Special Grain Boundaries in Ultrafine-Grained Tungsten

Nanoscale Res Lett. 2016 Dec;11(1):332. doi: 10.1186/s11671-016-1488-4. Epub 2016 Jul 15.

Abstract

Field ion microscopy and computer simulation were used for the study of an atomic structure high-angle grain boundary in hard-drawn ultrafine-grained tungsten wire. These boundaries with special misorientations are beyond the scope of the coincident site lattice model. It was demonstrated that the special non-coincident grain boundaries are the plane-matching boundaries, and rigid-body displacements of adjacent nanograins are normal to the <110> misorientation axis. The vectors of rigid-body translations of grains are described by broad asymmetric statistical distribution. Mathematical modeling showed that special incommensurate boundaries with one grain oriented along the {211} plane have comparatively high cohesive energies. The grain-boundary dislocations ½<110> were revealed and studied at the line of local mismatch of {110} atomic planes of adjacent grains.

Keywords: Field ion microscope; Grain boundaries; Nanostructure; Tungsten.