Effects of microstructure in high temperature fatigue: Lifetime to crack initiation of a single crystal superalloy in high temperature low cycle fatigue

被引:38
|
作者
Remy, L. [1 ]
Geuffrard, M. [1 ]
Alam, A. [1 ]
Koester, A. [1 ]
Fleury, E. [1 ]
机构
[1] Mines ParisTech, Ctr Mat, CNRS UMR 7633, Evry, France
关键词
High temperature low cycle fatigue; Single crystal superalloy; Damage model; Micro-crack growth; Casting pores; NICKEL-BASE SUPERALLOYS; THERMAL FATIGUE; OXIDATION INTERACTION; IN-100; SUPERALLOY; BEHAVIOR; GROWTH; DAMAGE; ORIENTATION; ALLOY; CREEP;
D O I
10.1016/j.ijfatigue.2012.10.013
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Single crystal superalloys are now the best alloys to make blades and vanes in aero-engines and gas turbines due to their temperature capability, their creep and fatigue resistance. Their composition and microstructure are optimised by heat treatments but low cycle fatigue resistance is mostly controlled by the initiation and early growth of micro-cracks at casting pores. An enriched engineering damage model is proposed to describe micro-crack growth from pores with a process zone concept. Damage equations use summation of contributions on all slip systems as the constitutive model. Oxidation can play a significant role that can be described through embrittled material ahead of micro-crack tip. To investigate the behaviour under small scale yielding at finer scale, experiments were carried out using sharp notches. Early growth of cracks in the notch vicinity was studied at two temperatures 650 degrees C and 950 degrees C. While at the lower temperature the notch can be analysed as a crack, anomalous crack growth rates are observed at the higher temperature. Using finite element computations and a damage model, this behaviour is attributed to local viscoplastic strain concentrations, and oxidation effects. Effects of strain concentration are attenuated since only a small volume of material is highly strained at the notch vicinity. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:37 / 49
页数:13
相关论文
共 50 条
  • [41] THE SENSITIVITY OF SURFACE CRACK INITIATION TO SURFACE-ROUGHNESS IN LOW-CYCLE FATIGUE AT HIGH-TEMPERATURE
    KIM, JJ
    NAM, SW
    RYU, JH
    [J]. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 1990, 130 (02): : L7 - L20
  • [42] HIGH-CYCLE FATIGUE BEHAVIOR OF AM3 NICKEL-BASE SINGLE CRYSTAL SUPERALLOY AT HIGH TEMPERATURE
    Shui, L.
    Jin, T.
    Sun, X. F.
    Hu, Z. Q.
    [J]. INTERNATIONAL JOURNAL OF MODERN PHYSICS B, 2010, 24 (15-16): : 2886 - 2891
  • [43] Low cycle fatigue of cast superalloy Inconel 738LC at high temperature
    Obrtlik, Karel
    Chlupova, Alice
    Petrenec, Martin
    Pokak, Jaroslav
    [J]. ADVANCES IN FRACTURE AND DAMAGE MECHANICS VII, 2008, 385-387 : 581 - 584
  • [44] High-temperature low-cycle fatigue behavior of HAYNES® 230® superalloy
    Chen, LJ
    He, YH
    Liaw, PK
    Blust, JW
    Browning, PF
    Seeley, RR
    Klarstrom, DL
    [J]. SUPERALLOYS 2000, 2000, : 573 - 581
  • [45] Fatigue crack initiation in a notched single-crystal superalloy component
    Leidermark, Daniel
    Moverare, Johan
    Simonsson, Kjell
    Sjostrom, Soren
    Johansson, Sten
    [J]. FATIGUE 2010, 2010, 2 (01): : 1067 - 1075
  • [46] EVALUATION OF THERMOMECHANICAL FATIGUE CRACK INITIATION IN A SINGLE-CRYSTAL SUPERALLOY
    Leidermark, Daniel
    [J]. PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2015, VOL 7A, 2015,
  • [47] High cycle fatigue behavior of a single crystal superalloy at elevated temperatures
    Liu, Y.
    Yu, J. J.
    Xu, Y.
    Sun, X. F.
    Guan, H. R.
    Hu, Z. Q.
    [J]. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2007, 454 : 357 - 366
  • [48] High Cycle Fatigue Behavior of Second Generation Single Crystal Superalloy
    Li Jiarong
    Xie Hongji
    Han Mei
    Liu Shizhong
    [J]. ACTA METALLURGICA SINICA, 2019, 55 (09) : 1195 - 1203
  • [49] Evolution of microstructure during high temperature low cycle fatigue of high purity aluminium oligocrystals
    Weiss, S
    Gottstein, G
    [J]. MATERIALS SCIENCE AND TECHNOLOGY, 1998, 14 (11) : 1169 - 1174
  • [50] Temperature evolution during high-cycle fatigue in ULTIMET® superalloy
    Jiang, L
    Wang, H
    Liaw, PK
    Brooks, CR
    Klarstrom, DL
    [J]. ADVANCED TECHNOLOGIES FOR SUPERALLOY AFFORDABILITY, 2000, : 113 - 130