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Cellulose whisker nanocomposite

L. Petersson, I. Kvien, and K. Oksman, Stmcture and thermal properties of poly (lactic acid)/cellulose whiskers nanocomposites materials. Compos. Sci. Technol, 67 (2007)2535-2544. [Pg.116]

Petersson, L., Kvien, I., Oksman, K., Structure and thermal properties of poly(lactic acid)/cellulose whiskers nanocomposite materials. Composites Science and Technology. 11-12, 2535-2544 (2007), DOI http //dx.doi.0rg/lO.lOl6/j.compscitech.2006.12.012. [Pg.926]

Bondenson, D., Oksman, K. Polylactic acid/cellulose whisker nanocomposites modified by polyvinyl alcohol. Compos. Part A. 38, 2486-2492 (2007)... [Pg.115]

Beck-Candanedo S, Roman M, Gray DG (2005) Effect of reacnrai conditions on the properties and behavior of wood cellulose nanocrystal suspensions. Biomacrranolecules 6 1048-1054 Ben Ehnabrouk A, Wim T, Dufresne A et al (2009) Preparatirai of poly(styrene-co-hexylaCTylate)/ cellulose whiskers nanocomposites via miniemulsion polymerization. J Appl Polym Sd... [Pg.207]

Favier V, Canova GR, Shrivastavas C et al (1997a) Mechanical percolation in cellulose whisker nanocomposites. Polym Eng Sci 37 1732-1739... [Pg.209]

Bondeson D, Oksman K (2007a) Dispersion and characteristics of surfactant modifled cellulose whiskers nanocomposites. Compos Interface 14 617-630 Bondeson D, Oksman K (2007b) Polylactic acid/cellulose whisker nanocomposites modifled by polyvinyl alcohol. Compos Part A 38 2486-2492 Bondeson D, Mathew A, Oksman K (2006a) Optimization of the isolation of nanocrystals from microcrystalline cellulose by acid hydrolysis. Cellulose 13 171-180 Bondeson D, Kvien 1, Oksman K (2006b) ACS symposium series, vol 938. American Chemical Society, Washington, DC... [Pg.579]

Petersson L, Kvien 1, Oksman K (2007) Structure and thermal properties of poly (lactic acid)/ cellulose whiskers nanocomposite materials. Compos Sci Technol 67 2535-2544 Petersson L, Mathew AP, Oksman K (2009) Dispersion and properties of cellulose nanowhiskers and layered silicates in cellulose acetate butyrate nanocomposites. J Appl Polym Sci 112 ... [Pg.585]

Bondeson D, Oksman K. Dispersion and characteristics of surfactant modified cellulose whiskers nanocomposites. Compos Interfac 2007 14 617-630. [Pg.288]

H. Luo, J. Hu, and Y. Zhu, Path-dependent and selective multi-shape recovery of a polyurethane/cellulose-whisker nanocomposite. Mater. Lett. 89,172-175 (2012). [Pg.87]

Li, Y, H. F. Ren, and A. J. Ragauskas. 2011. Rigid polyurethane foam/cellulose whisker nanocomposites Preparation, characterization, and properties. J. Nanosci. Nanotechn. 11 6904-6911. [Pg.145]

A., and Boufi, S. (2009) Preparation of poly(styrene-co-hexylacrylate)/cellulose whiskers nanocomposites via miniemulsion polymerization. Journal of Applied Polymer Science, 114. 2946-2955. [Pg.113]

Ten et al. [12] studied the mechanical and thermal properties of PHB-HV/cellulose whisker nanocomposites and found that the NCC reinforcement increases the mechanical properties due to the strong interactions between these two phases. Compared with the pure PHB-HV, the tensile modulus of composites reinforced with 5% cellulose whiskers increased 77%. According to authors, the Young modulus increase can be attributed to the creep resistance of the polymer chains due to the presence of nanocrystals. The tensile strength of the nanocomposites also ino-eased indicaling a large interfadal adhesion between the polymer and whiskers. [Pg.272]

In the PHBV/cellulose whiskers nanocomposites production, the first step is to prepare the nanoreinforcement, which can be used as obtained after acid hydrolysis, i.e., aqueous suspension, or can be dried in many ways. [Pg.274]


See other pages where Cellulose whisker nanocomposite is mentioned: [Pg.207]    [Pg.128]    [Pg.136]    [Pg.140]    [Pg.14]    [Pg.283]    [Pg.554]    [Pg.280]    [Pg.115]    [Pg.864]    [Pg.509]   
See also in sourсe #XX -- [ Pg.128 , Pg.129 , Pg.130 , Pg.131 ]




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