Fatigue crack growth mechanisms in powder metallurgy Ni-based superalloys—A review

被引:0
|
作者
Jiang, R. [1 ,2 ,3 ]
Song, Y.D. [1 ,2 ]
Reed, P.A. [3 ]
机构
[1] Key Laboratory of Aero-engine Thermal Environment and Structure, Ministry of Industry and Information Technology, Nanjing University of Aeronautics and Astronautics, Nanjing,210016, China
[2] College of Energy and Power Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing,210016, China
[3] Materials Research Group, Department of Mechanical Engineering, University of Southampton, Highfield, Southampton,SO17 1BJ, United Kingdom
关键词
Powder metallurgy (PM) Ni-based superalloys are widely used for aeroengine turbine disc applications due to their excellent mechanical properties and good corrosion resistance at elevated temperatures. Understanding the fatigue crack growth (FCG) mechanisms of PM Ni-based superalloys is important for both disc alloy development and life prediction of disc components in these advanced aeroengines where damage tolerance design prevails. FCG in PM Ni-based superalloys is a complicated function of microstructure; temperature; loading conditions and environment and is usually a consequence of the synergistic effects of fatigue; creep and environmental damage. In this review; the mechanisms controlled by microstructural features including grain size; grain misorientation; γ′ size and distribution on short and long FCG behaviour in PM Ni-based superalloys are discussed. The contribution of creep and environmental damage to FCG has been critically assessed. The competing effects of mechanical damage (i.e. fatigue and creep) and environmental damage at the crack tip are microstructure-sensitive; and usually results in transition between transgranular; mixed-trans-intergranular and intergranular FCG depending on the contribution of environmental damage to FCG processes. © 2020;
D O I
暂无
中图分类号
学科分类号
摘要
引用
收藏
相关论文
共 50 条
  • [1] Fatigue crack growth mechanisms in powder metallurgy Ni-based superalloys-A review
    Jiang, R.
    Song, Y. D.
    Reed, P. A.
    INTERNATIONAL JOURNAL OF FATIGUE, 2020, 141
  • [2] Research on drilling of ni-based powder metallurgy superalloys
    Wang H.
    Guo P.
    Qiao Y.
    Niu J.
    Key Engineering Materials, 2016, 693 : 680 - 685
  • [3] A novel methodology for modeling dwell fatigue crack growth in Ni-based superalloys
    Telesman, J.
    Gabb, T. P.
    Ghosn, L. J.
    INTERNATIONAL JOURNAL OF FATIGUE, 2020, 133 (133)
  • [4] Mechanistic modelling of time-dependent fatigue crack growth in Ni-based superalloys
    Chan, Kwai S.
    MATERIALS AT HIGH TEMPERATURES, 2016, 33 (4-5) : 425 - 438
  • [5] Effect of Ta on the microstructure of high performance Ni-based powder metallurgy superalloys
    ZhiCheng Wang
    Hao Wang
    GuoQuan Liu
    HaiLiang Huang
    HongFei Zhang
    YinLong Shao
    BenFu Hu
    Science China Technological Sciences, 2019, 62 : 1961 - 1967
  • [6] Effect of Ta on the microstructure of high performance Ni-based powder metallurgy superalloys
    WANG ZhiCheng
    WANG Hao
    LIU GuoQuan
    HUANG HaiLiang
    ZHANG HongFei
    SHAO YinLong
    HU BenFu
    Science China(Technological Sciences), 2019, (11) : 1961 - 1967
  • [7] Effect of Ta on the microstructure of high performance Ni-based powder metallurgy superalloys
    Wang ZhiCheng
    Wang Hao
    Liu GuoQuan
    Huang HaiLiang
    Zhang HongFei
    Shao YinLong
    Hu BenFu
    SCIENCE CHINA-TECHNOLOGICAL SCIENCES, 2019, 62 (11) : 1961 - 1967
  • [8] Effect of Ta on the microstructure of high performance Ni-based powder metallurgy superalloys
    WANG ZhiCheng
    WANG Hao
    LIU GuoQuan
    HUANG HaiLiang
    ZHANG HongFei
    SHAO YinLong
    HU BenFu
    Science China(Technological Sciences), 2019, 62 (11) : 1961 - 1967
  • [9] Using "Microstructure Informatics" to Understand Abnormal Grain Growth Factors in Powder Metallurgy Ni-Based Superalloys
    Arciniaga, Luis F.
    Thome, Pascal
    Severs, Kevin
    Tin, Sammy
    SUPERALLOYS 2024, ISS 2024, 2024, : 783 - 795
  • [10] Toward Predictive Understanding of Fatigue Crack Nucleation in Ni-Based Superalloys
    Jiang, Jun
    Dunne, Fionn P. E.
    Ben Britton, T.
    JOM, 2017, 69 (05) : 863 - 871