Biobased Composites. Группа авторов
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46 46 Okamoto, M. and John, B. (2013). Synthetic biopolymer nanocomposites for tissue engineering scaffolds. Prog. Polym. Sci. 38: 1487–1503.
47 47 Hamzeh, Y., Ashori, A., and Mirzaei, B. (2011). Effects of waste paper sludge on the physico‐mechanical properties of high‐density polyethylene/wood flour composites. J. Polym. Environ. 19 (1): 120–124.
48 48 Stark, N.M. and Matuana, L.M. (2004). Surface chemistry changes of weathered HDPE/wood‐flour composites studied by XPS and FTIR spectroscopy. Polym. Degrad. Stab. 86: 1–9.
49 49 Kasuga, T., Ota, Y., Nogami, M., and Abe, Y. (2001). Preparation and mechanical properties of polylactic acid composites containing hydroxyapatite fibers. Biomaterials 22: 19–23.
50 50 Chiu, W., Chang, Y., Kuo, H. et al. (2008). A study of carbon nanotubes/biodegradable plastic polylactic acid composites. J. Appl. Polym. Sci. 108 (5): 3024–3030.
51 51 John, M.J. and Thomas, S. (2008). Biofibres and biocomposites. Carbohydr. Polym. 71: 343–364.
52 52 Sydenstricker, T.H., Mochnaz, S., and Amico, S.C. (2003). Pull‐out and other evaluations in sisal‐reinforced polyester biocomposites. Polym. Test 22: 375–380.
53 53 Ray, P.K., Chakravarty, A.C., and Bandyopadhyay, S.B. (1976). Fine structure and mechanical properties of jute differently dried after retting. J. Appl. Polym. Sci. 20 (7): 1765–1767.
54 54 Semsarzadeh, M.A. (1986). Fiber matrix interactions in jute reinforced polyester resin. Polym. Compos. 7: 23–25.
55 55 Zeronian, S.H., Kawabata, H., and Alger, K. (1990). Factors affecting the tensile properties of non‐mercerized and mercerized cotton fibers. Text. Res. J. 60 (3): 179–183.
56 56 Paiva, J.M.F. and Frollini, E. (2006). Unmodified and modified surface sisal fibers as reinforcement of phenolic and lignophenolic matrices composites: thermal analyses of fibers and composites. Macromol. Mater. Eng. 291: 405–417.
57 57 Agrawal, R., Saxena, N., Sreekala, M., and Thomas, S. (2000). Effect of treatment on the thermal conductivity and thermal diffusivity of oil‐palm–fiber‐reinforced phenolformaldehyde composites. J. Polym. Sci. B Polym. Phys. 38: 916–921.
58 58 Vandeweyenberg, I., Chitruong, T., Vangrimde, B., and Verpoest, I. (2006). Improving the properties of UD flax fibre reinforced composites by applying an alkaline fibre treatment. Compos. A Appl. Sci. Manuf. 37: 1368–1376.
59 59 Baley, C., Busnel, F., Grohens, Y., and Sire, O. (2006). Influence of chemical treatments on surface properties and adhesion of flax fibre polyester resin. Compos. A Appl. Sci. Manuf. 37: 1626–1637.
60 60 Lee, S., Kang, I., Doh, G. et al. (2008). Thermal and mechanical properties of wood flour/talc‐filled polylactic acid composites: effect of filler content and coupling treatment. J. Thermoplast. Compos. Mater. 21 (3): 209–223.
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