Evaluation Method of the Residual Stresses in Thermal Barrier Coating System Based on the Curvature of the Three-Layered Specimen
Author:
Affiliation:
1. Graduate School of Engineering, Iwate Univ.
2. Faculty of Science and Engineering, Iwate Univ.
Publisher
Society of Materials Science, Japan
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Link
https://www.jstage.jst.go.jp/article/jsms/66/2/66_150/_pdf
Reference26 articles.
1. 1) K. Suzuki, S. Machiya, K. Tanaka and Y. Sakaida, “X-ray elastic constants and residual stress distributions of zirconia thermal barrier coating”, Transactions of the Japan Society of Mechanical Engineers, Series A, Vol.67, No.655, pp.417-423 (2001).
2. 2) V. Teixeira, M. Andritschky, W. Fischer, H.P.Buchkremer and D.Stöver, “Effects of deposition temperature and thermal cycling on residual stress state in zirconia-based thermal barrier coatings”, Surface & Coatings Technology, Vols.120-121, pp.103-111 (1999).
3. 3) O. Kesler, J. Matejicek, S. Sampath, S. Suresh, T. G. Herold, P.C. Brand and H.J. Prask, “Measurement of residual stress in plasma-sprayed metallic, ceramic and composite coatings”, Materials Science and Engineering A, Vol.257, pp.215-224 (1998).
4. 4) C.M. Weyant, J. Almer and K.T. Faber, “Through-thickness determination of phase composition and residual stresses in thermal barrier coatings using high-energy X-rays”, Acta Materialia,Vol.58, pp.943-951 (2010).
5. 5) J.A. Thompson, J. Matejicek and T.W. Clyne, “Modelling and neutron diffraction measurement of stresses in sprayed TBCs”, in Superalloys 2000, Eds. T.M. Pollock, R.D. Kissinger, R.R. Bowman, K.A. Green, M. McLean, S. Oison,J.J. Schirra, pp.639-647 (2000), TMS.
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