PSI - Issue 2_A

Xudong Qian et al. / Procedia Structural Integrity 2 (2016) 2046–2053 Author name / Structural Integrity Procedia 00 (2016) 000–000

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Acknowledgements The authors would like to acknowledge the financial support provided the Maritime and Port Authority (MPA) Singapore (R-302-501-027-490), American Bureau of Shipping (R-302-501-027-592) and the Sembcorp Marine Technology Pte Ltd (R-302-501-028-592). References Chen, S., 2016. Cumulative probability of cleavage fracture for high strength steels. PhD Dissertation, National University of Singapore. Chen, S., Qian, X., Ahmed, A., 2016. Cleavage fracture assessment for surface-cracked plates fabricated from high strength steels. Engineering Fracture Mechanics, under review. Gao, X., Ruggieri, C., Dodds, Jr. R. H., 1998. Calibration of Weibull stress parameters using fracture toughness data. International Journal of Fracture 92, 175-200. Gao, X., Dodds, Jr. R. H., Tregoning, R. L., Joyce, J. A., Link R. E., 1999. A Weibull stress model to predict cleavage fracture in plates containing surface cracks. Fatigue & Fracture of Engineering Materials & Structures 22, 481-493. Gautier, D. L., Bird, K. J., Charpentier, R. R., Grantz, A., Houseknecht, D. W., Klet, T. R., Moore, T. E., Pitman, J. K., Schenk, C. J., Schuenemeyer, J. H., Sørensen, K., Tennyson, M. E., Valin, Z. C., Wandrey, C. J., 2009. Assessment of undiscovered oil and gas in the Arctic. Science, 324, 1175-1179. Healy, B., Gullerud, A., Koppenhoefer, K., Roy, A., RoyChowdhury, S., Walters, M., Bichon, B., Cochran, K., Sobotka, J., Messner, M., Dodds, R. H. Jr., 2014. WARP3D-Release 17.3.1 3-D dynamic nonlinear fracture analyses of solids using parallel computers. Structural Research Series No.607. University of Illinois at Urbana Champaign. Petti, J. P., Dodds, R. H. Jr., 2004. Coupling of the Weibull stress model and macroscale models to predict cleavage fracture. Engineering Fracture Mechanics 71, 2079-103. Petti, J. P., Dodds, R. H. Jr., 2005. Calibration of the Weibull stress scale parameter, σ u , using the Master Curve. Engineering Fracture Mechanics 72, 91-120. Qian, X., Chen, S., 2014. A K 0 -based calibration procedure for the Weibull stress cleavage model. Fatigue & Fracture of Engineering Materials & Structures 37, 391-405. Qian, X., Li, Y., 2013. A compliance-based approach to measure fracture resistance curve for surface cracked steel plates. International Journal of Fracture 182, 1-19. Qian, X., Zhang, S., Swaddiwudhipong, S., 2011. Calibration of Weibull parameters using the conventional mechanism-based strain gradient plasticity. Engineering Fracture Mechanics 78, 1928-1944. Rice, J. R., Paris, P. C., Merkle, J. G., 1973. Some further results of J-integral analysis and estimates. ASTM STP 536, American Society for Testing and Materials, Philidelphia, 23–245. Sobotka, J. C. and Dodds, R. H. Jr., 2014. Effects of steady ductile crack growth on cleavage fracture from three-dimensional, small-scale yielding simulations. Engineering Fracture Mechanics 127, 211-225. Wallin, K., 1985. The size effect in KIC results. Engineering Fracture Mechanics 22, 149-163. Wallin, K., 1993. Irradiation damage effects on the fracture toughness transition curve shape for reactor pressure vessel steels. International Journal of Pressure Vessels and Piping 55, 61-79. Wallin, K., 2002. Master Curve analysis of the “Euro” fracture toughness dataset. Engineering Fracture Mechanics 69, 451-481. Wallin, K., 2004. Critical review of the theoretical basis of the ORNL letter report ORNL/NRC/LTR-01/08. Research report No. BTUO72-041250. VTT Technical Research Centre of Finland. Wasiluk, B., Petti, J. P., Dodds, R. H. Jr., 2006. Temperature dependence of Weibull stress parameters: Studies using the Euro-material. Engineering Fracture Mechanics 73, 1046-1069. American Society of Testing and Material (ASTM) International, 2015. Test method for the determination of reference temperature for ferritic steels in transition range. ASTM E-1921. West Conshohocken, PA(United States): ASTM International.

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