Title of article :
Self-interstitial atom clusters as obstacles to glide of edge dislocations in α-zirconium
Author/Authors :
Voskoboynikov، نويسنده , , R.E. and Osetsky، نويسنده , , Yu.N. and Bacon، نويسنده , , D.J.، نويسنده ,
Abstract :
Atomic-scale details of interaction of a 1 / 3 〈 1 1 2 ¯ 0 〉 { 1 1 ¯ 0 0 } edge dislocation with clusters of self-interstitial atoms (SIAs) in α-zirconium has been studied by computer simulation. Four typical clusters are considered. A triangular cluster of five SIAs lying within a basal plane bisected by the dislocation glide plane is not absorbed by the dislocation but acts as a moderately strong obstacle. A 3-D SIA cluster lying across the glide plane is completely absorbed by the dislocation by creation of super-jogs, and is a weak obstacle. Interaction of the dislocation with glissile SIA loops with perfect Burgers vector inclined at 60° to the dislocation glide plane shows that the process depends on the vector orientation. Defects of the two orientations are strong obstacles, and one, which initially forms a sessile segment on the dislocation line, is particularly so.
Keywords :
Computer simulation , Point defect clusters , zirconium , Dislocation-obstacle strength , Dislocation loop
Journal title :
Astroparticle Physics