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동의어 포함
| 번호 | 참고문헌 | 국회도서관 소장유무 |
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| 1 | K. Ogawa, D. Minkov, T. Shoji, M. Sato and H. Hashimoto, "NDE of degradation of thermal barrier coating by means of impedance spectroscopy," NDT&E International Vol. 32, pp. 177-185 (1999) | 미소장 |
| 2 | Oxidation and degradation of a plasma-sprayed thermal barrier coating system ![]() |
미소장 |
| 3 | Development and Operating Status of "1 500�C Class" Gas Turbine ![]() |
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| 4 | Some recent trends in research and technology of advanced thermal barrier coatings ![]() |
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| 5 | Influence of asymmetric electrode geometry on an impedance spectrum of a plasma-sprayed thermal barrier coating system ![]() |
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| 6 | A. G. Evans, M. Y. He and J. W. Hutchinson, "Mechanics-based scaling laws for the durability of thermal barrier coatings," Progress in Materials Science, Vol. 46, pp. 249-271 (2001) | 미소장 |
| 7 | A. G. Evans, D. R. Mumm, J. W. Hutchinson, G. H. Meier and F. S. Pettit, "Mechanism controlling the durability of thermal barrier coatings," Progress in Materials Science, Vol. 46, pp. 505-553 (2001) | 미소장 |
| 8 | Failure detection of thermal barrier coatings using impedance spectroscopy ![]() |
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| 9 | A. G. Evans and J. W. Hutchinson, "On the mechanics of delamination and spalling in compressed films," International Journal of Solids and Structures, Vol. 20, pp. 455-466 (1984) | 미소장 |
| 10 | A. Rabiei and A. G. Evans, "Failure mechanisms associated with the thermally grown oxide in plasma-sprayed thermal barrier coatings," Acta Materialia, Vol. 48, pp. 3963-3976 (2000) | 미소장 |
| 11 | S. H. Song and P. Xiao, "An impedance spectroscopy study of high-temperature oxidation of thermal barrier coatings," Materials Science and Engineering,Vol.97, pp. 46-53 (2003) | 미소장 |
| 12 | Analysis of residual stresses in thermal barrier coatings ![]() |
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| 13 | Residual stress depth profiling in complex hard coating systems by X-ray diffraction ![]() |
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| 14 | (A) numerical model for prediction of residual stress using rayleigh waves | 소장 |
| 15 | Quantitative evaluation of thermal barrier coating based on eddy current technique ![]() |
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| 16 | Residual Stress in TGO and Interfacial Damage in Thermal Barrier Coating after Thermal Exposure and Cyclic Indentation ![]() |
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| 17 | Oxidation-induced failure of EB-PVD thermal barrier coatings ![]() |
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| 18 | Y. H. Sohn, K. Vaidyanathan, M. Ronski, E. Jordan and M. Gell, "Thermal cycling of EB-PVD/MCrAlY thermal barrier coatings: II. evolution of photostimulated luminescence," Surface and Coatings Technology, Vol. 146-147, pp. 102-109 (2001) | 미소장 |
| 19 | Microstructural characterization of thermal barrier coatings on high pressure turbine blades ![]() |
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| 20 | Raman microprobe spectroscopy and transmission electron microscopy of thermal sprayed ZrO2 coatings before and after rub testing of outer air seals ![]() |
미소장 |
| 21 | Role of mechanical loads in inducing in-cycle tensile stress in thermally grown oxide ![]() |
미소장 |
| 22 | P. S. Anderson, X. Wang and P. Xiao, "Impedance spectroscopy study of plasma sprayed and EB-PVD thermal barrier coatings," Surface & Coatings Technology, Vol. 185, pp. 106-119 (2004) | 미소장 |
| 23 | Evaluation of TGO growth in thermal barrier coatings using impedance spectroscopy ![]() |
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