Creep-fatigue life prediction in terms of nucleation and growth of fatigue crack and creep cavities

Author:

Nam Soo woo,Wan hong Jin,Rie Kyong-tschong

Publisher

Springer Science and Business Media LLC

Subject

Metals and Alloys,Mechanics of Materials,Condensed Matter Physics,Metals and Alloys,Mechanics of Materials,Condensed Matter Physics

Reference47 articles.

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2. S. S. Manson: NASA Technical Note 2933, NASA Lewis Research Center, Cleveland, OH, 1954.

3. K.-T. Rie and H.P. Stüwe:Z. Metallkd., 1973, vol. 64, pp. 37–40.

4. E. Krempl and B. M. Wundt:Hold Time Effects in High Temperature Low-Cycle Fatigue, A Literature Survey and Interpretive Report, ASTM STP 489, ASTM, 1971.

5. J.B. Conway, R. H. Stentz, and J.T. Berling:Fatigue, Tensile and Relaxation Behavior of Stainless Steels, USAEC, Tech. Inform. Center, Oak Ridge, TN, 1975, p. 112.

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1. Creep–Fatigue Interactions (Crack Initiation);Reference Module in Materials Science and Materials Engineering;2016

2. Creep and precipitation behaviors of AL6XN austenitic steel at elevated temperatures;Journal of Nuclear Materials;2012-08

3. Precipitation Behavior in AL6XN Austenitic Stainless Steel;Materials Science Forum;2010-06

4. Prediction of Creep-Fatigue Life;High Temperature Deformation and Fracture of Materials;2010

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