论文标题
BCC HFNBTIVZR高熵合金中的间质碳来自第一原理
Interstitial Carbon in bcc HfNbTiVZr high entropy alloy from first principles
论文作者
论文摘要
高熵合金的显着机械性能可以通过间隙合金进一步改善。在这项工作中,我们采用密度功能理论计算来研究BCC HFNBTIVZR中四面体和八面体位点中稀释碳间质原子的溶液能。我们的结果表明,四面体部位中的碳间质不稳定,而首选的八面体位点在溶液的能量中呈较大的扩散。包含碳间质的人会引起具有远距离影响的大型结构弛豫。通过进行局部簇扩展,包括其与碳原子Voronoi的相关性,研究了局部化学环境对溶液能量的影响。但是,在溶液能量学中的传播无法通过局部环境分析来解释,只指出该合金中间质碳的复杂,长期影响。
The remarkable mechanical properties of high entropy alloys can be further improved by interstitial alloying. In this work we employ density functional theory calculations to study the solution energies of dilute carbon interstitial atoms in tetrahedral and octahedral sites in bcc HfNbTiVZr. Our results indicate that carbon interstitials in tetrahedral sites are unstable, and the preferred octahedral sites present a large spread in the energy of solution. The inclusion of carbon interstitials induces large structural relaxations with long-range effects. The effect of local chemical environment on the energy of solution is investigated by performing a local cluster expansion including studies of its correlation with the carbon atomic Voronoi volume. However, the spread in solution energetics can not be explained with a local environment analysis only pointing towards a complex, long-range influence of interstitial carbon in this alloy.