PSI - Issue 2_A
Dong-Jun Kim et al. / Procedia Structural Integrity 2 (2016) 825–831 Dong-Jun Kim et al. / Structural Integrity Procedia 00 (2016) 000–000
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Acknowledgements This research was supported by National Research Foundation of Korea (NRF) funded by the Ministry of Science, ICT and Future Planning. (NRF-2013M2A7A1076396, NRF-2013M2B2B1075733) References ABAQUS version 6. 14., 2015. User’s manual, Inc. and Dassault Systems. ASTM. E 1457-00, 2001. Standard test method for measurement of creep crack growth rates in metals. Annual book of ASTM standards. ASTM. E 1820-05, 2005. Standard Test Method for Measurement for Fracture Toughness. Annual book of ASTM standards. Cocks ACF, Ashby MF, 1980. Intergranular fracture during power-law creep under multiaxial stresses. Metal science.14, 395-402. Hayhurst D.R., 1972. Creep rupture under multi-axial states of stress. Journal of the Mechanics and Physics of Solids. 20, 381–90. Kim N.H., Oh C.S., Kim Y.J., Davies C., Nikbin K., Dean D., 2003. Creep failure simulations of 316H at 550°C: Part II – Effects of specimen geometry and loading mode. Engineering Fracture Mechanics. 105. 169-181. Kim N.H., Oh C.S., Kim Y.J., Yoon K.B., Ma Y.H., 2011. Comparison of fracture strain based ductile failure simulation with experimental results. International Journal of Pressure Vessels and Piping. 88. 434-47. Kim W. G., Park J. Y., Lee H.Y., Hong S.D., Kim Y.W., Kim S.J., 2013. Time-dependent crack growth behavior for a SMAW weldment of Gr.91 steel. International Journal of Pressure Vessels and Piping. Oh C.S., Kim N.H., Kim. Y.J., Davies C., Nikbin K., Dean D., 2011. Creep failure simulations of 316H at 550°C: Part I - A method and validation. Engineering Fracture Mechanics. 78. 2966-77. Yatomi M., 2003. Factors affecting the failure of cracked components at elevated temperature. Imperial College London.
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