PSI - Issue 13
Konstantinos Kouzoumis et al. / Procedia Structural Integrity 13 (2018) 868–876 K. Kouzoumis et al. / Structural Integrity Procedia 00 (2018) 000–000
876
9
References
Anonymous, 1982. The E ff ect of Weld-Zone Defects on the Fracture of Large-Diameter Line Pipe. Technical Report. AISI, Committee of Large diameter line pipe producers. API, 2016. API 579-1 / ASME FFS-1 2016 Fitness-For-Service. American Petroleum Institute, Washington, D.C. Brocks, W., Ku¨necke, G., Wobst, K., 1989. Stable crack growth of axial surface flaws in pressure vessels. International Journal of Pressure Vessels and Piping 40, 77–90. doi:10.1016 / 0308-0161(89)90125-7. BSI, 1999. BS 7910:1999 + A1:2000 - Guide on Methods for Assessing the Acceptability of Flaws in Metallic Structures. BSI. BSI, 2005. BS 7910:2005 + A1:2007 - Guide to Methods for Assessing the Acceptability of Flaws in Metallic Structures. BSI. BSI, 2013. BS 7910:2013 + A1:2015 - Guide to Methods for Assessing the Acceptability of Flaws in Metallic Structures. BSI. Challenger, N.V., Phaal, R., Garwood, S.J., 1995. Appraisal of PD 6493:1991 Fracture Assessment Procedures Part II: Published and Additional TWI Data. Technical Report 512 / 1995. TWI Ltd. Demofonti, G., Mannucci, G., Harris, D., Barsanti, L., Hillenbrand, H.G., 2002. Fracture behaviour of X100 gas pipelines by full-scale tests, Yokohama, Japan. pp. 245–261. EDF Energy Nuclear Generation Ltd, 2000. Assessment of the Integrity of Structures Containing Defects, R6 - Revision 4, as amended. Folias, E., 1964. The Stresses in a Cylindrical Shell Containing an Axial Crack. Technical Report ARL 64-174. Aeronautical Research Laboratory, U.S. Air Force. Folias, E., 1965. An Axial Crack in a Pressurized Cylindrical Shell. International Journal of Fracture Mechanics 1 , 104–113. Folias, E., 1973. Fracture in Pressure Vessels (Chapter 21), in: Fung, Y.C., Sechler, E.E. (Eds.), Thin Shell Structures. Prentice Hall, Englewood Cli ff s, N.J, pp. 483–518. Folias, E.S., 1984. An axial crack in a pressurized cylindrical shell. International Journal of Fracture 26, 251–260. doi:10.1007 / BF00962958. Keller, H.P., Junker, G., Merker, W., 1987. Fracture analysis of surface cracks in cylindrical pressure vessels applying the two parameter fracture criterion (TPFC). International Journal of Pressure Vessels and Piping 29, 113–153. doi:10.1016 / 0308-0161(87)90121-9. Kiefner, J., Maxey, W., Eiber, R., Du ff y, A., 1973. Failure Stress Levels of Flaws in Pressurized Cylinders doi:10.1520 / STP49657S. Miller, A.G., 1988. Review of limit loads of structures containing defects. International Journal of Pressure Vessels and Piping 32, 197–327. doi:10.1016 / 0308-0161(88)90073-7. Milne, I., Knee, N., 1986. An EGF Exercise in Predicting Ductile Instability : Phase 2, Cracked Pressure Vessel. Technical Report CEGB TPRD / L / 2771 / N84. Central Electricity Generating Board. Sciammarella, C., 1985. Elastic-Plastic failure analysis of pressure vessel tests. Fracture Mechanics: Fourteenth Symposium , 597–616. Sloterdijk, W., 1995. The influence of the yield-to-tensile ratio on deformation controlled pipeline behaviour, Cambridge. Sturm, D., Stoppler, W., 1989. Phenomenological Pipe and Vessel Burst Tests. Technical Report Project 1500 279. MPA. Stuttgart. Pha¨nomenologishe Bha¨lterberstversuche. Trigwell, N., Williams, P., 1965. The Application of Warm Prestressing to Pressure Vessels. Technical Report MAT / 1965. MTS. Willoughby, A., Garwood, S.J., 1981. Ductile Fracture in Thin Section Pipeline Material. Contract Report 3591 / 2 / 81. TWI Ltd. Willoughby, A.A., Davey, T.G., 1989. Plastic Collapse in Part-Wall Flaws in Plates. Fracture Mechanics: Perspectives and Directions (Twentieth Symposium) doi:10.1520 / STP18834S.
Made with FlippingBook. PDF to flipbook with ease