Microstructural statistics for fatigue crack initiation in polycrystalline nickel-base superalloys

Author:

Stinville J. C.,Lenthe W. C.,Echlin M. P.,Callahan P. G.,Texier D.,Pollock T. M.

Publisher

Springer Science and Business Media LLC

Subject

Mechanics of Materials,Modeling and Simulation,Computational Mechanics

Reference58 articles.

1. Bayerlein M, Mughrabi H (1992) Fatigue crack initiation and early crack growth in copper polycrystals—effects of temperature and environment. Short Fatigue Cracks, ESIS 13, Mech. Eng. Publications, pp 55–82

2. Boettner RC, McEvily AJ Jr, Liu YC (1964) On the formation of fatigue cracks at twin boundaries. Philos Mag 10(103):95–106. doi: 10.1080/14786436408224210

3. Cerrone A, Spear A, Tucker J, Stein CA, Rollett AD, Ingraffea AR (2013) Modeling crack nucleation at coherent twin boundaries in nickel—modeling crack nucleation at coherent twin boundaries in nickel-based superalloys. Mater Sci Technol (MS&T) 1649

4. Cowles BA (1989) High cycle fatigue in aircraft gas turbine–an industry perspective. Int J Fract 80(2–3):147–163

5. Davidson DL, Tryon RG, Oja M, Matthews R, Ravi Chandran KS (2007) Fatigue crack initiation in waspaloy at 20 $$^{circ}$$ c i r c C. Metall Mater Trans A 38(13):2214–2225. doi: 10.1007/s11661-007-9178-6 . ISSN 1543-1940

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