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Guven. Rheological aspects of aqueous smectite suspensions. J. Alderman, A. Gavignet, D. C. Maitland. SPE 18035, 63 rd ANN. Tech. Conf. Houston, 1988, p. 187 [18] S. F. luckham, T. Tadros. Colloids surf. A 201, 85 (2002). [19] S. F. luckham, N. Green, and T. Cosgrove. NMR solvent relaxation studies of Na+ montmorillonite clay suspensions containing non ionic polymers. Colloids and surf. A 215 (2003), 11-24 [20] S. F. luckham, T. Tadros. Influence of non-ionic polymers on the rheological behaviour of Na+-montmorillonite clay suspensions.

The rheological properties and characterization of bentonite dispersions in the presence of non ionic polymer PEG. J. of materials sci. 40 (2005), 171-177 [7] M. Benna, N. Kbir-Ariguib, A. Magnin et F. Bergaya. Effect of pH on rheological propreties of purified sodium bentonite suspensions. J. of col. and interface science. H. Manoratne et al.. Ionic conductivity of polyethylene oxide (PEO) PEO-Montmorillonite (MMT) nanocomposites prepared by intercalation from aqueous medium. Int. J. Electrochem.

Electrochem. , 1 (2006), 32-46 [9] S. F. luckham, T. Tadros. Influence of non-ionic polymers on the rheological behaviour of Na+ -monmorillonite clay suspensions. Part II. Homopolymer ethyleneoxide and polypropylene oxide-polyethylene oxide ABA copolymers. W. Ebagninin, A. Benchabane, et K. Bekkour. L’empreinte pont-polymère sur le comportement rhéologique des mélanges bentonite-PEO. 41 ème colloque du GFR, pp. 271274. Cherbourg, 18-20 octobre (2006). [11] O. Ogata et al.. Structure and thermal/mechanical properties of poly(ethylene oxide)-clay minerals blends.

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