Effects of temperature and oxidation on threshold stress intensity factor of 12% Cr steel for steam turbine rotor component
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials
Link
http://link.springer.com/content/pdf/10.1007/s12206-013-0311-8.pdf
Reference16 articles.
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3. M. F. Kanninen and C. Atkinson, Application of an inclined-strip-yield crack tip plasticity model to predict constant amplitude fatigue crack growth, International Journal of Fracture, 16(1) (1980) 53–69.
4. K. D. Singh, Y. Xu and I. Sinclair, Strip yield modeling of fatigue crack under variable amplitude loading, Journal of Mechanical Science and Technology, 25(12) (2011) 3025–3036.
5. R. J. Morrissey, D. L. McDowell and T. Nicholas, Frequency and stress ratio effects in high cycle fatigue of Ti-6Al-4V, International Journal of Fatigue, 21 (1999) 679–685.
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1. Near-threshold fatigue crack growth behavior of the weld metal and heat-affected zone in an ex-service CrMoV steel joint;International Journal of Fatigue;2022-11
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3. A study on fracture behavior due to crack propagation at compact tension specimen composed of inhomogeneous metal materials with holes near crack;Journal of Mechanical Science and Technology;2019-10
4. Short crack propagation in LCF regime at room and high temperature in Q & T rotor steels;International Journal of Fatigue;2015-06
5. Erratum to: “Effects of temperature and oxidation on threshold stress intensity factor of 12% Cr steel for steam turbine rotor component”;Journal of Mechanical Science and Technology;2014-01
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