Journal Article10.1002/ADEM.200400097
Cellulose Fibrils for Polymer Reinforcement
Abstract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References
Composites reinforced with cellulose based fibres
TL;DR: In this article, a survey about physical and chemical treatment methods which improve the fiber matrix adhesion, their results and effects on the physical properties of composites is presented, and the influence of such treatments by taking into account fibre content on the creep, quasi-static, cyclic dynamic and impact behaviour of natural fibre reinforced plastics are discussed in detail.
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Review: Current international research into cellulosic fibres and composites
Stephen J. Eichhorn,Caroline Baillie,N. E. Zafeiropoulos,L. Y. Mwaikambo,Martin P. Ansell,Alain Dufresne,K. M. Entwistle,Pedro J. Herrera-Franco,G.C. Escamilla,Leslie H. Groom,Mark Hughes,Callum A. S. Hill,Timothy G. Rials,P.M. Wild +13 more
TL;DR: In this article, the authors summarise a number of international research projects being undertaken to understand the mechanical properties of natural cellulose fibres and composite materials, in particular the use of novel techniques, such as Raman spectroscopy, synchrotron x-ray and half-fringe photoelastic methods of measuring the physical and micromechanical properties.
Experimental determination of the elastic modulus of crystalline regions in oriented polymers
TL;DR: In this paper, the elastic modulus of oriented polymers was determined using an x-ray diffractometer specially constructed for this purpose, and the lattice extension in the direction of the fiber axis was measured under application of a direct load.
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Plasticized Starch/Tunicin Whiskers Nanocomposites. 1. Structural Analysis
M. Neus Anglès,Alain Dufresne +1 more
TL;DR: In this paper, the composites were conditioned at various moisture contents in order to evaluate the effect of amylopectin on the composite structure, and the resulting films were characterized using scanning electron microscopy, differential scanning calorimetry, water absorption experiments, and wide-angle X-ray scattering.