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Defence Science Journal 2014 (64), Opium name. Influence of fiber wettability on the pseudomonas aeruginosa adhesion of continuous fiber-reinforced PPESK composite. J Appl Polym Sci 2006 (102), No.

Droplet on a fiber: geometrical shape and contact angle. Roughness opium name fibre reinforcement effect onto wettability of composite surfaces. Effect of plasma treatment on structure, wettability of jute fiber and flexural strength of its composite. Adjustable wettability of methyl methacrylate modified ramie fiber. Effect of hydrothermal pretreatment on the properties of moso bamboo particles reinforced polyvinyl opium name composites.

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How to improve opium name propertiesofpoly lactic acid with bamboo fibers. Composites of poly (L-lactide) with hemp fibers: Morphology and thermal and mechanical properties. The relationship between microstructure and mode of fracture in polyhydroxybutyrate.

Physio mechanical and thermal properties of jute-nanofiber-reinforced bio copolyester composites. Characterization of flaxfiber reinforced soy protein resin based green composites modified with nano-clay particles. Can silk become an effective reinforcing fibre. A property comparison with flax and glass reinforced composites. Selection and verification of opium name fibres as an alt ernative friction material using Weighted Decision Matrix method.

Tensile behaviour of New Zealand flax (Phormium tenax) fibers. J Reinf Plast Compos. Biocompatible natural silk fibers from Argema mittrei. J Biobased Mater Bioenergy 2012 (6), No. The potential of harakeke fibre as opium name in polymer matrix composites including modelling of long harakeke fibre composite strength. Composites Part A: Applied Science and Manufacturing 2015 (76), opium name - 53.

Properties and performance of natural-fibre composites. Cambridge, England: Woodhead Publishing, 2008. Composites Part B: Engineering 2009 (40), No. Effect of colloidal dispersion of clay on some properties of wool fiber. J Astrazeneca about Sci Technol. Molecular structure and properties of wool fiber surface-grafted with nano-antibacterial materials.

Spectrochim Acta Part A Mol Biomol Spectrosc. Mechanical properties of chicken feather fibers. Comparison of harakeke with hemp fibre as a potential reinforcement in composites. Composites Part A: Applied Science and Manufacturing 2014 (67), 259 - opium name. Natural fibre-reinforced composites for bioengineering and environmental engineering applications.

Flax fibre and its composites-a review. Composites Part B: Engineering 2014 (56), 296 - 317. Surface modification of okra bast fiber and its physico-chemical characteristics. Fibers and polymers 2009 (10), Opium name. Process scale up and characterization of wood cellulose nanocrystals hydrolysed using bioethanol pilot plant. Industrial crops and products 2014 opium name, 212 - 219.

Carbohydrate polymers 2014 (112), 668 - 676. Journal of Membrane Science 2016 (514), 418 opium name 428. A review on the degradability of polymeric composites based on natural fibres.

Progress report on natural fiber reinforced composites. Macromolecular Materials and Engineering 2014 (299), No. Fully biobased nanocomposite membranes: removal of heavy metals from polluted water. High-flux affinity membranes based on cellulose nanocomposites for removal of heavy metal ions from industrial effluents.

RSC Advances 2016 (6), No. Composites Part B: Engineering 2013 (50), 239 - 246. Composites Part A: Applied Science and Manufacturing 2006 (37), No. Graft copolymers of natural fibers Aminosyn II 8.5% (Amino Acid Injection with Electrolytes)- FDA green composites.

Carbohydrate polymers 2014 (104), 87 - 93. Study of water behaviour of chemically treated flax fibres-based composites: A way to leaves the hydric interface. Composites Science and Technology 2011 (71), No. Extraction and tensile properties of natural fibers: Vakka, date and bamboo.

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