A multi-phase linear kinematic elastoplastic model for the HAZ of welded S355J2 steel under low-cycle fatigue

Author:

Giraud Landry,Pouvreau Cédric,Josse François,Berckmans William,Lefebvre Fabien,Carrillo Christophe,Feulvarch Eric

Publisher

Cellule MathDoc/CEDRAM

Reference21 articles.

1. [1] Benoit, A.; Remy, L.; Koster, A.; Maitournam, H.; Roger, F. Experimental investigation of the behavior and the low cycle fatigue life of a welded structure, Mater. Sci. Eng. A, Volume 595 (2014), pp. 64-76

2. [2] Rettenmeier, P.; Roos, E.; Weihe, S. Fatigue analysis of multiaxially loaded crane runway structures including welding residual stress effects, Int. J. Fatigue, Volume 82 (2016), pp. 179-187

3. [3] Baptista, R.; Santos, T.; Marques, J.; Guedes, M.; Infante, V. Fatigue behavior and microstructural characterization of a high strength steel for welded railway rails, Int. J. Fatigue, Volume 117 (2018), pp. 1-8

4. [4] Feulvarch, E.; Robin, V.; Bergheau, J. M. Thermometallurgical and mechanical modelling of welding - application to multipass dissimilar metal girth welds, Sci. Technol. Weld. Joining, Volume 16 (2011), pp. 221-231

5. [5] Eggeler, G.; Ramteke, A.; Coleman, M.; Chew, B.; Peter, G.; Burblies, A.; Hald, J.; Jefferey, C.; Rantala, J.; deWitte, M. Analysis of creep in a welded P91 pressure vessel, Int. J. Press. Vessels Pip., Volume 60 (1994), pp. 237-257

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