A nucleation theory for yielding of nearly defect-free crystals: understanding rate dependent yield points
Abstract
Experiments and simulations show that when an initially defect free rigid crystal is subjected to deformation at a constant rate, irreversible plastic flow commences at the so-called {\em yield point}. The yield point is a weak function of the deformation rate, which is usually expressed as a power law with an extremely small non-universal exponent. We re-analyze a representative set of published data on nanometer sized, mostly defect free, Cu, Ni and Au crystals in the light of a recently proposed theory of yielding based on nucleation of stable stress-free regions inside the metastable rigid solid. The single relation derived here, which is {\em not} a power law, explains data covering {\em fifteen} orders of magnitude in time scales.
Keywords
Cite
@article{arxiv.1908.08829,
title = {A nucleation theory for yielding of nearly defect-free crystals: understanding rate dependent yield points},
author = {Vikranth Sagar Reddy and Parswa Nath and Jürgen Horbach and Peter Sollich and Surajit Sengupta},
journal= {arXiv preprint arXiv:1908.08829},
year = {2020}
}
Comments
5 pages, 2 figures