Page 325 - Handbook of Properties of Textile and Technical Fibres
P. 325
Tensile properties of flax fibers 299
Placet V, Cisse O, Boubakar ML: Influence of environmental relative humidity on the tensile and
rotational behaviour of hemp fibres, J Mater Sci 47:3435e3446, 2011. https://doi.org/
10.1007/s10853-011-6191-3.
Poilane C, Cherif ZE, Richard F, Vivet A, Ben Doudou B, Chen J: Polymer reinforced by flax
ˇ
fibres as a viscoelastoplastic material, Compos Struct 112:100e112, 2014. https://doi.org/
10.1016/j.compstruct.2014.01.043.
Poricke E, Andersons J: Strength-length scaling of elementary hemp fibers, Mech Compos Mater
49:69e76, 2013. https://doi.org/10.1007/s11029-013-9322-x.
Rihouey C, Paynel F, Gorshkova T, Morvan C: Flax cellulosic fibres: how to assess the non-
cellulosic polysaccharides and to approach cell wall supramolecular design, Cellulose
24(5):1985e2001, 2017. https://doi.org/10.1007/s10570-017-1246-5.
Roland J-C, Mosiniak M, Roland D: Dynamique du positionnement de la cellulose dans les
parois des fibres textiles du lin (Linum usitatissimum), Acta Bot Gall Bot Lett 142(1995):
463e484, 1995.
Romhany G, Karger-Kocsis J, Czigany T: Tensile fracture and failure behavior of technical flax
fibers, J Appl Polym Sci 90:3638e3645, 2003.
Roussi ere F, Baley C, Godard G, Burr D: Compressive, tensile behaviours of PLLA matrix
composites reinforced with randomly dispersed flax fibres, Appl Compos Mater 19:
171e188, 2012.
Rowell RM: Natural fibers: types and properties. In Properties and performance of natural-fibre
composites,pp3e66, Woodhead Publishing Limited, 2008, 557 pp.
Salmon-Minotte J: Flax. In Franck RR, editor: Bast other plant fibres, Cambridge, 2005, CRC
Press, Woodhead Publishing.
Schulgasser K, Witztum A: On the strength, stiffness and stability of tubular plant stems and
leaves, J Theor Biol 155:497e515, 1992. https://doi.org/10.1016/S0022-5193(05)80632-0.
Scida D, Bourmaud B, Baley C: Influence of the scattering of flax fibres properties for
the calculation of flax/epoxy woven ply stiffness, Mater Des 122:136e145, 2017. https://
doi.org/10.1016/j.matdes.2017.02.094.
Shah D, Schubel P, Clifford M: Modelling the effect of yarn twist on the tensile strength of
unidirectional plant fibre yarn composites, J Compos Mater 47:425e436, 2013.
Sharma H, Faughey G, Lyons G: Comparison of physical, chemical, and thermal characteristics
of water-, dew-, and enzyme-retted flax fibers, J Appl Polym Sci 1:139e143, 1999.
Sharma H: Chemical retting of flax using chelating compounds, Ann Appl Biol 113:159e165,
1988.
Silva FdA, Chawla N, Filho RDdT: Tensile behavior of high performance natural (sisal) fibers,
Compos Sci Technol 68:3438e3443, 2008. https://doi.org/10.1016/j.compscitech.2008.10.001.
Snegireva AV, Ageeva MV, Amenitskii SI, Chernova TE, Ebskamp M, Gorshkova TA:
Intrusive growth of sclerenchyma fibers, Russ J Plant Physiol 57:342e355, 2010. https://
doi.org/10.1134/S1021443710030052.
Spatz H, Kohler L, Niklas KJ: Mechanical behaviour of plant tissues: composite materials or
structures? J Exp Biol 202:3269e3272, 1999.
Sultana C: Scutching of retted-flax straw. In Sharma HSS, Van Sumere CF, editors: Biol.
Process. Flax. Belfast, Northern Ireland, 1992, M Publications.
Summerscales J, Le Duigou A, Baley C: Checklist for the description of plant/vegetal/bast
natural fibre reinforced composites, 20th Int Conf Compos Mater, 2015:5, 2015.
Tortora P, Collier B: Understanding textiles, New Jersey, United States, 1997, Prentice-Hall,
Englewood Cliffs.
Truong M, Zhonga W, Boykob S, Alcockb M: A comparative study on natural fibre density
measurement, J Text Inst 100:525e529, 2009.