Publication: Junction formation during desiccation cracking
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Program
KU-Authors
KU Authors
Co-Authors
Toga, K. B.
Advisor
Publication Date
2006
Language
English
Type
Journal Article
Journal Title
Journal ISSN
Volume Title
Abstract
In order to provide a sound physical basis for the understanding of the formation of desiccation crack networks, an experimental study is presented addressing junction formation. Focusing on junctions, basic features of the network determining the final pattern, provides an elemental approach and imparts conceptual clarity to the rather complicated problem of the evolution of crack patterns. Using coffee-water mixtures a clear distinction between junction formation during nucleation and propagation is achieved. It is shown that for the same drying suspension, one can switch from the well-known symmetric triple junctions that are unique to the nucleation phase to propagation junctions that are purely dictated by the variations of the stress state. In the latter case, one can even manipulate the path of a propagating crack in a deterministic fashion by changing the stress state within the suspension. Clear microscopic evidence is provided for the formation of propagation junctions, and material inhomogeneity is observed to be reflected by a broad distribution of angles, in stark contrast to shrinkage cracks in homogeneous solid films.
Description
Source:
Physical Review E
Publisher:
American Physical Society (APS)
Keywords:
Subject
Physics, Mathematical physics