Estimation of Corrosion Fatigue Life by Evaluation on Corrosion Pit Damage in Gas Turbine Compressor Blades under Service Conditions
Corrosion fatigue is one of the most important issues involved in operating compressors in gas turbine power plants securely. To address this issue, we investigated corrosion pit growth as well as crack growth behavior initiated from corrosion pits. We also developed a method for evaluating corrosio...
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Veröffentlicht in: | Journal of the Society of Materials Science, Japan Japan, 2013/06/15, Vol.62(6), pp.383-389 |
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Hauptverfasser: | , , , , , |
Format: | Artikel |
Sprache: | eng ; jpn |
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Zusammenfassung: | Corrosion fatigue is one of the most important issues involved in operating compressors in gas turbine power plants securely. To address this issue, we investigated corrosion pit growth as well as crack growth behavior initiated from corrosion pits. We also developed a method for evaluating corrosion fatigue life under service conditions. Although we did not observe any obvious relationship between operative stress and corrosion pit sizes of operated compressor blades, our investigation results suggested that corrosion pit growth was dependent on operational time. We therefore calculated and propose an estimation curve for corrosion pit growth. Under a corrosive environment with highly concentrated Na + , Cl - , and SO 4 2- , the fatigue limit decreased to 40% of in-air strength. It also tended to decrease in inverse proportion to artificial defect size. We calculated crack growth threshold stress range σ th from the relationship between stress and artificial defect size and found that the crack growth threshold stress intensity factor range ΔK th was 2.4MPa √m under a corrosive environment. We also measured operative stress in compressor blades under service conditions and calculated equivalent stress σ eq from stress frequency distribution. We found out that corrosion pit size corresponding to crack initiation was 0.58mm from obtained σ eq and ΔK th and developed an evaluation diagram for calculating operational time from our estimation curve for corrosion pit growth. Our results suggest that we can measure operative stress to evaluate corrosion fatigue life quantitatively and formulate allowable stress. |
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ISSN: | 0514-5163 1880-7488 |
DOI: | 10.2472/jsms.62.383 |