Damage Evaluation Based on EBSD Method for Nickel-Base Superalloy Notched Specimen Under Creep and/or Fatigue Conditions

Author:

KOBAYASHI Daisuke1,MIYABE Masamichi1,ACHIWA Masahiro1,SUGIURA Ruji2,YOKOBORI Jr. A. Toshimitsu.2

Affiliation:

1. Electric Power Res. & Development Center, Chubu Electric Power Co. Inc.

2. Graduate School of Engineering, Tohoku University

Publisher

Society of Materials Science, Japan

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference35 articles.

1. 1) K. Mino, C. Fukuoka and H. Yoshizawa, “Evolution of intragranular misorientation during plastic deformation”, Journal of the Institution of Metals, Japan, Vol.64, pp.50-55 (2000).

2. 2) T. M. Angeliu, P. L. Andresen, E. Hall, J. A. Sutliff and S. Sitzman, “Strain and microstructure characterization of austenitic stainless steel weld HAZs”, CORROSION, paper no. 186 (2000).

3. 3) H. Kimura, Y. Wang, Y. Akiniwa and K. Tanaka, “Misorientation analysis of plastic deformation of austenitic stainless steel by EBSD and X-ray diffraction methods”, Transaction of the Japan Society of Mechanical Engineers Series A, Japan, Vol.71, No.712, pp.118-124 (2005).

4. 4) M. Kamaya, A. J. Wilkinson and J. M. Titchmarsh, “Quantification of plastic strain of stainless steel and nickel alloy by electron backscatter diffraction.”, Acta Materialia, Vol.54, pp.539-548 (2006).

5. 5) L. N. Brewer, M. A. Othon, L. M. Young and T. M. Angeliu, “Misorientation mapping for visualization of plastic deformation via electron back-scattered diffraction”, Microscopy and Microanalysis, Vol.12, pp.85-91 (2006).

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