Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4966134 | Finite Elements in Analysis and Design | 2017 | 10 Pages |
Abstract
Transient thermo-mechanical simulation of stainless plate laser welding process was performed by a highly efficient and accurate approach-hybrid iterative substructure and adaptive mesh method. Especially, residual stress prediction was enhanced by considering various heat effects in the numerical model. The influence of laser welding heat input on residual stress and welding distortion of stainless thin sheets were investigated by experiment and simulation. X-ray diffraction (XRD) and contour method were used to measure the surficial and internal residual stress respectively. Effect of strain hardening, annealing and melting on residual stress prediction was clarified through a parametric study. It was shown that these heat effects must be taken into account for accurate prediction of residual stresses in laser welded stainless sheets. Reasonable agreement among residual stresses by numerical method, XRD and contour method was obtained. Buckling type welding distortion was also well reproduced by the developed thermo-mechanical FEM.
Related Topics
Physical Sciences and Engineering
Computer Science
Computer Science Applications
Authors
Hui Huang, Seiichiro Tsutsumi, Jiandong Wang, Liqun Li, Hidekazu Murakawa,