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THE IMPACT OF MOBILE POINT DEFECT CLUSTERS IN A KINETIC MODEL OF PRESSURE VESSEL EMBRITTLEMENT

机译:移动点缺陷簇在压力容器脆化动力学模型中的影响

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The results of recent molecular dynamics simulations of displacement cascades in iron indicate that small interstitial clusters may have a very low activation energy for migration, and that their migration is 1-dimensional, rather than 3-dimensional. The mobility of these clusters can have a significant impact on the predictions of radiation damage models, particularly at the relatively low temperatures typical of commercial, light water reactor pressure vessels (RPV) and other out-of-core components. A previously-developed kinetic model used to investigate RPV embrittlement has been modified to permit an evaluation of the mobile interstitial clusters. Sink strengths appropriate to both 1- and 3-dimensional motion of the clusters were evaluated. High cluster mobility leads to a reduction in the amount of predicted embrittlement due to interstitial clusters since they are lost to sinks rather than building up in the microstructure. The sensitivity of the predictions to displacement rate also increases. The magnitude of this effect is somewhat reduced if the migration is 1-dimensional since the corresponding sink strengths are lower than those for 3-dimensional diffusion. The cluster mobility can also affect the evolution of copper-rich precipitates in the model since the radiation-enhanced diffusion coefficient increases due to the lower interstitial cluster sink strength. The overall impact of the modifications to the model is discussed in terms of the major irradiation variables and material parameter uncertainties.
机译:最近铁的分子动力学模拟铁中的级联级联的结果表明,小型间隙簇可能具有非常低的激活能量来迁移,并且它们的迁移是1维,而不是三维。这些簇的移动性可能对辐射损伤模型的预测产生重大影响,特别是在商业,轻水反应器压力容器(RPV)和其他外核部件的典型温度相对较低的温度下。已经修改了用于调查RPV脆化的先前开发的动力学模型,以允许评估移动间质群。评估适用于簇的1-和三维运动的沉降强度。高集群流动性导致由于间隙簇引起的预测脆性量的减少,因为它们丢失以沉入而不是在微观结构中构建。预测对位移率的敏感性也增加了。如果迁移是1维的,则这种效果的幅度略微降低,因为相应的沉降强度低于3维扩散。由于辐射增强的扩散系数由于较低的间隙簇沉积强度增加,聚类迁移率也可以影响模型中富含铜沉淀物的演变。根据主要的辐照变量和材料参数不确定性,讨论了对模型的修改的总体影响。

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