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All-Cellulose Composite

Macromolecules · 2004 · Vol. 37(20) · pp. 7683–7687
Takashi NishinoIkuyo MatsudaKoichi Hirao

Abstract

An all-cellulose composite, in which both the fibers and the matrix are cellulose, was prepared by distinguishing the solubility of the matrix cellulose into the solvent from that of the fibers through pretreatment. The structure, mechanical, and thermal properties of this composite were investigated using an X-ray diffraction, a scanning electron microscope, a tensile test, and dynamic viscoelastic and thermomechanical analyses. The tensile strength of uniaxially reinforced all-cellulose composite was 480 MPa at 25 °C, and the dynamic storage modulus was as high as 20 GPa at 300 °C. These were comparable or even higher than those of conventional glass-fiber-reinforced composites. In addition, a linear thermal expansion coefficient was about 10-7 K-1. This all-cellulose composite shows substantial advantages, that is, it is composed of sustainable resources, there is less interface between the fiber and the matrix, it possesses excellent mechanical and thermal performance during use, and it is biodegradable after the service.

Advanced Cellulose Research StudiesNatural Fiber Reinforced Compositesbiodegradable polymer synthesis and propertiesMaterials scienceComposite numberComposite materialUltimate tensile strengthCelluloseDynamic mechanical analysisScanning electron microscopeCellulose fiberFiberTensile testing
Citations
794
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12
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References
Composites reinforced with cellulose based fibres
Progress in Polymer Science · 1999 · 4,501 citations
X-Ray diffraction methods in polymer science
Journal of Colloid and Interface Science · 1970 · 1,174 citations
Mechanical properties of polymers and composites
Polymer · 1975 · 1,482 citations
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