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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Micromechanical analysis of the effect of void swelling on elastic and electric properties of irradiated steel
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Micromechanical analysis of the effect of void swelling on elastic and electric properties of irradiated steel

机译:空隙膨胀对辐照钢的弹性和电性能影响的微力学分析

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摘要

The paper focuses on changes in mechanical and electrical properties of austenitic steel due to radiation swelling. Various micromechanical models for the electrical conductivity and elastic moduli are assessed based on the experimental data available in literature. We show that, in the considered case, the effective field method provides the best prediction for both elastic and conductive properties. Comparing the two sets of experimental data, the cross-property connections that relate changes in the elastic and electrical conductivity of a material due to radiation swelling has been verified. It is shown that analytical crossproperty connection is in a good agreement with experimental data and can be used to estimate changes in electrical resistivity of a material from the changes in Young's modulus or vice versa.
机译:本文重点研究由于辐射膨胀而引起的奥氏体钢的机械和电气性能的变化。基于文献中可获得的实验数据,评估了各种用于电导率和弹性模量的微机械模型。我们表明,在考虑的情况下,有效场法可同时提供弹性和导电性能的最佳预测。比较两组实验数据,已验证了跨属性连接,该属性关联了由于辐射膨胀而导致的材料的弹性和电导率变化。结果表明,交叉特性分析与实验数据吻合良好,可用于根据杨氏模量的变化估算材料的电阻率变化,反之亦然。

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