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Poly nanocomposite foams

Lee S, Cho W, Hahn P, Lee M, Lee Y, Kim K (2005) Microstructural changes of reference montmorillonites by cationic surfactants. Appl Clay Sci 30(3-4) 174-180 Lee SM, Tiwari D (2012) Organo and inorgano-organo-modified clays in the remediation of aqueous solutions an overview. Appl Clay Sei 59-60 84—102 Lee S Y, Chen H, Hanna M A (2008) Preparation and eharacterization of tapioca stareh-poly(lactic add) nanocomposite foams by melt intercalation based on elay type. Ind Crops Prod 28(1) 95-106 Lee SY, Hanna MA (2009) Tapioca starch-poly(lactic acid)-Cloisite 30B nanocomposite foams. Polym Compos 30(5) 665-672... [Pg.131]

Lee S-Y, Hanna MA (2008) Preparation and eharacterization of tapioca starch-poly(lactic add)-Cloisite NA-l- nanocomposite foams. J Appl Polym Sei 110(4) 2337-2344 Leite IF, Soares APS, Carvalho LH, Raposo CMO, Malta OML, Silva SML (2009) Characterization of pristine and purified organobentonites. J Therm Anal Calorim 100... [Pg.131]

Lee SY, Xu YX, Hanna MA (2007) Tapioca starch-poly (lactic acid)-based nanocomposite foams as affected by type of nanoclay. Int Polym Process 22(5) 429-435 Lee B-H, Kim H-S, Lee S, Kim H-J, Dorgan JR (2009) Bio-composites of kenaf fibers in polylactide role of improved interfacial adhesion in the carding process. Compos Sci Technol 69 2573-2579... [Pg.361]

Okamoto M, Nam PH, Maiti P, Kotaka T, Nakayama T, Takada M, Ohshima M, Usuki A, Hasegawa N, Okamoto H (2001) Biaxial flow-induced alignment of silicate layers in poly-propylene/clay nanocomposite foam. Nano Lett l(9) 503-505... [Pg.37]

Poly(Methyl Methacrylate) (PMMA) Nanocomposite Foams Zero-dimension... [Pg.3]

Chen L., Schadler L. S., and Ozisik R. An experimental and theoretical investigation of the compressive properties of multi-walled carbon nanotnbe/poly(methyl methacrylate) nanocomposite foams. Polymer 2011, 52, 2899-2909. [Pg.30]

Lee, S. Y., Chen, H., and Hanna, M. 2008. Preparation and characterization of tapioca starch-poly (lactic acid) nanocomposite foams by melt intercalation based on clay type. Industrial Crops and Products 28 95-106. [Pg.90]

Poly(methyl methacrylate) (PMMA) was also used in MMT nanocomposite foam preparation (Fu and Naguib, 2006 Weickmann et al, 2010). Organomodified MMT was used in its preparation by in situ bulk polymerization and batch foaming process with N2. The MMT acted as a heterogeneous nucleation agent in polymer matrix that reduced cell size and increased cell density. Moreover, MMT addition decreased dielectric constant and slightly increased the thermal conductivity as well as the mechanical strength due to the well-dispersed clay mineral platelets (Yeh et al., 2009). [Pg.162]

Poly(8-caprolactone) (PCL)/organomodified MMT nanocomposite foams prepared by chemical foaming with azodiformamide were reported in the literature. In comparison with the pristine foam, the nanocomposites presented an enhanced compressive property. By increasing clay content, the pore size decreased and the pore wall thickness ranained almost the same at low clay contents. However, at high clay contents, both parameters increased due to the change in the melt viscosity of nanocomposites and the heterogeneous nucleation behavior of the clay at low contents (Liu et al., 2009). [Pg.164]

Moghbeli, M. R. and Shahabi, M., 2011. Morphology and mechanical properties of an elastomeric poly(HIPE) nanocomposite foam prepared via an emulsion template. Iranian Polymer Journal 20 343-55. [Pg.167]

In Chapter 1, different synthesis and processing techniques used to prepare poly(methyl methacrylate) (PMM A) nanocomposite foams are reviewed. The effects of nanoparticles on foam morphology and properties are discussed. [Pg.249]

Di, Y., lannace, S., Maio, E.D., Nicolais, L. Poly(lactic acid)/organoclay nanocomposites Thermal, rheological properties and foam processing. J. Polym. Sci., Part B Polym. Phys. 43, 689-698 (2005)... [Pg.395]


See other pages where Poly nanocomposite foams is mentioned: [Pg.216]    [Pg.187]    [Pg.85]    [Pg.105]    [Pg.159]    [Pg.162]    [Pg.162]    [Pg.163]    [Pg.164]    [Pg.81]    [Pg.81]    [Pg.81]    [Pg.88]    [Pg.338]    [Pg.87]   
See also in sourсe #XX -- [ Pg.82 ]




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