Sudden collapse of a colloidal gel
Abstract
Metastable gels formed by weakly attractive colloidal particles display a distinctive two-stage time-dependent settling behavior under their own weight. Initially a space-spanning network is formed that for a characteristic time, which we define as the lag time , resists compaction. This solid-like behavior persists only for a limited time. Gels whose age is greater than yield and suddenly collapse. We use a combination of confocal microscopy, rheology and time-lapse video imaging to investigate both the process of sudden collapse and its microscopic origin in an refractive-index matched emulsion-polymer system. We show that the height of the gel in the early stages of collapse is well described by the surprisingly simple expression, , with the initial height and the time counted from the instant where the gel first yields. We propose that this unexpected result arises because the colloidal network progressively builds up internal stress as a consequence of localized rearrangement events which leads ultimately to collapse as thermal equilibrium is re-established.
Keywords
Cite
@article{arxiv.1109.4893,
title = {Sudden collapse of a colloidal gel},
author = {Paul Bartlett and Lisa J. Teece and Malcolm A. Faers},
journal= {arXiv preprint arXiv:1109.4893},
year = {2015}
}
Comments
14 pages, 11 figures, final version