References
- Talijiat B, Radhakrishnan B, and Zacharia T, Numerical analysis of GTA welding process with emphasis on post-solidification phase transformation effects on residual stress, Material Science Engineering A, 246(1-2), (1998), 45-54. https://doi.org/10.1016/S0921-5093(97)00729-6
- Barsoum Z and Barsoum I, Residual stress effects on fatigue life of welded structures using LEFM, Engineering Failure Analysis, 16, (2009), 449-467. https://doi.org/10.1016/j.engfailanal.2008.06.017
- Webster GA and Ezeilo AN, Residual stress distributions and their influence on fatigue lifetimes, International Journal of Fatigue, 23(1), (2001), 375-383.
- Teng TL and Chang PH, Effect of residual stresses on fatigue crack initiation life for buttwelded joints, Journal of Materials Processing Technology, 145(3), (2004), 325-335. https://doi.org/10.1016/j.jmatprotec.2003.07.012
- Matsuoka K, An evaluation method on fatigue crack initiation life at welded joints in steel tructures, Journal of the Society of Naval Architects of Japan, 178, (1995), 513-522.
- Tomita Y, Matoba M, and Kawabe H, Fatigue crack growth behavior under random loading model simulating real encountered wave condition, Marine Structures, 8(4), (1995), 407-422. https://doi.org/10.1016/0951-8339(94)00028-Q
- DNV, Fatigue Design of Offshore Steel Structures, Recommended Practice, RP-C203, Det Norske Veritas(DNV), (2008).
- Chang PH and Teng TL, Numerical and experimental investigations on the residual stresses of the butt-welded joints, Computational Materials Science, 29(4), (2004), 511-522. https://doi.org/10.1016/j.commatsci.2003.12.005
- Kobewelco Co. Ltd., Kobewelco welding today, 4th special edition, (2011); http://www.kobelco.co.jp/english/welding/files/kwt_special_low_temperature_4th_edition_Rev1.pdf
- Noyan IC and Cohen JB, Residual Stress-Measurement by Diffraction and Interpretation, Springer, New York, (1987).
- Cullity BD, Elements of X-ray Diffraction (second ed.). Addison-Wesley Publishing Company, (1978).
- Barsouma Z and Lundbackb A, Simplified FE welding simulation of fillet welds - 3D effects on the formation residual stresses, Engineering Failure Analysis, 16(7), (2009), 2281-2289. https://doi.org/10.1016/j.engfailanal.2009.03.018
- Goldak JA, Chakravarti AP, and Bibby M, A new finite element model for welding heat sources, Metallurgical Transactions, 15B, (1984), 299-305.
- Atkins G, Thiessen D, Nissley N, and Adonyi Y, Welding Process Effects in Weldability Testing of Steels, Welding Journal, April (2002), 61-68.
- Brown S and Song H, Finite element simulation of welding of large structures, Journal of Engineering for Industry, 114(11), (1992), 441-451. https://doi.org/10.1115/1.2900696
- Vinokurov VA, Welding Stresses and Distortion, The British Library, Boston Spa, England, (1977).
- Rykalin RR, Energy Sources for Welding, Houdrement Lecture, International Institute of Welding, London, (1974).
- Yi HJ, Kim JY, Yoon JH, and Kang SS, Investigations on welding residual stress and distortion in a cylinder assembly by means of a 3D finite element method and experiments, Journal of Mechanical Science and Technology, 25(12), (2011), 3185-3193. https://doi.org/10.1007/s12206-011-1003-x
Cited by
- Finite Element Analysis on the Improvement of Residual Deformation of the Part After Pulse Laser Welding of Circular Cover vol.33, pp.6, 2015, https://doi.org/10.5781/JWJ.2015.33.6.60