Studies on the cyclic crack resistance of high-strength steels for assessing the service life of deep-sea equipment
Tóm tắt
Từ khóa
Tài liệu tham khảo
DNV-RP-C203. Fatigue Design of Offshore Steel Structures, Oslo: Det Norske Veritas, 2011.
Det Norske Veritas/Classification Notes DNV-CN30-7 “Fatigue Assessment of Ship Structures”, Oslo: Det Norske Veritas, 2010.
BS 7608:1993: Code of Practice for Fatigue Design and Assessment of Steel Structures.
ISO 19902:2007: Petroleum and Natural Gas Industries Fixed Steel Offshore Structures.
Hobbacher, A., Recommendations for fatigue design of welded joints and components, in Document XIII-2151R1-07/XV-1254R1–07, Villepinte: Int. Inst. Welding, 2007.
Eurocode 3: Design of Steel Structures. Part 1–9: Fatigue.
Srivastava, V. and Sridhar, K., Corrosion fatigue crack growth and threshold stress intensity factors of shipbuilding steel, Proc. of Navy and Shipbuilding Nowadays (NSN’2011), St. Petersburg, Russia, June 30–July 1, 2011.
BS 7910:2005: Guide to Methods for Assessing Acceptability of Flaws in Metallic Structures.
ASME Boiler and Pressure Vessel Code. Section XI. Rules for In-service Inspection of Nuclear Power Plant Components, New York: Am. Soc. Mech. Eng., 2015.
Nigmatulin, V.I., Palii, O.M., and Rybakina, O.G., Experimental evaluation of the effect of compressive stresses on cyclic crack resistance of structural materials, Tr. Krylovskogo Gos. Nauch. Tsentra, 2013, no. 75 (359), pp. 61–68.
BS ENISO 11782: Part 2. Corrosion of Metals and Alloys Corrosion Fatigue Testing. Crack Propagation Testing Using Pre-Cracked Specimens, 2008.
ASM Handbook, Vol. 19: Fatigue and Fracture, New York: Am. Soc. Mech. Eng., 1996.