In this study, a crystal plasticity finite element method (CPFEM) model has been developed to investigate the anisotropic plastic behavior of (001) aluminum single crystal during high-pressure torsion (HPT). The distributions of equivalent plastic strain and Mises stress recorded on the sample surface are presented. The directional variations of plastic strain and Mises stress with the development of four-fold symmetry pattern are observed along the sample circumference. The crystallographic orientation evolution along the tangential direction is studied, and the corresponding lattice rotation and slip trace are predicted, respectively. The plastic anisotropy mechanism is discussed in detail based on the theory of crystal plasticity. The si...
Commercially pure aluminum was chosen as a model face-centered cubic material for a detailed investi...
MasterRecently, various methods of sever plastic (SPD) deformation have been developed to fabricate ...
The excellent properties of ultra-fine grained (UFG) materials are relevant to substantial grain ref...
In this study, a crystal plasticity finite element method (CPFEM) model has been developed to invest...
383-389In this study, the local texture evolution during high pressure torsion (HPT) deformation of ...
In this study, the local texture evolution during high pressure torsion (HPT) deformation of aluminu...
In order to study the strain rate effect on single crystal of aluminum (99.999% purity), aluminum si...
High pressure torsion (HPT) is one of the successful and efficient methods of severe plastic deforma...
This work combined experiments at the grain level with the constitutive modeling of a single crystal...
A study of plastic deformation behavior during high pressure torsion process by crystal plasticity f...
The crystal plasticity finite element method (CPFEM), which incorporates the crystal plasticity cons...
The mechanical anisotropy of an AA1050 aluminium plate is studied by the use of five crystal plastic...
Commercially pure aluminum was chosen as a model face-centered cubic material for a detailed investi...
The mechanical anisotropy of an AA1050 aluminium plate is studied by the use of five crystal plastic...
Commercially pure aluminum was chosen as a model face-centered cubic material for a detailed investi...
Commercially pure aluminum was chosen as a model face-centered cubic material for a detailed investi...
MasterRecently, various methods of sever plastic (SPD) deformation have been developed to fabricate ...
The excellent properties of ultra-fine grained (UFG) materials are relevant to substantial grain ref...
In this study, a crystal plasticity finite element method (CPFEM) model has been developed to invest...
383-389In this study, the local texture evolution during high pressure torsion (HPT) deformation of ...
In this study, the local texture evolution during high pressure torsion (HPT) deformation of aluminu...
In order to study the strain rate effect on single crystal of aluminum (99.999% purity), aluminum si...
High pressure torsion (HPT) is one of the successful and efficient methods of severe plastic deforma...
This work combined experiments at the grain level with the constitutive modeling of a single crystal...
A study of plastic deformation behavior during high pressure torsion process by crystal plasticity f...
The crystal plasticity finite element method (CPFEM), which incorporates the crystal plasticity cons...
The mechanical anisotropy of an AA1050 aluminium plate is studied by the use of five crystal plastic...
Commercially pure aluminum was chosen as a model face-centered cubic material for a detailed investi...
The mechanical anisotropy of an AA1050 aluminium plate is studied by the use of five crystal plastic...
Commercially pure aluminum was chosen as a model face-centered cubic material for a detailed investi...
Commercially pure aluminum was chosen as a model face-centered cubic material for a detailed investi...
MasterRecently, various methods of sever plastic (SPD) deformation have been developed to fabricate ...
The excellent properties of ultra-fine grained (UFG) materials are relevant to substantial grain ref...