Thermomechanical fatigue of a directionally-solidified Ni-base superalloy: Smooth and cylindrically-notched specimens

被引:58
作者
Kupkovits, Robert A. [2 ]
Neu, Richard W. [1 ,3 ]
机构
[1] Georgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30332 USA
[2] Exponent Failure Anal Associates, Los Angeles, CA 90034 USA
[3] Georgia Inst Technol, Sch Mat Sci & Engn, Atlanta, GA 30332 USA
关键词
Thermomechanical fatigue; Creep; Oxidation; Notched specimen; Ni-base superalloy; Stress concentration; LOW-CYCLE FATIGUE; HIGH-TEMPERATURE; ROTOR STEEL; BEHAVIOR; MICROSTRUCTURE; INITIATION; OXIDATION; MAR-M247; GROWTH; TESTS;
D O I
10.1016/j.ijfatigue.2010.02.002
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Directionally-solidified (DS) Ni-base superalloys are used in high temperature gas turbines because of their excellent properties in the most aggressive mechanical, thermal, and environmental operating conditions. Fatigue life prediction approaches need to account for the presence of cooling holes and other geometric stress concentrations, time-dependent dwells, thermomechanical cycling, and anisotropic material properties. In working towards such a life model, this paper describes the cyclic deformation response and damage mechanisms resulting from thermomechanical fatigue (TMF) of directionally-solidified CM247LC DS. Linear in-phase (IP) and out-of-phase (OP) TMF cycles were performed on both smooth and cylindrically-notched round-bar specimens in both longitudinal and transverse grain orientations. Results take into consideration anisotropy, time-dependent deformation, and the severity of the notch in addition to the waveform and temperature cycle characteristics. The active damage mechanisms are identified as a function of these parameters. Conclusions are drawn in light of fractography, microscopy, and finite element analysis conducted to evaluate geometric and microstructural influences on the time-dependent deformation and fatigue behavior. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1330 / 1342
页数:13
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