Radial filtration during constant-force squeeze flow of soft solids
Author:
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics,General Materials Science
Link
http://link.springer.com/content/pdf/10.1007/s00397-006-0151-x.pdf
Reference32 articles.
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2. Barnes HA (1995) A review of the slip (wall depletion) of polymer solutions, emulsions and particle suspensions in viscometers: its cause, character, and cure. J Non-Newton Fluid Mech 56:221–251
3. Chaari F, Racineux G, Poitou A, Chaoche M (2003) Rheological behavior of sewage sludge and strain-induced dewatering. Rheol Acta 42:273–279
4. Chan TW, Baird DG (2002) An evaluation of a squeeze flow rheometer for the rheological characterization of a filled polymer with a yield stress. Rheol Acta 41:245–256
5. Collomb J, Chaari F, Chaouche M (2004) Squeeze flow of concentrated suspensions of spheres in Newtonian and shear-thinning fluids. J Rheol 48:405–416
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1. Dynamics of Soft Glassy Materials under Tensile and Squeeze Flow Fields;Springer Tracts in Mechanical Engineering;2015
2. Modeling radial filtration in squeeze flow of highly concentrated suspensions;Rheologica Acta;2014-06-19
3. Radial filtration in highly concentrated suspensions undergoing constant-force squeeze flow and its effect on the normal stress distribution;Rheologica Acta;2014-03-14
4. Normal stress distribution in highly concentrated suspensions undergoing squeeze flow;Rheologica Acta;2013-01-23
5. Squeeze flow behavior of (soft glassy) thixotropic material;Journal of Non-Newtonian Fluid Mechanics;2012-01
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