stability and microstructure evolution. The Fe-Cu-Mn ternary alloy is taken as a model system. The free energies used in the phase-field model are from CALPHAD. Spatial dependent radiation damage from atomistic simulations is introduced into the simulation cell for a given radiation dose rate. The radiation effect on segregation and phase separation is. taken into account through the defect concentration dependence of solute mobility. Using. the model, the effect of temperature and radiation rates on Cu and Mn segregation and Cu-rich phase nucleation were. systematically investigated. The segregation and nucleation mechanisms were analyzed. The simulations demonstrate that the nucleus of Cu precipitates has a core-shell composition profile, i.e.. Cu-rich at the. center and Mn-rich at the interface, in good agreement with. theoretical calculations as well as experimental observations.
机译:对于反应器压力容器钢,加入Cu,Mn和Ni对其具有阳性作用。机械,腐蚀和辐射性能。然而,实验表明,辐射增强的偏析和/或相分离是其中一种。重要的材料性质降解过程。在这项工作中,我们开发了一种模型集成率理论和阶段方法,以研究辐照对溶质隔离和相分离的影响。速率理论是。用于描述辐射缺陷的累积和聚类,而相域方法描述了辐射缺陷对相位稳定性和微观结构演化的影响。 Fe-Cu-Mn三元合金被用作模型系统。相场模型中使用的自由能来自Calphad。用于给定的辐射剂量率的模拟型模拟的空间依赖性辐射损伤。对偏析和相分离的辐射效应是。通过溶质流动性的缺陷浓度依赖性考虑。使用。该模型,温度和辐射率对Cu和Mn偏析和富含Cu的相成核的影响是。系统地调查。分析分离和成核机制。该模拟表明Cu沉淀物的核具有核 - 壳组合物型,即富含Cu ..中心和富裕的界面,符合良好的协议。理论计算以及实验观察。

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