Download e-book for iPad: Advanced Rubber Composites by A. K. Bhowmick, M. Bhattacharya, S. Mitra, K. Dinesh Kumar

By A. K. Bhowmick, M. Bhattacharya, S. Mitra, K. Dinesh Kumar (auth.), Gert Heinrich (eds.)

ISBN-10: 3642195040

ISBN-13: 9783642195044

Morphology–Property courting in Rubber-Based Nanocomposites: a few fresh advancements, via A. okay. Bhowmick, M. Bhattacharya, S. Mitra, ok. Dinesh Kumar, P. ok. Maji, A. Choudhury, J. J. George and G. C. Basak; * Rubber–Clay Nanocomposites: a few contemporary effects, by way of Amit Das, De-Yi Wang, Klaus Werner Stöckelhuber, René Jurk, Juliane Fritzsche, Manfred Klüppel and Gert Heinrich; * floor amendment of Fillers and Curatives via Plasma Polymerization for more suitable functionality of unmarried Rubbers and varied Rubber/Rubber Blends, by way of J. W. M. Noordermeer, R. N. Datta, W. ok. Dierkes, R. Guo, T. Mathew, A. G. Talma, M. Tiwari and W. van Ooij; * fresh advancements on Thermoplastic Elastomers via Dynamic Vulcanization, by way of R. Rajesh Babu and Kinsuk Naskar; * PTFE-Based Rubber Composites for Tribological functions, by means of M. S. Khan and G. Heinrich

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At still higher loading, the tan d peak height starts to increase. As the rubber–filler interaction increases, the available free-chains decrease, resulting in a decrease in tan dmax. The lowest value of tan dmax in FNA4-V is due to better filler dispersion and higher interaction between the fluoroelastomer and polar unmodified clay compared to the organically modified clay. This observation has been found to be very unique for the fluoroelastomer nanocomposite system. Over a wide range of temperatures, both the unmodifiedand the modified-clay-filled systems show increased storage modulus compared to the gum vulcanizate (Fig.

At a particular TEOS concentration, the tensile properties improve with increasing hydrophilicity of the polymer matrix and acrylic acid modification. K. Bhowmick et al. The mechanism for improvement in mechanical properties of the hybrids has been explained. The effect of acrylic copolymer and terpolymer composition on the properties of in situ polymer/silica hybrid nanocomposites has been further studied by Patel et al. [145]. They have observed that terpolymer–silica hybrids demonstrate superior mechanical properties compared to the copolymer–silica hybrids.

The lowest value of tan dmax in FNA4-V is due to better filler dispersion and higher interaction between the fluoroelastomer and polar unmodified clay compared to the organically modified clay. This observation has been found to be very unique for the fluoroelastomer nanocomposite system. Over a wide range of temperatures, both the unmodifiedand the modified-clay-filled systems show increased storage modulus compared to the gum vulcanizate (Fig. 18b). For example, at 25 C, 10% improvement in log E0 can be observed with 4 phr of unmodified clay compared to the control.

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Advanced Rubber Composites by A. K. Bhowmick, M. Bhattacharya, S. Mitra, K. Dinesh Kumar (auth.), Gert Heinrich (eds.)


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