Rheology of carbon black suspensions. V. Heat-induced gelation and its reversibility
Author:
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics,General Materials Science
Link
http://link.springer.com/content/pdf/10.1007/s00397-011-0562-1.pdf
Reference16 articles.
1. Amari T, Watanabe K (1983) Rheological properties of disperse systems of pigment. Polym Eng Rev 3:277–321
2. Aoki Y (2007) Rheological characterization of carbon black/varnish suspensions. Colloids Surf A 308:79–86
3. Aoki Y (2008) Rheological characterization of carbon black/polystyrene solution systems. J Appl Polym Sci 108:2660–2666
4. Aoki Y (2011) Rheology of carbon black suspensions. IV. Effect of suspending media on the sol–gel transition behavior. Rheol Acta (in press)
5. Aoki Y, Watanabe H (2004) Rheology of carbon black suspensions. III. Sol–gel transition system. Rheol Acta 43:390–395
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3. Rheology of Carbon Nanoparticle Suspensions and Nanocomposites;Rheology of Non-Spherical Particle Suspensions;2015
4. Thermoreversible gelation in poly(ethylene oxide)/carbon black hybrid melts;Polymer;2014-11
5. Glass Transition as the Rheological Inverse of Gelation;Macromolecules;2013-03-05
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