Residual Stresses in Glasses
Soft Condensed Matter
2015-06-15 v1 Materials Science
Abstract
The history dependence of the glasses formed from flow-melted steady states by a sudden cessation of the shear rate is studied in colloidal suspensions, by molecular dynamics simulations, and mode-coupling theory. In an ideal glass, stresses relax only partially, leaving behind a finite persistent residual stress. For intermediate times, relaxation curves scale as a function of , even though no flow is present. The macroscopic stress evolution is connected to a length scale of residual liquefaction displayed by microscopic mean-squared displacements. The theory describes this history dependence of glasses sharing the same thermodynamic state variables, but differing static properties.
Cite
@article{arxiv.1302.3914,
title = {Residual Stresses in Glasses},
author = {M. Ballauff and J. M. Brader and S. U. Egelhaaf and M. Fuchs and J. Horbach and N. Koumakis and M. Krüger and M. Laurati and K. J. Mutch and G. Petekidis and M. Siebenbürger and Th. Voigtmann and J. Zausch},
journal= {arXiv preprint arXiv:1302.3914},
year = {2015}
}
Comments
submitted to Physical Review