Non-Destructive Evaluation for Material of Thermal Barrier Coatings

단열 코팅재료의 비파괴 평가기법

  • 이철구 (서울산업대학교 생산공학부 기계공학과) ;
  • 김태형 (서울산업대학교 산업대학원)
  • Published : 2005.02.01

Abstract

Material degradation is a multibillion-dollar problem which affects all the industries amongst others. The last decades have seen the development of newer and more effective techniques such as Focused-ion beam(FIB), Transmission electron microscopy(TEM), Secondary-ion mass spectroscopy(SIMS), auger electron spectroscopy(AES), X-ray Photoelectron spectroscopy(XPS) , Electrochemical impedance spectroscopy(EIS), Photo- stimulated luminescence spectroscopy(PSLS), etc. to study various forms of material degradation. These techniques are now used routinely to obtain information on the chemical state, depth profiling, composition, stress state, etc. to understand the degradation behavior. This paper describes the use of these techniques specifically applied to materials degradation and failure analysis.

Keywords

References

  1. McIntyre, N.S. and Chan, T.C. 1990, 'in Practical Surface Analysis', New York, USA, Vol. 1, ed., Briggs D. Seah, M.P., John, W, and Sons, Ltd., and pp. 485-529
  2. Joshi, A., 1977, 'Investigation of passivity, corrosion and stress corrosion cracking phenomena by AES and ESCA, Houston, Texas in Corrosion 77,' Paper #16, NACE
  3. Castle, J.E., 1980, 'Application of XPS analysis to research into the causes of corrosion, in Applied Surface Analysis,' ed., Barr, T.L., and Davis, L.E., ASTM STP 699, ASTM, PA, p. 182
  4. Castle, J.E., 2002, 'Surface Interface Anal.,' vol. 33, p. 196
  5. Barr, T.L., 1994 'The Principles and Practice of X-Ray Photo-electron Spectroscopy,' Modern ESCA., CRC Press, Boca Raton
  6. Kaplyanski, A.A., Przhevuski, A.K., and Rozenbaum, R.B., 'Deformational splitting of luminescence spectral lines and the structure of exchange linked pairs of chromium ions in ruby,' 1969, Sov. Phys. Solid State, vol. 10, p. 1864
  7. Desai, V., 1997, 'Non-Destructive Evaluation and Moinitoring of TBCs by Electrocchemical Impedance Spectroscopy,' A research Proposal to AGTSR, May
  8. Desai, V., 1997, 'Non-Destructive Evaluation of High temperature Oxidation Damage using Electrochemical Techniques,' Florida, USA, Paper Presented at TMS Annual Meeting
  9. Jhang, Z., 2001, 'Non-Destructive Evaluation and Monitoring of TBCs by Electrochemical Impedance Spectroscopy,' University of Central Florida, Orlando, USA, Ph.D. Thesis
  10. Barr, T.L., Seal, S., Klinowski, J., and Wozniak, K., 1997, 'ESCA studies of the co-ordination state of aluminum in oxide environments,' Royal Soc. of Chem., J. Chem. Soc. Faraday Trans. Issue 1, pp. 181-187
  11. McDonald, D.D., 1987, 'Theoretical Analysis of Electrochemical Impedance,' Corrosion-87, NACE, Houston, Texas, Paper # 479
  12. Kendig, M., and Scully, J., 1889, 'Basic Aspects of the Application of Electrochemical Impedance for the Life prediction of Organic Coatings on Metals,' NACE, Houston, Texas, Corrosion-89, Paper #32
  13. Homma, K., Kihira, K., and Ito S. ., 1991 'Application of Alternating Current Impedance Method to the Evaluation of Coating Deterioration,' Corrosion-91, NACE, Houston, Texas, Paper #483