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Nb掺杂对Ni基合金中γ′→γ″相转变影响的第一原理研究
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沈阳工业大学,沈阳工业大学,沈阳工业大学


First-Principle Investigation on Nb Doping Promoting γ′ → γ″ Phase Transformation in Ni-Based Superalloy
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Shenyang University of Technology,Shenyang University of Technology,Shenyang University of Technology

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    摘要:

    通过第一原理计算Nb掺杂对γ′-Ni3Al和γ″-Ni3Nb两相形成热、结合能及态密度的影响,研究了Nb掺杂量γ′-Ni3Al和γ″-Ni3Nb两相的合金化行为。结果表明,在γ′-Ni3Al和γ″-Ni3Nb两相共存的熔体中,在Nb掺杂量小于15.625(at%)范围内,与γ″-Ni3Nb相比,γ′-Ni3Al相有较好的稳定性;而Nb掺杂量大于18.75(at%)时,γ″-Ni3Nb相有更大的稳定性。其中,在Nb掺杂15.452--16.34 (at%)范围内,γ′-Ni3Al和γ″-Ni3Nb两相有相近的晶格常数,是使其发生γ′-Ni3Al → γ″-Ni3Nb共格相转变的必要条件。Nb掺杂量大于18.75(at%)后,γ′-Ni3Al和γ″-Ni3Nb两相费米能级处态密度的差值明显增大,γ″-Ni3Nb相稳定性增强。此外,在γ″-Ni3Nb相长大的同时,可发生γ′-Ni3Al相的分解而消失。

    Abstract:

    By means of first-principles calculating the formation enthalpy, binding energy and states density of γ′-Ni3Al and γ″-Ni3Nb phases, the influence of Nb doping on alloying behaviors of γ′-Ni3Al and γ″-Ni3Nb phases is investigated. Results showed that, in the molten of the γ′-Ni3Al and γ″-Ni3Nb phases, compared to γ″-Ni3Nb phase, the γ′-Ni3Al phase has a lower stability in the range of Nb doping quantity being less than 15.625(at%), but the γ″-Ni3Nb phase has a bigger stability in the range of the Nb doping quantity being more than 18.75(at%). Wherein, the γ′-Ni3Al and γ″-Ni3Nb phases have the close lattice parameters in the range of 15.452-16.34 (at%) of Nb doping, which is thought to be an essential condition of promoting γ′-Ni3Al → γ″-Ni3Nb coherent phases transformation. The difference of the states density in the Femi-level location increases obvious as the quantity of Nb doping is more than 18.75(at%), which enhances the stability of γ″-Ni3Nb phase. Moreover, the decomposition of the γ′-Ni3Al phase occurs at the same time the γ″-Ni3Nb phase growing, which may result in the disappearing of γ′-Ni3Al phase.

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孙昊昉,田素贵,金莹. Nb掺杂对Ni基合金中γ′→γ″相转变影响的第一原理研究[J].稀有金属材料与工程,2017,46(2):449~455.[Sun Haofang, Tian Sugui, Jin Ying. First-Principle Investigation on Nb Doping Promoting γ′ → γ″ Phase Transformation in Ni-Based Superalloy[J]. Rare Metal Materials and Engineering,2017,46(2):449~455.]
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  • 收稿日期:2016-01-28
  • 最后修改日期:2016-03-21
  • 录用日期:2016-06-12
  • 在线发布日期: 2017-04-10