Rev.Adv.Mater.Sci. (RAMS)
No 1/2, Vol. 45, 2016, pages 91-96

NUCLEATION OF NANOGRAINS THROUGH STRESS-DRIVEN MIGRATION AND
SPLITTING OF GRAIN BOUNDARIES IN NANOMATERIALS AND GUM METALS

I.A. Ovid'ko, N.V. Skiba and A.G. Sheinerman

Abstract

A theoretical model is suggested which describes the generation of nanoscale grains due to stress-driven splitting and migration of grain boundaries in nanomaterials and Gum metals. In the framework of the suggested model, the stress-driven splitting and migration of grain boundaries are described as those related to transformations of grain boundary disclinations. The energy and stress characteristics for generation of nanoscale grains through stress-driven splitting and migration of grain boundaries in nanocrystalline aluminium, nanocrystalline nickel and Gum metal with the Ti-Nb-Ta-Zr-O composition are calculated.

full paper (pdf, 416 Kb)