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Polylactide blends

Takagi, Y., Yasuda, R., Yamaoka, M. and Yamane, T. 2004. Morphologies and mechanical properties of polylactide blends with medium chain length poly(3-hydroxyalkanoate) and chemically modified poly(3-hydroxyalkanoate). Journal of Applied Polymer Science 93 2363-2369. [Pg.39]

Zhang, J. J. Long L. Zhu. Morphology and properties of soy protein and polylactide blends. Biomacromolecules 20QG, 7, 1551-1561. [Pg.618]

M. Peesan, R. Rujiravanit, P. Supaphol, Electrospinning of hexanoyl chitosan/polylactide blends, J. Biomater. Sci. Polym. Ed. 17 (2006) 547-565. [Pg.112]

L. Chen, H. Wang, J. Wang, M. Chen, L. Shang, Ofloxacin-delivery system of a polyanhydride and polylactide blend used in the treatment of bone infection, J. Biomed. Mater. Res. B Appl. Biomater. 83 (2007) 589-595. [Pg.191]

The flexibility will limit the applications of pure PBS polyester however, the disadvantage can be overcome by blending it with starch or polylactide. Blending with these rigid plastics will improve the modulus of the final products. [Pg.384]

Another example of rubber-modified glassy polymer was given by the study of polylactide blends (Kowalczyk and Piorkowska 2012). Blending polylactide (PLA) with poly(l,4-cA-isoprene), which is immiscible with PLA, can lead to a substantial improvement of drawability and impact strength without a decrease in Tg. In contrast to HIPS reported by Bubeck et al. (1991), the mbbery particles initiated crazing in PLA matrix at the early stages of deformation. Crazing was accompanied by cavitation inside mbber particles, which further... [Pg.1219]

Thunga, M., Chen, K., Grewell, D., Kessler, M. R. (2014). Bio-renewable precursor fibers from lignin/polylactide blends for conversion to carbon fibers., , 159-166. [Pg.16]

Shin EJ, Jones AE, Waymouth RM (2012) Stereocomplexation in cyclic and linear polylactide blends. Macromolecules 45 595-598... [Pg.164]

Several polyolefin segmented copolymers containing polar blocks/grafts providing surface hydrophilicity, conductivity, and antibacterial properties to materials were devel-oped. " The hybrid materials also act as surfactants to stabilize PP/polylactide blends. [Pg.421]

Wu D, Zhang Y, Zhang M, Yu W. Selective localization of multiwalled carbon nanotubes in poly(caprolactone)/polylactide blend. Biomacromolecules 2009 10 417-24. [Pg.237]

Wu D, Yuan L, Laredo E, Zhang M, Zhou W (2012) Interfacial properties, viscoelasticity, and thermal behaviors of poly (butylene succinate)/polylactide blend. Ind Eng Chem Res 51 (5) 2290-2298... [Pg.250]

BMM623>, /3-valerolactone <2002JA15239>, and a-methyl-/3-pentylpropiolactone <2004T7177>. The polyester formed from the latter monomer was used in the formulation of immiscible blends or block copolymers with the biodegradable aliphatic polyester polylactide <2004T7177>. [Pg.359]

The sensitivity of this method was demonstrated by Jordan and Wilkes [1989] who showed, after aging, that blends of racemic polylactide and... [Pg.989]

The above mentioned scaffolds were made completely of the ceramic materials. Other potential materials which could be used to fabricate a novel construct for the repair of ciitical-sized bone defects is a novel material made of biodegradable polymer reinforced with ceramics particles. The properties of such a composite depend on 1) properties of the polymer used for the matrix and properties of the ceramics used for the reinforcement, 2) composition of the composite (i.e. content of ceramic particles) and 3) size, shape and arrangement of the particles in the matrix. Several polymer-composite composites have been used for scaffolds fabrication including polylactide (PLA) and polycaprolacton (PCL) reinforced with calcium phosphate (CaP) micro and nanoparticles. Authors proposed a novel composite material by blending copolymer -Poly(L-lactide-co-D,E-lactide) (PLDLLA) a copolymer with a ceramic - Tri-Calcium Phosphate... [Pg.528]

Liao, H. T., and Wu, C. S. (2009). Preparation and characterization of ternary blends composed of polylactide, poly( -caprolac tone) and starch. [Pg.212]

Pluta, M., Galeski, A., Alexandre, M., Paul, M. A., and Dubois, P. (2002). Polylactide/montmorillonite nanocomposites and microcomposites prepared by melt blending Structure and some physical properties. J A lPoI rrhSd., 86,1497-1506. [Pg.897]

K.M. Schreck, M.A. Hillmyer, Block copolymers and melt blends of polylactide with Nodax microbial polyesters preparation and mechanical properties, J. Biotechnol. 132 (3) (2007) 287-295. [Pg.122]

Liao, H., Wu, C. New biodegradable blends prepared from polylactide, titanium tetraisopropylate, and starch. J Appl. Poly. Sci. 108, 2280-2289 (2008)... [Pg.17]

Thibaut, G., Tatiana, B. Morphology and molten-state rheology of polylactide and polyhydroxyalkanoate blends. Eur. Polym. J. 48(6), 1110-1117 (2012)... [Pg.20]

Jiang, L., Wolcott, M.P., Zhang, J. Study of biodegradable polylactide/poly(butylene adipate-co-terephthalate) blends. Biomacromolecules 7, 199-207 (2006)... [Pg.393]

Li, Y., Shimizu, H. Toughening of polylactide by melt blending with a biodegradable poly(ether)urethane elastomer. Macromol. Biosci. 7, 921-928 (2007)... [Pg.393]

Anderson, K.S., Lim, S.H., Hillmyer, M.A. Toughening of polylactide by melt blending with linear low-density polyethylene. J. Appl. Polym. Sci. 89, 3757-3768 (2003)... [Pg.393]


See other pages where Polylactide blends is mentioned: [Pg.22]    [Pg.204]    [Pg.209]    [Pg.518]    [Pg.22]    [Pg.204]    [Pg.209]    [Pg.518]    [Pg.733]    [Pg.58]    [Pg.115]    [Pg.134]    [Pg.249]    [Pg.479]    [Pg.20]    [Pg.160]    [Pg.357]    [Pg.358]    [Pg.562]    [Pg.3]    [Pg.183]    [Pg.869]    [Pg.191]    [Pg.369]    [Pg.389]   
See also in sourсe #XX -- [ Pg.369 ]




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Melt-blending polylactide

Polylactide polymer blending

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Polymer blends polylactide

Recent Developments in Polylactide-based Blends and Their Applications

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