Grain refining of Er added to Ti-22Al-25Nb alloy and morphology of erbium precipitates

被引:0
|
作者
Jing-Ru Dai [1 ]
Hui-Min Lu [1 ]
Zhi-Jin Cai [1 ]
Chao An [1 ]
机构
[1] School of Materials Science and Engineering, Beijing University of Aeronautics and Astronautics
关键词
Ti2AlNb-based alloys; Rare earth erbium (Er); Microstructure; Erbium precipitates;
D O I
暂无
中图分类号
TG146.23 [];
学科分类号
080502 ;
摘要
In order to investigate the effect of erbium (Er) on the microstructure of orthorhombic Ti2AlNb-based alloys, four testing alloys were prepared by adding different contents of the rare earth metal Er to Ti-22Al-25Nb alloy and optical microscopy, X-ray diffraction, scanning electron microscopy, electron probe microanalysis, energy-dispersive spectrometry, and transmission electron microscopy were used. The results show that the addition of Er is capable of grain refining and the refinement effect is more obvious with increasing content of Er. The Er2O3 dispersoids formed by internal oxidation and Al3Er compound particles are observed in Er-doped alloys and the number of Er precipitates is increased with increasing Er addition. It is likely that the solubility of Er in the Ti2AlNb alloy is very low and Er precipitates tend to segregate at grain boundaries, which together with the surface activity of rare earth elements is supposed to decrease the prior B2 grain size of Ti-22Al-25Nb alloy effectively.
引用
收藏
页码:5 / 11
页数:7
相关论文
共 50 条
  • [11] Experiment and Numerical Simulation of Ti-22Al-25Nb Alloy Sheet by Gas Bulging
    Yin Hongliang
    Meng Lingjian
    Lu Yupeng
    Lin Peng
    RARE METAL MATERIALS AND ENGINEERING, 2023, 52 (03) : 806 - 814
  • [12] Anisotropy in fracture toughness and toughening mechanism of Ti-22Al-25Nb alloy related to texture and grain boundary damage
    Zhang, Penghui
    Zeng, Weidong
    Zhang, Fan
    Ma, Haoyuan
    Xu, Jianwei
    Liang, Xiaobo
    Zhao, Yongqing
    JOURNAL OF ALLOYS AND COMPOUNDS, 2025, 1010
  • [13] Microstructure and Mechanical Properties of Ti-22Al-25Nb Alloy during Hot Mechanical Processing
    Ma Xiong
    Zhang Jianwei
    Liang Xiaobo
    Zeng Weidong
    RARE METAL MATERIALS AND ENGINEERING, 2017, 46 (05) : 1375 - 1379
  • [14] Hot deformation behavior and processing map of a powder metallurgy Ti-22Al-25Nb alloy
    Jia, Jianbo
    Zhang, Kaifeng
    Liu, Liming
    Wu, Fuyao
    JOURNAL OF ALLOYS AND COMPOUNDS, 2014, 600 : 215 - 221
  • [15] Microstructure and mechanical properties of inertia friction welded joint of Ti-22Al-25Nb alloy
    Zhao Qiang
    Zhu Wen-hui
    Shao Tian-wei
    Shuai Yan-lin
    Liu Jia-tao
    Wang Ran
    Zhang Li
    Liang Xiao-bo
    CAILIAO GONGCHENG-JOURNAL OF MATERIALS ENGINEERING, 2020, 48 (06): : 140 - 147
  • [16] Microstructure and mechanical properties of Ti-22Al-25Nb alloy fabricated by elemental powder metallurgy
    Wang, Guofeng
    Yang, Jianlei
    Jiao, Xueyan
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2016, 654 : 69 - 76
  • [17] Strain rate sensitivity of Ti-22Al-25Nb (at%) alloy during high temperature deformation
    Lin, Peng
    Hao, Yonggang
    Zhang, Baoyou
    Zhang, Shuzhi
    Shen, Jun
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2018, 710 : 336 - 342
  • [18] Hydrogen-Induced Improvement of the Cylindrical Drawing Properties of a Ti-22Al-25Nb Alloy
    Shao, Bin
    Wan, Shengxiang
    Shan, Debin
    Guo, Bin
    Zong, Yingying
    ADVANCED ENGINEERING MATERIALS, 2017, 19 (03)
  • [19] Constitutive Models for Tensile Deformation Behavior of Ti-22Al-25Nb Alloy Sheet at Elevated Temperatures
    Lu Yupeng
    Meng Lingjian
    Yin Hongliang
    Lin Peng
    RARE METAL MATERIALS AND ENGINEERING, 2023, 52 (03) : 785 - 790
  • [20] Microstructure, Densification and Mechanical Properties of Ti-22Al-25Nb Alloy Fabricated by Spark Plasma Sintering
    Jia, Jianbo
    Liu, Hailiang
    Yang, Zhigang
    Peng, Weijin
    Xu, Yan
    Yang, Yue
    Luo, Junting
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2020, 29 (02) : 1101 - 1112