AbstractThis study aims to assess and compare three different approaches of inherent strain method for prediction of welding induced distortion; inherent strain, inherent deformation and shrinkage force approaches. The FEA was performed on T-fillet welded structures. The results are compared with elastic-plastic FEA and experiments and shows a qualitative good agreement. It is found that the inherent strain and inherent deformation approaches are suitable to predict transverse shrinkage and transverse bending whereas to predict the longitudinal shrinkage and longitudinal bending the shrinkage force approach is more suitable
Finite element (FE) simulation with inherent deformation is an ideal and practical computational app...
Part distortion is a critical issue during Additive Manufacturing (AM) of metallic parts since it pr...
Welded structures are subjected to highly localized heat distributions at the fused region.This give...
AbstractThis study aims to assess and compare three different approaches of inherent strain method f...
This study estimates the angular distortion and residual stresses due to welding using the following...
Welding as high productive joining method is widely employed in automotive, aerospace and shipbuildi...
Abstract Prediction of welding deformations for large structure is limited by computational reasons....
Multiply-stiffened, thin plate, welded fabrications are used in a wide variety of transport fields, ...
The Elastic Finite Element Method based on the inherent strain theory is used to predict the welding...
ABSTRACT:In the present study, the existing equivalent stain method is improved to make up for its w...
In this paper, three different finite element simulations of welded T-Joint are to be computed using...
Abstract: Multiply-stiffened, thin plate, welded fabrications are used in a wide variety of trans-po...
The Elastic Finite Element Method based on the inherent strain theory is used to predict the welding...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
ABSTRACTThis paper presents the simplified welding distortion analysis method to predict the welding...
Finite element (FE) simulation with inherent deformation is an ideal and practical computational app...
Part distortion is a critical issue during Additive Manufacturing (AM) of metallic parts since it pr...
Welded structures are subjected to highly localized heat distributions at the fused region.This give...
AbstractThis study aims to assess and compare three different approaches of inherent strain method f...
This study estimates the angular distortion and residual stresses due to welding using the following...
Welding as high productive joining method is widely employed in automotive, aerospace and shipbuildi...
Abstract Prediction of welding deformations for large structure is limited by computational reasons....
Multiply-stiffened, thin plate, welded fabrications are used in a wide variety of transport fields, ...
The Elastic Finite Element Method based on the inherent strain theory is used to predict the welding...
ABSTRACT:In the present study, the existing equivalent stain method is improved to make up for its w...
In this paper, three different finite element simulations of welded T-Joint are to be computed using...
Abstract: Multiply-stiffened, thin plate, welded fabrications are used in a wide variety of trans-po...
The Elastic Finite Element Method based on the inherent strain theory is used to predict the welding...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
ABSTRACTThis paper presents the simplified welding distortion analysis method to predict the welding...
Finite element (FE) simulation with inherent deformation is an ideal and practical computational app...
Part distortion is a critical issue during Additive Manufacturing (AM) of metallic parts since it pr...
Welded structures are subjected to highly localized heat distributions at the fused region.This give...