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  5. Flow and Fracture in Drying Nanoparticle Suspensions

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Article
English
2003

Flow and Fracture in Drying Nanoparticle Suspensions

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0 Files

English
2003
Physical Review Letters
Vol 91 (22)
DOI: 10.1103/physrevlett.91.224501

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John W. Hutchinson
John W. Hutchinson

Harvard University

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Eric R. Dufresne
Eric I. Corwin
N. A. Greenblatt
+7 more

Abstract

Drying aqueous suspensions of monodisperse silica nanoparticles can fracture in remarkable patterns. As the material solidifies, evenly spaced cracks invade from the drying surface, with individual cracks undergoing intermittent motion. We show that the growth of cracks is limited by the advancement of the compaction front, which is governed by a balance of evaporation and flow of fluid at the drying surface. Surprisingly, the macroscopic dynamics of drying show signatures of molecular-scale fluid effects.

How to cite this publication

Eric R. Dufresne, Eric I. Corwin, N. A. Greenblatt, Jacqueline Ashmore, D. Y. Wang, A. D. Dinsmore, Ji‐Xin Cheng, X. Sunney Xie, John W. Hutchinson, David A. Weitz (2003). Flow and Fracture in Drying Nanoparticle Suspensions. Physical Review Letters, 91(22), DOI: 10.1103/physrevlett.91.224501.

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Publication Details

Type

Article

Year

2003

Authors

10

Datasets

0

Total Files

0

Language

English

Journal

Physical Review Letters

DOI

10.1103/physrevlett.91.224501

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