Microstructure and yielding of capillary force induced gel
Author:
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics,General Materials Science
Link
http://link.springer.com/content/pdf/10.1007/s00397-020-01189-6.pdf
Reference35 articles.
1. Bonn D, Denn MM, Berthier L, Divous T, Manneville S (2017) Yield stress materials in soft condensed matter. Rev Mod Phys 89:035005
2. Bossler F, Koos E (2016) Structure of particle networks in capillary suspensions with wetting and non wetting fluids. Langmuir 32:1489
3. Bossler F, Maurath J, Dyhr K, Willenbacher N, Koos E (2018) Fractal approaches to characterize the structure of capillary suspensions using rheology and confocal microscopy. J Rheol 62:183
4. Cavalier K, Larchè F (2002) Effects of water on the rheological properties of calcite suspensions in dioctylphthalate. Coll Surf A 197:173
5. Coussot P, Ancey C (1999) Rheophysical classification of concentrated suspensions and granular pastes. Phys Rev E 59:4445
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