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Hemp, jute, banana, kenaf, ramie, sisal fibers 319
Belaadi A, Bezazi A, Bourchak M, Scarpa F: Tensile static and fatigue behaviour of sisal fibres,
Mater Des 46:76e83, 2013.
Benítez AN, Monzon MD, Angulo I, Ortega Z, Hernandez PM, Marrero MD: Treatment of
banana fiber for use in the reinforcement of polymeric matrices, Measurement 46:
1065e1073, 2013.
Bisanda ETN, Ansell MP: The effect of silane treatment on the mechanical and physical
properties of sisal-epoxy composites, Compos Sci Tech 41(2):165e178, 1991.
Bisanda ETN, Ansell MP: Properties of sisal-CNSL composites, J Mater Sci 27(6):1690e1700,
1992.
Bledzki AK, Gassan J: Composites reinforced with cellulose based fibres, Prog Polym Sci 24(2):
221e274, 1999.
Bodros E, Pillin I, Montrelay N, Baley C: Could biopolymers reinforced by randomly scattered
flax fibre be used in structural applications? Compos Sci Technol 67:462e470, 2007.
Bogoeva-Gaceva G, Avella M, Malinconico M, Buzarovska A, Grozdanov A, Gentile GE:
Natural fiber eco-composites, Polym Compos 28(1):98e107, 2007.
Bos H-L, Molenveld K, Teunissen WA, van Wingerde M, van Delft DRV: Compressive
behaviour of unidirectional flax fibre reinforced composites, J Mater Sci 39(6):2159e2168,
2004.
Brody H, Ward IM: Modulus of short carbon and glass fiber reinforced composites, Polym Sci
Eng 11(2):139e151, 1971.
Bunsell AR, Harris B: Hybrid carbon and glass fibre composites, Composites 5(4):157e164,
1974.
Campos A, Marconcini JM, Martins-Franchetti SM, Mattoso LHC: The influence of UV-C
irradiation on the properties of thermoplastic starch and polycaprolactone biocomposite
with sisal bleached fibres, Polym Degrad Stabil 97(10), 2012.
Catling D, Grayson J: Identification of vegetable fibres, London, 1982, Chapman and Hall.
Chakrabarty D: Rethinking working-class history: Bengal, 1890e1940, Princeton, NJ, 2000,
Princeton University Press.
Chand N, Hashmi SAR: Mechanical properties of sisal fibre at elevated temperatures, J Mater
Sci 28(24):6724e6728, 1993.
Chand N, Joshi SK: Temperature dependence of dielectric behavior of sisal fibre, J Mater Sci
Lett 13(3):156e158, 1994.
Chand N, Tiwary RK, Rohatgi PK: Bibliography resource structure of natural cellulosic fibres:
an annotated bibliography, J Mater Sci 23(2):381e387, 1988.
Chawla KK: Carbon fiber composites. In Composite materials, ed 2, New York, 1998, Springer,
pp 252e277.
Chowdhury F, Hosur M, Jeelani S: Studies on the flexural and thermomechanical properties of
woven carbon/nanoclay-epoxy laminates, Mater Sci Eng A 421:298e306, 2006.
Conroy A, Halliwell S, Reynolds T: Composite recycling in the construction industry, Compos A
Appl Sci Manuf 37(8):1216e1222, 2006.
Corrales F, Vilaseca F, Llop M, Girones J, Mendez JA, Mutjee P: Chemical modification of jute
fibers for the production of green composites, J Hazard Mater 144:730e735, 2007.
Costa FHMM, d’Almeida JRM: Effect of water absorption on the mechanical properties of sisal
and jute fiber composites, Polymer Plastics Tech Eng 38(5):1081e1094, 1999.
Csizmadia R, Faludi G, Renner K, Moczo J, Pukanszky B: PLA/wood biocomposites:
improving composite strength by chemical treatment of fibres, Compos A 53:46e53, 2013.
de Albuquerque AC, Joseph K, Laura Hecker de C, d’Almeida JRM: Effect of wettability and
ageing conditions on the physical and mechanical properties of uniaxially oriented jute-
roving-reinforced polyester composites, Compos Sci Tech 60:833e844, 2000.