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退火温度对镍基ODS合金组织结构的影响
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1.滨州学院机电工程学院;2.中国科学院金属研究所

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TG156.21

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The influence of annealed temperature on microstructure in nickel-based ODS alloy
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BINZHOU UNIVERSITY

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    摘要:

    应用于核反应堆和航空航天领域的镍基ODS合金,在加工成型和热处理过程中,晶界会发生迁移,导致合金中的纳米氧化物颗粒溶解再析出或通过Ostwald熟化使纳米氧化物发生长大,使合金中氧化物颗粒尺寸增加、数密度降低,从而影响合金的力学性能。本文对冷变形后镍基ODS合金进行不同温度的退火,通过TEM、XRD和EBSD分析了合金的微观组织结构,探究了退火工艺对冷变形后镍基ODS合金微观组织结构的影响。结果表明:随着退火温度的升高,镍基ODS合金的位错密度减少,少量纳米氧化物颗粒发生粗化;冷变形态合金经过900 ℃退火后,组织均匀且纳米氧化物颗粒未发生明显长大;通过计算,确认了900 ℃退火后镍基ODS合金拉伸性能的主要贡献为位错强化和弥散强化,为合金性能的提升提供理论支撑和有效手段。

    Abstract:

    The nickel-based ODS alloy could be applied to nuclear reactor and aerospace. The dissolution and precipitate of the oxide particles or the Ostwald repining in the nickel-based ODS alloy resulting from the grain boundary migration affect the mechanical properties of the nickel-based alloy by increasing the size and decreasing the number density of the oxide particles during the cold working and heat treatment. In this paper, the microstructure of the cold-rolled nickel-based ODS alloy annealing at different temperature were characterized by XRD, EBSD, and TEM. The influence of the annealing process on the microstructure of the cold-rolled nickel-based ODS alloy was studied. It is indicated that the dislocation density of the nickel-based ODS alloy decreased and part of the oxide particle coarsened with the annealed temperature rising. Besides, there were the uniform microstructure and the fine oxide particles in the nickel-based ODS alloy after annealing at 900 ℃. According to the calculation, the tensile strength of the nickel-based ODS alloy after annealing at 900 ℃ is mainly contributed by the dispersion strengthening and dislocation strengthening which were the theoretical basis and the effective method to improving the properties of the nickel-based ODS alloy.

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王彬,毛哲,刘实,熊良银.退火温度对镍基ODS合金组织结构的影响[J].稀有金属材料与工程,2023,52(12):4141~4146.[Wang Bin, Mao Zhe, Liu Shi, Xiong Liangyin. The influence of annealed temperature on microstructure in nickel-based ODS alloy[J]. Rare Metal Materials and Engineering,2023,52(12):4141~4146.]
DOI:10.12442/j. issn.1002-185X.20230315

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历史
  • 收稿日期:2023-05-26
  • 最后修改日期:2023-07-01
  • 录用日期:2023-07-28
  • 在线发布日期: 2023-12-29
  • 出版日期: 2023-12-22