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TD3合金氧化性能的第一性原理研究
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作者单位:

1.太原理工大学机械与运载工程学院;2.太原理工大学物理与光电工程学院

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通讯作者:

中图分类号:

TG146.2+3

基金项目:

山西省自然科学基金资助(项目号201801D121098)、山西省青年自然科学(201801D221339)


First-principles study on oxidation performance of TD3 alloy
Author:
Affiliation:

Taiyuan University of Technology

Fund Project:

Supported by the Natural Science Foundation of Shanxi Province (Project No. 201801D121098), Youth Natural Science of Shanxi Province (201801D221339)

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    摘要:

    采用第一性原理计算方法研究了TD3合金中O相、B2相和α2相的合金原子空位形成能及氧原子在三相中的能量稳定性和扩散行为。计算结果表明:三相中的Al原子空位形成能均低于Ti和Nb,有利于TD3合金表面生成α-Al2O3占主导地位的氧化膜。氧原子在O相、B2相和α2相的八面体间隙位置的间隙能低于四面体间隙位置处,且在富钛八面体间隙位置的间隙能最低,最低氧原子间隙能分别为-5.0815eV、-4.9425eV和-5.9315eV。氧原子在O相、B2相和α2相沿最佳扩散路径扩散需要跨越的势垒分别为0.812eV、1.913eV和1.164eV。

    Abstract:

    The first-principles calculation method is used to study the alloy atom vacancy formation energies of O phase, B2 phase and α2 phase in TD3 alloy, and the energy stability and diffusion behavior of oxygen atoms in the three phases. The calculation results show that the vacancy formation energies of Al atoms in the three phases are all lower than those of Ti and Nb, which is beneficial to the formation of α-Al2O3 dominated oxide film on the surface of TD3 alloy. The interstitial energy of oxygen atoms in the octahedral interstitial positions of O phase, B2 phase and α2 phase is lower than that of tetrahedral interstitial positions, and the interstitial energy of titanium-rich octahedral interstitial positions is the lowest, the lowest oxygen atom interstitial energy is -5.0815eV respectively , -4.9425eV and -5.9315eV. The barriers to be crossed for oxygen atoms to diffuse along the best diffusion path in O phase, B2 phase and α2 phase are 0.812 eV, 1.913 eV and 1.164 eV, respectively.

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贺龙宾,王文波,张建林,王旭东,段星路,刘邱祖,李秀燕. TD3合金氧化性能的第一性原理研究[J].稀有金属材料与工程,2022,51(11):4237~4242.[He Longbin, Wang Wenbo, Zhang Jianlin, Wang Xudong, Duan Xinglu, Liu Qiuzu, Li Xiuyan. First-principles study on oxidation performance of TD3 alloy[J]. Rare Metal Materials and Engineering,2022,51(11):4237~4242.]
DOI:10.12442/j. issn.1002-185X.20210905

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历史
  • 收稿日期:2021-10-18
  • 最后修改日期:2022-01-06
  • 录用日期:2022-01-29
  • 在线发布日期: 2022-12-02
  • 出版日期: 2022-11-30