1. 1) A. Todoroki and H. Kobayashi, “Prediction of fatigue crack growth rate in residual stress field (Application of superposition technique)”, Transaction of the Japan Society of Mechanical Engineers A, Vol.54, pp.30-37 (1986).
2. 2) L. F. Coffin, “A study of the effects of cyclic thermal stresses on a ductile metal”, Transactions of ASME, Vol.76, pp.931-950 (1954).
3. 3) A. Inoue, T. Sekigawa, K. Oguri, T. Tagawa and T. Ishikawa, “Mechanism of fatigue life improvement due to fine particle shot peening in high strength aluminum alloy”, Journal of the Japan Institute of Metals, Vol.74, pp.370-377 (2010).
4. 4) K. Kodama, H. Ishizuka, Y. Satoh, K. Akita, H. Suzuki and T. Takeyuki, “Residual principal stresses and crack propagation direction on fatigue fractured surface”, Journal of the Material Science, Vol.48, No.10, pp.1118-1123 (1999).
5. 5) T. Miyata, A. Otsuka, M. Mitsubayashi, T. Haze and S. Kurihara, “Prediction of fracture toughness of steels by local fracture criterion”, Journal of the Material Science, Vol.37, No.419, pp.879-903 (1988).