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Site Preference of Refractory Elements in Ni-Based Single-Crystal Superalloys Alloying with Ru: From First Principles

机译:基于Ni的单晶超合金合金化的耐火元件的耐火元素的偏好:来自第一个原理

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A first principles calculation method was used to investigate the site preference of Ruthenium (Ru) at the γ/γ′ interface in Ni-based single-crystal superalloys. The calculation results show that the addition of Ru can decrease the total energy and the binding energy of γ/γ′ interface, which may result in an improved microstructure stability of Ni-based single-crystal superalloys. Moreover, by calculation, it is also found that Ru can stabilize both γ and γ′ phases and have a preference for Ni site at the coherent γ/γ′ interface. When Ru substitutes the central Ni at the γ/γ′ interface, a reverse partitioning of W, Re and Cr occurs; while the partitioning behavior of Mo is not affected. The influence of Ru on the partitioning behavior of W, Re and Cr in γ′-Ni_3Al was studied by Dmol3 calculation as well. The calculation results show that W, Re and Cr have a preference for Ni site in γ′- Ni_3Al with Ru alloying. When Ru substitutes the central Ni atom, the site preference of W, Re and Cr varies accordingly. Furthermore, electronic structure analysis of γ/γ′ interface and γ′-Ni_3Al in terms of Mulliken population and partial density of states (PDOS) was performed to understand the alloying mechanism of Ru in Ni-based single-crystal superalloys. The results show that the strengthening effect of Ru alloying is mainly due to the reduction in binding energy of Ru as well as a p-orbital hybridization between Ru and the host atoms.
机译:第一种原理计算方法用于研究基于Ni的单晶超合金中γ/γ'界面的钌(Ru)的位点偏好。计算结果表明,加入钌的可降低的总能量和的γ/γ'的界面的结合能,这可能导致在Ni基单晶超合金的改进的微观结构稳定性。此外,通过计算,还发现Ru可以稳定γ和γ'阶段,并且在相干γ/γ'界面处具有对Ni位点的偏好。当Ru代替γ/γ'界面处的中央NI时,发生W,Re和Cr的反向分隔;虽然MO的​​分区行为不受影响。通过DMOL3计算研究了ru对W,Re和Cr的分配行为的影响。计算结果表明,W,Re和Cr在用Ru合金化的γ'-ni_3Al中偏好Ni位点。当Ru代替中央Ni原子时,W,Re和Cr的位点偏好相应地变化。此外,电子结构分析γ/γ'的界面和γ'-Ni_3Al在Mulliken电荷和的状态(PDOS)局部密度方面进行了解的Ru在Ni基单晶超合金的合金化机制。结果表明,Ru合金化的强化效果主要是由于Ru的结合能量和Ru和宿主原子之间的p-轨道杂交。

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