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Thermoplastic nanocomposites

Thermoplastic nanocomposites for the step-assist on the 2002 GMC Safari and Chevrolet Astro Van. [Pg.92]

W. Helbert, J. Y. Cavaille, and A. Dufiesne, Thermoplastic nanocomposites filled with wheat straw cellulose whiskers. Part I Processing and mechanical behavior, Polym. Compos., 17 (1996) 604-611. [Pg.113]

Paillet, M., Dufresne, A. Chitin whiskers reinforced thermoplastic nanocomposites. Macromolecules. 34, 6527-6530 (2001)... [Pg.110]

Michel, P., Dufresne, A. Chitin WTiisker Reinforced Thermoplastic Nanocomposites. [Pg.111]

Steurer, P., Wissert, R., Thomann, R., Miilhaupt. R. (2009) Functionalized Graphenes and Thermoplastic Nanocomposites Based upon Expanded Graphite Oxide,... [Pg.231]

Malainine ME, Mahrouz M, Dufi esne A et al (2005) Thermoplastic nanocomposites based (Hi cellulose micHofibrils fiom Opuntia ficus-iudica panaichyma cell. Compos Sci Technol 65 1520-1526... [Pg.42]

Dufresne A, Cavaille JY, Helbert W (1997) Thermoplastic nanocomposites filled with wheat straw cellulose whiskers. Part II effect of processing and modeling. Polym Compos 18 199 Dufresne A, Kellerhals MB, Witholt B (1999) Transcrystallization in Mcl-PHAs/cellulose whiskers composites. Macromolecules 32 7396-7401 Dufresne A, Dupeyre D, Vignon MR (2000) Cellulose microfibrils from potato tuber cells processing and characterization of starch-cellulose microfibril composites. J Appl Polym Sci 76 2080-2092... [Pg.208]

Ljungberg N, Cavaille J-Y, Heux L (2006) Nanocomposites of isotactic polypropylene reinforced with rod-like cellulose whiskers. Polymer 47 6285-6292 Lu Y, Weng L, Cao X (2005) Biocomposites of plasticized starch reinforced with cellulose crystallites from cottonseed linter. Macromol Biosci 5 1101-1107 Lu J, Wang T, Drzal LT (2008) Preparation and properties of microfibrillated cellulose polyvinyl alcohol composite materials. Compos Part A 39A 738-746 Magalhaes WLE, Cao X, Lucia LA (2009) Cellulose nanocrystals/cellulose core-in-shell nanocomposite assemblies. Langmuir. doi 10.1021Aa901928j Malainine ME, Mahrouz M, Dufresne A (2005) Thermoplastic nanocomposites based on cellulose microfibrils from Opuntiaficus-indica parenchyma cell. Compos Sci Technol 65 1520-1526 Marchessault RH, Sundararajan PR (1983) Cellulose. In Aspinall GO (ed) The polysaccharides. Academic, New York... [Pg.210]

Oster GA, Lentz Y, Koehler K et al (2003) Xylus Corporation, assignee. Solvent dehydrated microbially-derived cellulose for in vivo implantation. United State Patent US6599518 Paakko M, Ankerfors M, Kosonen H et al (2007) Enzymatic hydrolysis combined with mechanical shearing and high-pressure. Biomacromolecules 8 1934—1941 Paillet M, Dufresne A (2001) Chitin whisker reinforced thermoplastic nanocomposites. Macromolecules 34 6527-6530... [Pg.585]

There are different manufacturing processes for the production of nanostructured polymeric blends. Peponi et al. reviewed [16] bottom-up and top-down processes for nanostructured polymers and advanced polymeric-based nanocomposites. Nanostrac-tured thermoplastics blends are reported under bottom-up matrix nanocomposites whereas nanostructured thermoplastic nanocomposites are introduced under top-down approaches. Polymer nanotechnologies are characterized by top-down processes including ingredients such as polymer and nanoparticles. They are introduced... [Pg.18]

M. E. Malainine, M. Mahrouz, and A. Dufresne, Thermoplastic nanocomposites based on cellulose microfibrils from Opuntia ficus-indica parenchyma cell. Compos. Set. Technol. 65, 1520-1526 (2005). [Pg.86]

Steurer P, Wissert R, Thomann R, Miilhaupt R (2009) Functionalized graphenes and thermoplastic nanocomposites based upon expanded graphite oxide. Macromol Rapid Commun 30 316-327... [Pg.306]

Usually, only intercalated structures with low poly(styrene sulfonate), poly(vinyl sulfonate), poly(acrylic acid), poly(ethylene oxide), and dioctyl sulfosuccinate LDH nanocomposites.Thermoplastic nanocomposites based on LDH are usually prepared by solution intercalation or in situ polymerization. In our previous work we showed that it is also possible to get delamination of LDH in thermoplastic polymers by melt compounding when a suitable inter-or intralayer composition of LDH and proper processing conditions are selected. ... [Pg.256]

In melt extrusion, polymer is forced to flow under shear along with helical screw direction, which divided into number of zones based on their functions and the requirement for processing specific combination such as feed section, mixing and melting section, and compression section and takes the shape of the die at the other end. In melt intercalation, biofiller can be directly mixed mechanically with the polymer melt to form a homogeneous mixture. Method is very widely used for thermoplastic nanocomposites and can be applied to nanobiocomposite. Melt intercalation is highly specific for a polymer, which may lead to new hybrids. Moreover, absence of solvent in the technique leads to industrially economical as well as environment friendly by waste point of view (Ray et al., 2005). [Pg.280]


See other pages where Thermoplastic nanocomposites is mentioned: [Pg.411]    [Pg.162]    [Pg.295]    [Pg.75]    [Pg.86]    [Pg.107]    [Pg.118]    [Pg.282]    [Pg.49]    [Pg.60]    [Pg.275]    [Pg.283]    [Pg.289]    [Pg.90]    [Pg.526]    [Pg.581]    [Pg.3]    [Pg.205]    [Pg.166]    [Pg.221]    [Pg.39]    [Pg.24]   


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BC Thermoplastic (and Thermosetting) Nanocomposites

Clay-thermoplastic nanocomposites

Crystallization Behavior of Thermoplastic Nanocomposites

Degradation thermoplastic nanocomposites

Nanocomposite thermoplastic elastomers

Nanocomposites semicrystalline thermoplastic

Organically Modified Layered Silicate Reinforced Thermoplastic Starch (TPS) Nanocomposites

Rheology of Organoclay Nanocomposites Based on Thermoplastic Polymer

Rheology of Particulate-Filled Polymers, Nanocomposites, and Fiber-Reinforced Thermoplastic Composites

Ternary nanocomposites thermoplastic

Thermoplastic Polymer-Nanocellulose Nanocomposites

Thermoplastic nanocomposite morphology

Thermoplastic starch nanocomposite

Thermoplastic starch nanocomposites

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