首页> 外文期刊>The European physical journal, B. Condensed matter physics >Radiation-induced segregation in W-Re: from kinetic Monte Carlo simulations to atom probe tomography experiments
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Radiation-induced segregation in W-Re: from kinetic Monte Carlo simulations to atom probe tomography experiments

机译:W-RE中的辐射诱导的偏析:从动力学蒙特卡罗模拟到原子探测断层摄影实验

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摘要

A viable fusion power station is reliant on the development of plasma facing materials that can withstand the combined effects of high temperature operation and high neutron doses. In this study we focus on W, the most promising candidate material. Re is the primary transmutation product and has been shown to induce embrittlement through cluster formation and precipitation below its predicted solubility limit in W. We investigate the mechanism behind this using a kinetic Monte Carlo model, implemented into Stochastic Parallel PARticle Kinetic Simulator (SPPARKS) code and parameterised with a pairwise energy model for both interstitial and vacancy type defects. By introducing point defect sinks into our simulation cell, we observe the formation of Re rich clusters which have a concentration similar to that observed in ion irradiation experiments. We also compliment our computational work with atom probe tomography (APT) of ion implanted, model W-Re alloys. The segregation of Re to grain boundaries is observed in both our APT and KMC simulations.
机译:一种可行的融合电站依赖于可承受高温操作和高中中子剂量的组合效果的等离子体面向等离子体面板的开发。在这项研究中,我们专注于W,是最有前途的候选材料。 Re是主要嬗变产品,已被证明通过在W的预测溶解度极限下通过簇形成和降水来诱导脆化。我们使用动力学蒙特卡罗模型研究了这种机制,实现成随机平行粒子动力学模拟器(SPPARK)代码并使用配对能量模型进行参数,适用于间隙和空位型缺陷。通过将点缺陷沉入到我们的仿真细胞中,我们观察到具有与在离子照射实验中观察到的浓度的Re富含簇的形成。我们还赞扬我们的计算工作与原子探测断层扫描(APT)的离子植入,型号为W重新合金。在我们的APT和KMC模拟中观察到RE晶界的分离。

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