Page 292 - Biodegradable Polyesters
P. 292

270  10  Highly Toughened Polylactide-Based Materials through Melt-Blending Techniques

                        Kaplan), Springer, Berlin, Heidelberg,  Technology, John Wiley & Sons, Inc.,
                        pp. 367–411.                    New York.
                     44. Harris, A.M. and Lee, E.C. (2008) J.  62. Ikeda, R.M. (1993) J. Appl. Polym. Sci.,
                        Appl. Polym. Sci., 107, 2246–2255.  47, 619–629.
                     45. Anderson, K.S., Schreck, K.M., and  63. Seelig,T.and Vander Giessen, E.
                        Hillmyer, M.A. (2008) Polym. Rev., 48,  (2009) Comput. Mater. Sci. , 45,
                        85–108.                         725–728.
                     46. Robeson, L.M. (2007) Polymer Blends:  64. Dompas, D. and Groeninckx, G. (1994)
                        A Comprehensive Review,Hanser   Polymer, 35 (22), 4743–4749.
                        Gardner Publisher.            65. Lu, F., Cantwell, W.J., and Kausch, H.H.
                     47. Kfoury, G., Raquez, J.-M., Hassouna,  (1997) J. Mater. Sci., 32, 3055–3059.
                        F.,Odent,J., Toniazzo,V., Ruch,D.,  66. Lazzeri, A. and Bucknall, C.B. (1993) J.
                        and Dubois, P. (2013) Front. Chem., 1,  Mater. Sci., 28, 6799–6808.
                        1–46.                         67. Bucknall, C.B. and Paul, D.R. (2013)
                     48. Mascia, L. and Xanthos, M. (1992) Adv.  Polymer, 54, 320–329.
                        Polym. Tech., 11, 237–248.    68. Deblieck, R.A.C., van Beek, D.J.M.,
                     49. Ishida, S., Nagasaki, R., Chino, K.,  Remerie, K., and Ward, I.M. (2011)
                        Dong, T., and Inoue, Y. (2009) J. Appl.  Polymer, 52, 2979–2990.
                        Polym. Sci., 113, 558–566.    69. Wood, C.A. and Bradley, W.L. (1997)
                     50. Liang, J.Z. and Li, R.K.Y. (2000) J. Appl.
                                                        Compos. Sci. Technol., 57, 1033–1043.
                        Polym. Sci., 77, 409–417.
                                                      70. Broz, M.E., VanderHart, D.L., and
                     51. Alfarraj,A.and BruceNauman,E.  Washburn, N.R. (2003) Biomaterials,
                        (2004) Polymer, 45, 8435–8442.  24, 4181–4190.
                     52. NatureWorks (2007) Technology
                                                      71. Tsuji, H. and Ikada, Y. (1996) J. Appl.
                        Focus Report: Toughened PLA,
                                                        Polym. Sci., 60, 2367–2375.
                        http://www.natureworksllc.com/product-
                                                      72. Hiljanen-Vainio, M., Varpomaa,
                        and-applications/ingeo-
                                                        P., Seppälä, J., and Törmälä, P.
                        biopolymer/technical-
                                                        (1996) Macromol. Chem. Phys., 197,
                        publications/∼/media/Files/Toughened-
                                                        1503–1523.
                        PLA-Technology-Focus-pdf.ashx
                        (accessed 15 September 2010).  73. López-Rodríguez, N., López-Arraiza, A.,
                     53. Perkins, W.G. (1999) Polym. Eng. Sci.,  Meaurio, E., and Sarasua, J.R. (2006)
                        39, 2445–2460.                  Polym. Eng. Sci., 46, 1299–1308.
                                                      74. Vilay, V., Mariatti, M., Ahmad, Z.,
                     54. Wu, S. (1990) Polym. Eng. Sci., 30,
                                                        Pasomsouk, K., and Todo, M. (2009) J.
                        753–761.
                                                        Appl. Polym. Sci., 114, 1784–1792.
                     55. Pearson Raymond, A. (2000) Tough-
                        ening of Plastics, American Chemical  75. Wu, D., Zhang, Y., Zhang, M., and
                        Society, pp. 1–12.              Zhou, W. (2008) Eur.Polym.J., 44,
                     56. Kambour, R.P. (1973) J. Polym. Sci.:  2171–2183.
                        Macromol. Rev., 7, 1–154.     76. Patrício, T. and Bártolo, P. (2013) Proce-
                     57. Narisawa, I. and Yee, A. (2006) Crazing  dia Eng., 59, 292–297.
                        and fracture of polymers, in Materials  77. Tsuji, H. and Yamada, T. (2003) Polym.
                        Science and Technology,Wiley-VCH  Int., 52, 269–275.
                        Verlag GmbH & Co. KGaA.       78. Choi, N.-S., Kim, C.-H., Cho, K.Y., and
                     58. Michler, G.H. (1989) Colloid. Polym.  Park, J.-K. (2002) J. Appl. Polym. Sci.,
                        Sci., 267, 377–388.             86, 1892–1898.
                     59. Bucknall, C.B. (2007) J. Polym. Sci., Part  79. Tsuji, H. and Yamada, T. (2003) J. Appl.
                        B: Polym. Phys., 45, 1399–1409.  Polym. Sci., 87, 412–419.
                     60. Könczöl, L., Döll, W., and Michler,  80. Aslan, S., Calandrelli, L., Laurienzo,
                        G.H. (1992) Colloid. Polym. Sci., 270,  P., Malinconico, M., and Migliaresi, C.
                        972–981.                        (2000) J. Mater. Sci., 35, 1615–1622.
                     61. O’Connell, P.A. and McKenna, G.B.  81. Wu, D., Zhang, Y., Yuan, L., Zhang, M.,
                        (2002) Yield and crazing in polymers,  and Zhou, W. (2010) J. Polym. Sci., Part
                        in Encyclopedia of Polymer Science and  B: Polym. Phys., 48, 756–765.
   287   288   289   290   291   292   293   294   295   296   297