Title of article :
The movement of screw dislocations in tungsten
Author/Authors :
Tian، نويسنده , , Xiaogeng and Woo، نويسنده , , Chungho Cho، نويسنده ,
Abstract :
Using Acland potential for tungsten, the movement of 1/2a<1 1 1> screw dislocation under shear stress was investigated by molecular dynamics simulation. Equilibrated core structure was obtained by relaxation of screw dislocation with proper boundary conditions. We found that the equilibrium dislocation core has three-fold symmetry and spread out in three <1 1 2> direction on {1 1 0} planes. The screw dislocation core could not keep the original shape when the shear stress applied. The dislocation could not move until the shear stress became large enough. The dislocation moved in zigzag when the shear stress neared the Peierls stress. When the shear stress became larger, the dislocation moved in zigzag at the beginning and than moved almost in straight line in [2̄11] direction. The large shear stress applied, the long distance moved before the dislocation stilled in z-direction and the large velocity in y-direction.
Keywords :
Molecular dynamics , Screw dislocation , Disregistry , Peierls stress
Journal title :
Astroparticle Physics