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Numerical modelling of damage behaviour of laser-hybrid welds
Authors:A. Nonn   W. Dahl  W. Bleck
Affiliation:

aDepartment of Ferrous Metallurgy, Aachen University, Intzestr. 1, 52072 Aachen, Germany

Abstract:The effect of laser-hybrid welds on deformation and failure behaviour of fracture mechanics specimens is investigated in order to provide quantitative prediction of damage tolerance and residual strength. The simulation of crack initiation and crack extension in hybrid welds is performed by applying GTN damage model. The identification of damage parameters requires combined numerical and experimental analyses. The tendency to crack path deviation during crack growth depends strongly on the constraint development at the interface between base and weld metal. In order to quantify the influence of local stress state on the crack path deviation, the initial crack location is varied. Finally, the results from fracture mechanics tests are compared to real component, beam-column-connection, with respect to fracture resistance.
Keywords:GTN model   Laser-hybrid welds   Damage   Crack path deviation
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