Localized strain and crystallographic orientation distribution during rolling process have a significant effect on anisotropic flow behavior in sheet forming of aluminum alloy, resulting in local thinning. In this study, crystal plasticity finite element method (CPFEM), which incorporates a crystal plasticity constitutive law into the three-dimensional finite element method, was used to investigate strain localization and textural evolution during the flat rolling process of the face-centered-cubic material. A rate-dependent polycrystalline theory based on the Taylor model was fully implemented into an in-house program, CAMProll3D. The through-thickness texture evolution depending on the degree of draught was predicted by using the develope...
The goal of this work was theoretical and experimental study of micro- and macroscopic mechanical fi...
The goal of this work was theoretical and experimental study of micro- and macroscopic mechanical fi...
The goal of this work was theoretical and experimental study of micro- and macroscopic mechanical fi...
The crystal plasticity finite element method (CPFEM), which incorporates the crystal plasticity cons...
In this thesis, finite element analyses based on a rate-dependent Taylor-type polycrystal model have...
A crystal plasticity finite element method (CPFEM) model was developed to analyse the surface roughn...
Plastic anisotropy (earring) inherent in textured aluminum sheet metal is investigated based on the ...
Polycrystal plasticity theory provides a foundation for the introduction of anisotropy into finite e...
Numerical simulations of forming limit diagrams (FLDs) are performed based on a rate-sensitive polyc...
AbstractAutomotive aluminum alloy sheet metal needs to improve the formability and the strength. In ...
A finite element formulation based on crystal plasticity constitutive models has been developed for ...
Numerical simulations of forming limit diagrams (FLDs) are performed based on a rate-sensitive polyc...
Plastic strain control of aluminum alloys are of importance for improvement of sheet microstructure ...
Grain-scale surface roughening due to plastic straining in polycrystalline aluminum is studied with ...
Consideration of plastic anisotropy is essential in accurate simulations of metal forming processes....
The goal of this work was theoretical and experimental study of micro- and macroscopic mechanical fi...
The goal of this work was theoretical and experimental study of micro- and macroscopic mechanical fi...
The goal of this work was theoretical and experimental study of micro- and macroscopic mechanical fi...
The crystal plasticity finite element method (CPFEM), which incorporates the crystal plasticity cons...
In this thesis, finite element analyses based on a rate-dependent Taylor-type polycrystal model have...
A crystal plasticity finite element method (CPFEM) model was developed to analyse the surface roughn...
Plastic anisotropy (earring) inherent in textured aluminum sheet metal is investigated based on the ...
Polycrystal plasticity theory provides a foundation for the introduction of anisotropy into finite e...
Numerical simulations of forming limit diagrams (FLDs) are performed based on a rate-sensitive polyc...
AbstractAutomotive aluminum alloy sheet metal needs to improve the formability and the strength. In ...
A finite element formulation based on crystal plasticity constitutive models has been developed for ...
Numerical simulations of forming limit diagrams (FLDs) are performed based on a rate-sensitive polyc...
Plastic strain control of aluminum alloys are of importance for improvement of sheet microstructure ...
Grain-scale surface roughening due to plastic straining in polycrystalline aluminum is studied with ...
Consideration of plastic anisotropy is essential in accurate simulations of metal forming processes....
The goal of this work was theoretical and experimental study of micro- and macroscopic mechanical fi...
The goal of this work was theoretical and experimental study of micro- and macroscopic mechanical fi...
The goal of this work was theoretical and experimental study of micro- and macroscopic mechanical fi...