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Carbon fibre-reinforced wood

Virgin carbon fibre reinforced polymer Virgin polyethylene terephthalate Wide-angle X-ray scattering Wood-plastic composite(s)... [Pg.268]

Vegetable fibres (including wood fibres) represent a good replacement solution for glass and carbon fibres for the reinforcement of composites based on a thermoplastic matrix. The advantages of vegetable fibres are economically and ecologically important ... [Pg.133]

Maximization of the load-bearing behaviour of these tubes can be achieved by external reinforcement, consisting of composites (see Fig. 10.5). In the experiments a woven fabric of fibreglass, as well as of carbon fibre, was used, which was laminated with epoxy resin. Static load tests have proved that the new material has significant better characteristics than normal wood, especially if the weight is taken into consideration. Within the areas of connections failures could be observed, which can be avoided by partial fortification of the reinforcement [30,31]. [Pg.319]

Fabrics made of glass or carbon fibres may also be used to make fibre reinforced composites on site. Normally a layer of adhesive is applied to the timber surface, one or more layers of the fabric are then pressed into the adhesive and a new layer of adhesive is applied to it, resulting, after cure, in a fibre reinforced composite. The principal direction of the fabric is normally oriented parallel to the wood fibres to improve bending strength and stiffness. [Pg.276]

Thus, substrates such as aluminium and its alloys, alloys of titanium, low- and high-carbon steels, nickel, copper, fibre-reinforced plastics (containing both thermoplastic and thermosetting matrices - in the latter case, the matrix might well also be a formnlated epoxy-based system), glass, concrete and wood are all encountered. This means that they can be, and indeed are, widely used in construction, aerospace, automotive (both original equipment and aftermarket), electrical and electronics, furnimre, foundry, consumer and abrasives applications. [Pg.149]

Hazarika A, Maji TK (2014c) Strain sensing behavior and dynamic mechanical properties of carbon nanotubes/nanoclay reinforced wood polymCT nanocomposite. Chem Eng J 247 33-41 Hazarika A, Maji TK (2014d) Thermal decomposition kinetics, flammability, and mechanical property smdy of wood polymtar nanocomposite. J Therm Anal Calorim 115 1679-1691 Hazarika A, Mandal M, Maji TK (2014) Dynamic mechanical analysis, biodegradability and thermal stability of wood polymer nanocomposites. Compos Part B 60 568-576 Hetzer M, Kee D (2008) Wootl/polymer/nanoclay composites, environmentally friendly sustainable technology a review. Chem Eng Res Des 86 1083-1093 Hill CAS, Abdirl KHPS, Hale MD (1998) A study of the potential of acetylation to improve the properties of plant fibres, frrd Crops Prod 8 53-63 Hoffmann MR, Martin ST, Choi WY, Bahnemann W (1995) Environmental application of semiconductm photocatalysis. Chem Rev 95 69-96 Huda MS, Drzal LT, Misra M, Mohanty AK (2(K)6) Wood-fiber-reinforced poly(lactic acid) composites evaluation of the physicomechanical and morphological properties. J AppI Polym Sci 102 4856-4869... [Pg.255]

The use of fibres and fabrics as additives to reinforce matrix materials in structures that are often referred to as composites goes back into prehistory, as in the use of straw to reinforce clay bricks. As usual, nature developed such structures first. Examples are wood (cellulosic fibres in a lignin matrix) and bone (collagen fibres in an inorganic matrix). A composite need not be based on fibres - it is a material or product formed by intimate combination of two or more distinct physical phases, so the sh ls of crustaceans (calcium carbonate in a chitin matrix) are composite structures. However, the word composite now commonly brings to mind structures consisting of fibres embedded in a matrix of some other material, whether plastic, ceramic or metal (i.e. fibrous composites), and even tends to be used particularly for structures in which the fibres are laid out in organized fashion before the matrix material is consolidated around them. [Pg.544]


See other pages where Carbon fibre-reinforced wood is mentioned: [Pg.20]    [Pg.19]    [Pg.219]    [Pg.361]    [Pg.55]    [Pg.208]    [Pg.116]    [Pg.259]    [Pg.9]    [Pg.378]    [Pg.446]    [Pg.82]    [Pg.226]    [Pg.321]    [Pg.429]    [Pg.9]    [Pg.93]    [Pg.189]    [Pg.7]    [Pg.3]    [Pg.613]    [Pg.121]    [Pg.44]    [Pg.194]    [Pg.270]    [Pg.182]    [Pg.139]    [Pg.11]   
See also in sourсe #XX -- [ Pg.22 ]




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