Fracture toughness of wet and dry particulate materials comprised of colloidal sized particles: role of plastic deformation

Author:

Sesso Mitchell L.12345,Franks George V.12345ORCID

Affiliation:

1. Department of Chemical and Biomolecular Engineering

2. Melbourne School of Engineering

3. The University of Melbourne

4. Victoria 3010

5. Australia

Abstract

This work demonstrates a method of measuring the fracture toughness of particulate materials comprised of colloidal sized particles over a wide range of saturation.

Publisher

Royal Society of Chemistry (RSC)

Subject

Condensed Matter Physics,General Chemistry

Reference99 articles.

1. Theory of Drying

2. Y. Holl , J. L.Keddie, P. J.McDonald and W. A.Winnik, in Film Formation in Coatings, ed. T. Provder and M. W. Urban, American Chemical Society, Washington, DC, 2001, pp. 2–26

3. Stress development during drying of calcium carbonate suspensions containing carboxymethylcellulose and latex particles

4. Drying mechanisms and stress development in aqueous alumina tape casting

5. Cracking in Drying Latex Films

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