PSI - Issue 19
Edrissa Gassama et al. / Procedia Structural Integrity 19 (2019) 711–718 Gassama et al./ Structural Integrity Procedia 00 (2019) 000 – 000
717
7
References
Andrews, R.M., 1996. The Effect of Misalignment on the Fatigue Strength of Welded Cruciform Joints. Fatigue & Fracture of Engineering Materials and Structures 19, 755-768. API 579-1/ASME FFS-1, 2016. Fitness-for-Service, Washington, DC: American Petroleum Institute. ASME B31.3, 2018. Process Piping. Baptista, R., Infante, V., Branco, C.M., 2008. Study of the Fatigue Behavior in Welded Joints of Stainless Steels Treated by Weld Toe Grinding and Subjected to Salt Water Corrosion. International Journal of Fatigue 30, 453-462. Bell, R., Vosikovsky, O., 1993. Fatigue Life Prediction of Welded Joints for Offshore Structures Under Variable Amplitude Loading. Journal of Offshore Mechanics and Artic Engineering 115, 123-130. Bell, R., Vosikovsky, O., Bain, S.A., 1989. The significance of Weld Toe Undercuts in the Fatigue of Steel Plate T-Joints. International Journal of Fatigue 11, 3-11. Bifano, M.F.B., Breaux, L., Feller, A.J., Brodzinski, R., 2018. New Fatigue Screening Criteria for the Fintess-for-Service Assessment of In Service Process Piping Vibrations. ASME 2018 Pressure Vessels and Piping Conference, PVP2018-84847. Booth, G.S., Wylde, J.G., 1990. Procedural Considerations Relating to the Fatigue Testing of Steel Weldments, in Fatigue and Fracture Testing of Weldments. ed. J. Potter and H. McHenry (West Conshohocken, PA: ASTM International), 3-15. Breaux, L., McNeill, S., Szasz, G, 2016. Fitness-for-Service Assessment of Piping Subject to Random Vibration. ASME 2016 Pressure Vessels and Piping Conference, PVP2016-63695. BS 7608, 2014. Guide to Fatigue Design and Assessment of Steel Products. British Standards Institution. Bureau Veritas NT 3199, 2013. Guide for Application of the Mesh-Insensitive Methodology – Welde Steel Plates of Ship and Offshore Structures Buitrago, J., Weir, M.S., Kan, W.C., 2003. Fatigue Design and Performance Verification of Deepwater Risers. ASME. International Conference on Offshore Mechanics and Arctic Engineering, Volume 3: Materials Technology; Ocean Engineering; Polar and Arctic Sciences and Technology; Workshops ():351-366. doi:10.1115/OMAE2003-37492. Chatterjee, S., McLeish, D. L., 1981. Fitting Linear Regression Models to Censored Data by Least Squares and the Method of Maximum Likelihood. SIAM Institute for Mathematics and Society, Technical Report 51. DNV-RP-C203, 2011. Fatigue Design of Offshore Steel Structures. ECSC, European Coal and Steel Community, 1975. Fatigue Investigation of Higher Strength Structural Steels in Notched and in Welded Condition. Steel Research Reports EUR 5357e, Commission of the European Communities. Energy Institute 2008. Guidelines for the Avoidance of Vibration Induced Fatigue Failure in Process Pipework. 2nd Edition; ISBN 9780852934630. Gioielli, P.C., Zettlemoyer, N., 2007. S-N Fatigue Tests of 9% Nickel Steel Weldments. Proceedings of the Seventeenth International Offshore and Polar Engineering Conference. ISBN 978-1-880653-68-5. Gioielli, P.C., Zettlemoyer, N., 2008. Cryogenic Fatigue Tests of 9% Nickel Steel Weldments. Proceedings of the Eighteenth International Offshore and Polar Engineering Conference. ISBN 978-1-880653-70-8. Hechmet, J.L., Kuhn, III, E.J., 1998. Fatigue-Strength Reduction Factors for Welds Based on NDE. Welding Research Council Bulletin 432. Hobbacher, A.F., 2016. Recommendations for Fatigue Design of Welded Joints and Components. IIW Collection 978-3-319-23756-5. Hong, J.K., 2010. Evaluation of Weld Root Failure Using Battelle Structural Stress Method. Proceedings of the ASME 29 th International Conference on Ocean, Offshore and Arctic Engineering, OMAE2010-20387. Huo, L., Dongpo, W., Zhang, Y., 2005. Investigation of the Fatigue Behavior of the Welded Joints Treated by TIG Dressing and Ultrasonic Peening under Variable-Amplitude Load. International Journal of Fatigue 27, 95-101. Kang, H., Khosrovaneh, A., Amaya, M., Bonnen, J., Shih, H.-C., Mane, S., Link, T., 2011. Application of Fatigue Life Prediction Methods for GMAW Joints in Vehicle Structures and Frames. SAE Technical Paper 2011-01-0192 Kang, S.W., Kim, W.S., 2003. A Proposed S-N Curve for Welded Ship Structures. The Welding Journal, 161-169. Kang, S.W., Kim, Y.W., Kim, W.S., Kim, D.H., 2001. Re-distribution of Welding Residual Stress Due to Tensile Pre-load and Its Effect on Fatigue Strength in Padding Plate Weldment. Journal of the Society of Naval Architects of Korea 38, 75-82. Kassner, M., Küppers, M., Bieker, G., Moser, C., Sonsino, C.M., 2010. Fatigue Design of Welded Components of Railway Vehicles – Influence of Manufacturing Conditions and Weld Quality. Welding in the World 54, R267-R278. Kihl, D.P., Sarkani, S., 1997. Thickness Effects on the Fatigue Strength of Welded Steel Cruciforms. International Journal of Fatigue 19, S311 S316. Kihl, D.P., Sarkani, S., 1999. Mean Stress Effects in Fatigue of Welded Steel Joints. Probabilistic Engineering Mechanics 14, 97-104. Kim, M.H., Kang, S.W., 2008. Testing and Analysis of Fatigue Behaviour in Edge Details: A Comparative Study Using Hot Spot and Structural Stresses. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 222, 2351 – 2363. Kim, I.-T., Yamanda, K., 2005. Fatigue Life Evaluation of Welded Joints Under Combined Normal and Shear Stress Cycles. International Journal of Fatigue 27, 695-701. Kim, M.H., Kang, S.W., Lee, J.M., Kim, W.S., 2006. Evaluation of Fatigue Strength Improvement of Ship Structural Details by Weld Tie Grinding. Key Engineering Materials 324-325, 1079-1082. Kim, W.S., Lotsberg, I., 2005. Fatigue Test Data for Welded Connections in Ship-Shaped Structures. Journal of Offshore Mechanics and Arctic Engineering 127, 359-365. Kirkhope, K.J., Bell, R., Caron, L., Basu, R.I., Ma, K.-T., 1999. Weld Detail Fatigue Life Improvement Techniques. Part 1: Review. Marine Structures 12, 447-474.
Made with FlippingBook - Online magazine maker