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多场耦合作用下GH4169合金微观组织演变行为
作者:
作者单位:

1.沈阳航空航天大学航空制造工艺数字化国防重点学科实验室;2.西安热工研究院有限公司;3.东北大学材料各向异性与织构教育部重点实验室

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中图分类号:

TG132.3

基金项目:

国家自然科学基金(51775355);沈阳航空航天大学航空制造工艺数字化国防重点学科实验室开放基金(SHSYS202003)


The effect of multi-field coupling on microstructure evolution behavior in GH4169 alloy
Author:
Affiliation:

National Defense Key Discipline Laboratory of Aerospace Manufacturing Technology Digitization, Shenyang Aerospace University

Fund Project:

National Natural Science Foundation of China, No.51775355; National Defense Key Discipline Laboratory of Aerospace Manufacturing Technology Digitization, Shenyang Aerospace University, No.SHSYS202003

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    摘要:

    基于典型航空结构材料GH4169合金微观组织精准控制进而优化合金综合性能,本研究将多种能量场应用于GH4169合金,利用透射电子显微镜和扫描电子显微镜研究微观组织演变规律及作用机理。结果表明,与常规温度场/应力场作用下相比,温度场/应力场/脉冲电流能量场耦合作用下,GH4169合金晶界析出大量颗粒状δ相,晶粒内γ″相尺寸增大。原因在于脉冲能量场的引入促进位错运动,进而增强原子的扩散能力,有利于析出相的析出与长大。

    Abstract:

    In this study, a variety of energy fields were applied to GH4169 alloy, and transmission electron microscope/scanning electron microscope were used to characterize the microstructure of the alloy, so as to explore the evolution law and action mechanism of microstructure under the action of multi-field coupling. The results show that, compared with the conventional temperature field/stress field, a large amount of granular δ phase is precipitated in the grain boundary of GH4169 alloy under the coupling action of temperature field/stress field/pulse current energy field, and the size of γ "phase in the grain increases. The reason is that the introduction of pulse energy field significantly enhances the dislocation motion and the diffusion ability of atoms, which is conducive to the growth of precipitated phase.

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引用本文

安金岚,谢玮,王磊,回丽.多场耦合作用下GH4169合金微观组织演变行为[J].稀有金属材料与工程,2022,51(7):2585~2590.[Jinlan An, Xie wei, Lei Wang, Li Hui. The effect of multi-field coupling on microstructure evolution behavior in GH4169 alloy[J]. Rare Metal Materials and Engineering,2022,51(7):2585~2590.]
DOI:10.12442/j. issn.1002-185X.20210514

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历史
  • 收稿日期:2021-06-15
  • 最后修改日期:2021-07-12
  • 录用日期:2021-08-06
  • 在线发布日期: 2022-07-29
  • 出版日期: 2022-07-27