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首页> 外文期刊>Physical Review, B. Condensed Matter >Ab initio calculations of defects in Fe and dilute Fe-Cu alloys - art. no. 024103
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Ab initio calculations of defects in Fe and dilute Fe-Cu alloys - art. no. 024103

机译:从头算计算铁和稀铁铜合金中的缺陷-Art。没有。 024103

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摘要

Point defects in Fe and dilute FeCu alloys are, investigated by ab initio calculations based on density functional theory. The relaxed vacancy and interstitial and substitutional Cu atom formation energies are determined as well as some migration energies. The binding energies of various Cu containing defects believed to play an important role in the embrittlement of pressure vessel steels under radiation are calculated and discussed. The results are consistent with a Cu transport via a vacancy mechanism. The introduction of a Cu atom decreases the energy difference between the [110] dumbbell and the [111] dumbbell configurations, and should make the dumbbell rotation motion easier. The ab initio results are compared to the figures obtained with empirical interatomic potentials. The convergence of the results with the simulated system size is examined. [References: 74]
机译:通过基于密度泛函理论的从头算计算,研究了Fe和稀FeCu合金中的点缺陷。确定了弛豫的空位,间隙和取代的Cu原子形成能以及一些迁移能。计算和讨论了在辐射下压力容器钢的脆化中起重要作用的各种含Cu缺陷的结合能。结果与通过空位机制的Cu传输一致。引入铜原子可减小[110]哑铃和[111]哑铃构型之间的能量差,并使哑铃旋转运动更容易。从头算结果与通过经验原子间势获得的数字进行了比较。检查结果与模拟系统大小的收敛性。 [参考:74]

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