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Biofibers properties

Biofibers can be effectively reinforced within the polymeric matrices in different ways to achieve desired properties such as strength, stiffness, low density, and sound damping, along with eco-friendly characteristics and texture in the composites. The use of biofibers for various commercial applications originated back in the 1990 s. Owing to low prices and the steadily rising performance of technical and standard plastics, the application of these fibers... [Pg.225]

This chapter will focus on the application of these biofibers in the area of biobased composites. Also, a clear presentation of various examples of biobased composites, their properties and characterization studies are reported in the discussion. [Pg.226]

Biopolymers Biomedical and Environmental Applications Table 9.1 Comparative properties of biofibers and conventional man-made fibers [9],... [Pg.228]

Singha, A. S., Thakur, V. K. (2009). Chemical resistance, mechanical and physical properties of biofibers-based polymer composites,... [Pg.395]

Mishra S, Tripathy SS, Misra M, Mohanty AK, Nayak SK (2002) Novel eco-friendly biocomposites biofiber reinforced biodegradable polyester amide composites-fabrication and properties evaluation. J Reinf Plast Compos 21 55-70... [Pg.341]

S. Mishra, S.S. Tripathy, M. Misra, A.K. Mohcuity, cuid S.K. Nayak, Novel eco-friendly biocomposites Biofiber reinforced biodegradable polyester cunide composites—Fabrication and properties evaluation. /. Reinf. Plast. Compos. 21,55-70 (2002). [Pg.470]

Martinez-Hemandez AL, Velasco-Santos C (2012) Keratin fibers from chicken feathers structure and advances in polymer composites. Nova Publishers, New York, pp 149-211 Martinez-Hemandez AL, Velasco-Santos C, de-Icaza M, Castano VM (2007) D5mamical-mechanical and thermal analysis of polymeric composites reinforced with keratin biofibers from chicken feathers. Compos Part B Eng 38 405 10 Mathew AP, Dufresne A (2002) Morphological investigation of nanocomposites from sorbitol plasticized starch and tunicin whiskers. Biomacromolecules 3 609-617 Md. Islama S, Hamdana S, Talibb ZA, Ahmeda AS, Md. Rahmana R (2012) Tropical wood polymer nanocomposite (WPNC) The impact of nanoclay on dynamic mechanical thermal properties. Compos Sci Technol 72 1995-2001... [Pg.256]

Thakur VK, Singha AS, Misra BN (2011) Graft copolymerization of methyl methacrylate onto cellulosic biofibers. J Appl Polym Sci 122(l) 532-544. doi 10.1002/app.34094 Thakur VK, Singha AS, Thakur MK (2012a) Green composites from natural fibers mechanical and chemical aging properties. Int J Polym Anal Charact 17(6) 401-407. doi 10.1080/... [Pg.429]

Thermal properties of thermoplastic starch composites reinforced with pehuen husk showed the potential of this bioliber as an excellent reinforcement for composite materials. TPS composites showed a good interaction between the fibers and the plasticized starch matrix due to the natural affinity between husk and starch in the pehuen seed. TPS/PLA/PV A blend showed partial miscibility or co-continuous phase and TPS/PLA/PV A composites presented also discontinuities at the biofiber-polymeric matrix interface. The incorporation of biofiber improved the thermal stability of the composites, increasing the initial decomposition temperature. The biofiber hinders the out-dififusion of the volatile molecules (e.g., glycerol), retarding the decomposition process of starch composites. On the other hand, the degree of crystallinity of composites decreases when pehuen husk content increases (Castano et al. 2012). [Pg.456]


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See also in sourсe #XX -- [ Pg.117 , Pg.121 ]




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