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52, (2008), p. 129 [19] L. Jiang, G. Sun, S. Wang, G. Wang, Q. Xin, Z. Zhou, B. Zhou: Electrochemistry Communications Vol. 7 (2005), p. 663 Key Engineering Materials Vol. fr Keywords: electrorheological fluid, kaolinite, intercalation, DMSO, CMS, synthesis Abstract. The aim of this study is to elaborate electro-rheological fluids based on kaolinite. the scientific characterization made it possible the identification of the composite nature and the checking of the intercalation of the polymer among the clay particles The rheological behaviour of the fluid depends on the electric field.
A. C. Lewis: Carbon Vol. 22 (1984), p. 305. J. K. S. S. M. Stephan: Journal of Alloys and Compounds Vol. 141. [5] J. Simitzis and J. Sfyrakis: Journal of Applied Polymer Science Vol. 54 (1994), p. 2091. [6] Y. Kida, K. Yanagida, A. Funahashi, T. Nohma and I. Yonezu: Journal of Power Sources Vol. 94 (2001), p. 74. E. S. M. E. Mayer: Electrochemistry Communications Vol. 159. [8] E. Antolini: Applied Catalysis B: Environmental Vol. 1. [9] F. Vigier, C. Coutanceau, F. M. Belgsir and C. Lamy: Journal of Electroanalytical Chemistry Vol.
3] C. Agami: Bull. Soc. Chim. de France N° 4 (1965), p. 1021 [4] J. Courtot-Coupez and M. Le Demeyet: Bull. Soc. Chim. de France N° 3 (1969), p. 1033 [5] R. B. Shoemaker and E. Eriks: Acta cryst. N° 21 (1966), p. L. D. L. Gonzalez: Ethylene glycol monoethyl ether for determining surface area of silicate minerals. Soil Sci 100 (1965), p. K. Taylor: Cation exchange in clays and mud rocks by methylene blue. Journal of Chemical Technology and Biotechnology. Vol. 35 A (1985), p. 195-207 [8] AFNOR Sols.
Structural Analysis of Advanced Materials by Edited by Moussa Karama
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