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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Predicting Thermal Conductivity Evolution of Polycrystalline Materials Under Irradiation Using Multiscale Approach
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Predicting Thermal Conductivity Evolution of Polycrystalline Materials Under Irradiation Using Multiscale Approach

机译:用多尺度方法预测辐照下多晶材料的热导率演化

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A multiscale methodology was developed to predict the evolution of thermal conductivity of polycrystalline fuel under irradiation. At the mesoscale level, a phase field model was used to predict the evolution of gas bubble micro structure. Generation of gas atoms and vacancies was taken into consideration. Gas bubbles were predicted to form, grow, and coalesce around grain boundary (GB) areas. On the macroscopic scale, a statistical continuum mechanics model was applied to predict the anisotropic thermal conductivity evolution during irradiation. Micro-structures predicted by the phase field model were fed into the statistical continuum mechanics model to predict properties and behavior. A decrease of thermal conductivity during irradiation was demonstrated. The influence of irradiation flux, the exposure time, and the grain micro-structure were investigated. If the initial GB microstructure was isotropic, the thermal conductivity under irradiation would be similarly isotropic. If the initial GB configuration was anisotropic, anisotropy of thermal conductivity would intensify under irradiation as gas bubbles coalesce around GB areas. The prediction of microstructure and property evolution of polycrystalline materials under irradiation by bridging two models in different scales were demonstrated successfully. This approach provides a deep understand ing from a basic scientific viewpoint.
机译:开发了一种多尺度方法来预测多晶燃料在辐射下的热导率演变。在中尺度水平上,使用相场模型来预测气泡微观结构的演变。考虑了气体原子和空位的产生。预计气泡会在晶界(GB)区域附近形成,生长和聚结。在宏观尺度上,统计连续力学模型用于预测辐照过程中各向异性热导率的演变。将由相场模型预测的微结构输入到统计连续力学模型中,以预测属性和行为。结果表明,辐照过程中导热系数降低。研究了辐照通量,曝光时间和晶粒微观结构的影响。如果初始GB微结构是各向同性的,则辐射下的热导率将类似各向同性。如果最初的GB构型是各向异性的,则在GB周围的气泡聚结时,热导率的各向异性会在辐照下加剧。通过桥接两个不同规模的模型,成功地证明了辐照下多晶材料的微观结构和性能演变。这种方法从基本的科学观点提供了深刻的理解。

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