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Network reinforcement

Figure 8.4 Stress-strain isotherms for PDMS networks reinforced with in situ generated titania particles.39 Each curve is labeled with the wt % of filler introduced, and filled circles locate results used to test for reversibility. Figure 8.4 Stress-strain isotherms for PDMS networks reinforced with in situ generated titania particles.39 Each curve is labeled with the wt % of filler introduced, and filled circles locate results used to test for reversibility.
Soulhat, 1, Buschmann, M.D. and Shirazi-Adl, A. (1999) A fibril-network-reinforced model biphasic model of cartilage in unconfined compression. Journal of Biomechanical... [Pg.46]

This change can be attributed to the fact that the composition of the system during the second hour has changed markedly from what it was earlier. It is now, in a sense, a network-reinforced plastic, in which the network consists of crosslinked partly dehydrochlorinated polymer, and the interstices are filled with relatively undegraded polymer. [Pg.49]

Mark, J.E., 1985. Bimodal networks and networks reinforced by the in-situ precipitation of silica. Brit. Polym. J. 17, 144. [Pg.191]

Bon SAF, Cauvin S, Colver PJ (2007) CoUoidosomes as micron-sized polymerisation vessels to create supracoUoidal interpenetrating polymer network reinforced capsules. Soft Matter 3(2) 194-199... [Pg.50]

Wen, J. Mark, J. E., Synthesis, Structure, and Properties of Poly (dimethylsiloxane) Networks Reinforced by In Situ-Precipitated Silica-Titania, Silica-Zirconia, and Silica-Alumina Mixed Oxides. J.Appl. Polym. Sci. 1995,58, 1135-1145. [Pg.30]

Polydimethylsiloxane-Based Networks Reinforced with In Situ Generated Silica. Polym. Eng. Sci. 2011, 51, 78-86. [Pg.239]

Zhao, Z. Y. Khatri, N. D. Nguyen, K. Song, S. Q. Sun, L., Synthesis and Mechanical Properties of Interconnected Carbon Nanofiber Network Reinforced Polydimethylsiloxane Composites. J. Nanosci. Nanotech. 2011,11,1092-1097. [Pg.252]

Strachota, A., Kroutilova, L, Kovafova,)., and Matejka, L. (2004) Epoxy networks reinforced with polyhedral oligomeric silsesquioxanes (POSS). [Pg.103]

A. Baroonian, J.G. Keer, D.J. Hannant and P. Mullord, Theoretical and experimental performance of asbestos cement and polypropylene network reinforced cement corrugated sheeting , in R.N. Swamy, R.L. Wagstaffeand D.R. Oakley (eds) Developments in Fibre Reinforced Cement and Concrete, Proc. RILEM Symp., Sheffield, RILEM Technical Committee 49-FTR, 1986, Paper 4.8. [Pg.554]

Brus J, Urbanova M, Strachota A (2008) Epoxy networks reinforced with polyhedral oligomeric silsesquioxanes structure and segmental dynamics as studied by solid-state NMR. Macromolecules (Washington) 41(2) 372-386. doi 10.1021/ma702140g... [Pg.26]


See other pages where Network reinforcement is mentioned: [Pg.118]    [Pg.350]    [Pg.86]    [Pg.500]    [Pg.833]    [Pg.125]    [Pg.253]    [Pg.1108]    [Pg.833]    [Pg.245]    [Pg.346]    [Pg.555]    [Pg.65]   


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