Thermo-mechanical fatigue tests on MarM-247 nickel-based superalloy using the direct resistance method

被引:6
作者
Garcia de la Yedra, A. [1 ,2 ,3 ]
Pedrejon, J. L. [1 ,2 ]
Martin-Meizoso, A. [1 ,2 ]
机构
[1] Univ Navarra, CEIT, San Sebastian 20018, Spain
[2] Univ Navarra, TECNUN, San Sebastian 20018, Spain
[3] IK4 IDEKO S Coop, Elgoibar 20870, Spain
关键词
life assessment; MarM-247; superalloys; thermo-mechanical fatigue; LIFE PREDICTION; TEMPERATURE;
D O I
10.3184/096034013X13631630183856
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Thermo-mechanical fatigue tests were carried out in MarM-247 nickel-based superalloy with a system that uses the direct resistance method for heating, instead of the common induction system. Therefore, this paper has two aims: (1) to validate the test facility via an inter-comparison exercise (carried out at BAM) and (2) to give an overview of the material behaviour based on cyclic response, lifetime and some microstructural aspects. In-phase (IP), out-of-phase (OP) and in-phase test with 2 minutes of dwell period (IP dwell) were executed. Ostergren and Zamrik life prediction approaches were found to be suitable tools for life assessment regardless of the test-type. In fact, some modifications in the mentioned models allow predicting life within a factor of two of the unit correlation line. Apart from that, microstructural investigations reveal that IP tests are prone to intergranular fracture whereas in OP tests trangranular fracture prevails given a clear indication of the prevailing damage mechanisms.
引用
收藏
页码:19 / 26
页数:8
相关论文
共 50 条
  • [41] Thermo-mechanical fatigue resistance characterization and materials ranking from heat-flux-controlled tests. Application to cast-irons for automotive exhaust part
    Szmytka, F.
    Michaud, P.
    Remy, L.
    Koester, A.
    INTERNATIONAL JOURNAL OF FATIGUE, 2013, 55 : 136 - 146
  • [42] Thermo-mechanical fatigue behavior of nickel-base powder metallurgy superalloy FGH96 under tension-tension loading
    Gu, Yuli
    He, Yuhuai
    Qu, Shiyu
    Zhang, Guodong
    Zheng, Fei
    Tao, Chunhu
    ACTA METALLURGICA SINICA-ENGLISH LETTERS, 2010, 23 (02) : 147 - 153
  • [44] Prediction of texture evolution and crack growth rate of nickel based superalloys in thermo-mechanical fatigue by ultrasonic technique
    Esmaeilzadeh, M.
    Arabi, H.
    Qods, F.
    Sadeghi, B. M.
    THEORETICAL AND APPLIED FRACTURE MECHANICS, 2018, 97 : 15 - 29
  • [45] Thermomechanical fatigue life prediction method for nickel-based superalloy in aeroengine turbine discs under multiaxial loading
    Li, Fang-Dai
    Shang, De-Guang
    Zhang, Cheng-Cheng
    Liu, Xiao-Dong
    Li, Dao-Hang
    Wang, Jin-Jie
    Hui, Jie
    Li, Zhi-Gao
    Chen, Bo
    INTERNATIONAL JOURNAL OF DAMAGE MECHANICS, 2019, 28 (09) : 1344 - 1366
  • [46] On the Rapid Assessment of Mechanical Behavior of a Prototype Nickel-Based Superalloy using Small-Scale Testing
    Sulzer, Sabin
    Alabort, Enrique
    Nemeth, Andre
    Roebuck, Bryan
    Reed, Roger
    METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2018, 49A (09): : 4214 - 4235
  • [47] Effects of Thermal Stress on the Formation and Cracking Behavior of Nickel-Based Superalloys by Selective Laser Melting Based on a Coupled Thermo-Mechanical Model
    Nie, Shijin
    Li, Lin
    Wang, Qin
    Zhao, Rongxia
    Lin, Xin
    Liu, Furong
    MATERIALS, 2022, 15 (24)
  • [48] Mechanical Fatigue Testing Under Thermal Gradient and Manufacturing Variabilities in Nickel-Based Superalloy Parts with Air-Cooling Holes
    Aublet, A.
    Rambaudon, M.
    N'Guyen, F.
    Ryckelynck, D.
    Remacha, C.
    Cariou, R.
    Proudhon, H.
    EXPERIMENTAL MECHANICS, 2022, 62 (07) : 1079 - 1091
  • [49] Thermal-mechanical fatigue behaviour and life prediction of oxide dispersion strengthened nickel-based superalloy PM1000
    Kovan, Volkan
    Hammer, Joachim
    Mai, Ronny
    Yuksel, Mehmet
    MATERIALS CHARACTERIZATION, 2008, 59 (11) : 1600 - 1606
  • [50] Life prediction method based on damage mechanism for titanium alloy TC4 under multiaxial thermo-mechanical fatigue loading
    Li, Dao-Hang
    Shang, De-Guang
    Mao, Zheng-Yu
    Chen, Hong
    Cong, Ling-Hua
    Tao, Zhi-Qiang
    ENGINEERING FRACTURE MECHANICS, 2023, 282