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Fibre-reinforced plastics composites

Jones, F.R., Interfacial aspects of glass fibre reinforced plastics. In Jones, F.R. (Ed.), Interfacial Phenomena in Composite Materials. Butterworths, London, 1989, pp. 25-32. Chaudhury, M.K., Gentle, T.M. and Plueddemann, E., Adhesion mechanism of poly(vinyl chloride) to silane primed metal surfaces. J. Adhes. Sci. Technol, 1(1), 29-38 (1987). Gellman, A.J., Naasz, B.M., Schmidt, R.G., Chaudhury, M.K, and Gentle, T.M., Secondary neutral mass spectrometry studies of germanium-silane coupling agent-polymer interphases. J. Adhes. Sci. Technol., 4(7), 597-601 (1990). [Pg.709]

Access of air and water will also affect the corrosion rate. Metal inserts in corrosive plastics are most actively attacked at the plastic/metal/air interfaces with certain metals, notably aluminium titaniumand stainless steel, crevice effects (oxygen shielding and entrapment of water) frequently accelerate attack. Acceleration of corrosion by bimetallic couples between carbon-fibre-reinforced plastics and metals presents a problem in the use of these composites. [Pg.955]

Recycling of glass fibre-reinforced plastics is reviewed, with special emphasis on remelting of thermoplastic composites, mechanical recycling of thermoset composites, depolymerisation and dissolution of thermosets and thermoplastics, closed loop recycling of glass, and the use of glass as a mechanical compatibiliser. 32 refs. [Pg.84]

Journal of Thermoplastic Composite Materials 7, No.l, Jan.l994,p.64-74 NEW DEVELOPMENTS IN CHEMICAL RECYCLING AS A SINK FOR PROBLEMATIC WASTE FROM FIBRE-REINFORCED PLASTICS Menges G... [Pg.98]

ISO 527-4, Plastics - Determination of tensile properties - Part 4 Test conditions for isotropic and orthotropic fibre-reinforced plastic composites, 1997. [Pg.82]

ISO 527-4 1997 Plastics - Determination of tensile properties - Part 4 Test conditions for isotropic and orthotropic fibre-reinforced plastic composites ISO 527-5 1997 Plastics - Determination of tensile properties - Part 5 Test conditions for unidirectional fibre-reinforced plastic composites ISO 1798 1997 Flexible cellular polymeric materials - Determination of tensile strength and elongation at break... [Pg.172]

ISO 14125 2001 Fibre-reinforced plastic composites - Determination of flexural properties... [Pg.173]

ISO 14129 1997 Fibre-reinforced plastic composites - Determination of the in-plane shear stress/shear strain response, including the in-plane shear modulus and strength, by the plus or minus 45 degree tension test method... [Pg.174]

ISO 14130 1997 Fibre-reinforced plastic composites - Determination of apparent interlaminar shear strength by short-beam method ISO 15024 2001 Fibre-reinforced plastic composites - Determination of mode I interlaminar fracture toughness, GIC, for unidirectionally reinforced materials... [Pg.174]

Airbus A380 structure uses 25 % of advanced composites. Carbon fibre reinforced plastics (CFRP) are used for about 22% of the airframe. [Pg.842]

J. Summerscales, ed., Nondestructive Testing of Fibre-Reinforced Plastic Composites, Vol. 1, Elsevier Applied Science Publishers, Ltd., Barking, U.K., 1987, PP. 278, 627-629. [Pg.161]

Carbon-fibre-reinforced plastic (CRP) is used in die manufacture of golf clubs and tennis rackets, a What are composite materials b Which two substances are used to manufacture this composite material ... [Pg.43]

Dickinson JT (1990) In Summerscales (ed) Non-destructive testing of fibre-reinforced plastics composites, vol 2. Elsevier Applied Science, London... [Pg.175]

Fibre reinforced plastic (FRP) composites are gaining a wide reeognition as an alternative to the traditional metallic materials in a variety of applieations. As a result a reasonable step is to understand the mechanics of composites and provide the designers and industry with the knowledge based on reliable data stemmed from extensive researeh. [Pg.221]

Man-made composites fall into three broad classes, depending on whether the main part of the composite, the matrix, is a polymer, a metal or a ceramic. Often, but not always, the composite combines materials from two classes, as in glass-fibre-reinforced plastics. However, the most widely used composite material, concrete, is a ceramic -ceramic composite. The most important classes of artificial composite are described below. The mechanical properties of composites are discussed in Section 10.4. Biological composites are very varied and will not be considered here. [Pg.187]

If concrete removal is not required or supplementary reinforcing bars cannot be used, external reinforcement can be applied. For instance, steel bars may be encased in a shotcrete layer or steel plates may be bonded onto the concrete surface. Recently, the use of steel plates has been substituted by fibre-reinforced plastics (F. R.P.), that are composite materials with glass, aramide or carbon fibres embedded in a polymeric matrix (usually an epoxy system). F. R.P. are available in the form of laminates or sheets that are bonded to the concrete surface using an epoxy adhesive [11]. They are typically used to improve the flexural and shear strength or to provide confinement to concrete subjected to compression. The... [Pg.341]

BS EN ISO 527, Part 5, Plastics—Determination of tensile properties—Test conditions for unidirectional fibre-reinforced plastic composites. [Pg.425]

EN ISO FDIS 14,126. Fibre-reinforced plastic composites—Determination of the in-plane compression strength. [Pg.425]

BS EN ISO 14,125, Fibre-reinforced plastic composites of the flexural properties. [Pg.425]

Kaczmarek, H. (1995), Ultrasonic detection of damage in carbon fibre reinforced plastics, J. Composite Materials. 29. 1, 59-95. [Pg.839]

Edmund. G.. and Henneke, I. I. (1990). Ultrasonic nondestructive examination of advanced composite.s. Non-Destructive Testing of Fibre Reinforced Plastics Composites. Vol. 2. Elsevier Applied Science. [Pg.840]

A summary of quasi-static delamination test methods for continuous-fibre, unidirectional FRP composites is given in Table 8.1. For mode 1, several standard test methods exist, namely, JIS K7086 ( Testing methods for interlaminar fracture toughness of carbon fibre reinforced plastics , 1993) this also includes a quasi-static mode 11 standard test, ASTM... [Pg.196]

McCarthy MA, Lawlor VP, Stanley WF. An experimental study of bolt-hole clearance effects in single-lap, multi-bolt composite joints. J Compos Mater 2005 39(9) 799—825. Hart-Smith LJ. Design and empirical analysis of bolted or riveted joints. In Joining fibre reinforced plastics. Elsevier Science 1987. pp. 227—69. [Pg.333]

Godwin EW, Matthews FL. A review of the strength of joints in fibre reinforced plastics part 1. Mechanically fastened joints. Composites 1980 11(3) 155—60. [Pg.411]

Kister G, Ralph B, Fernando GF. Damage detection in glass fibre-reinforced plastic composites using self-sensing E-glass fibres. Smart Mater Stmct 2004 13(5) 1166—75. http //dx.doi.Org/10.1088/0964-1726/13/5/021. [Pg.507]


See other pages where Fibre-reinforced plastics composites is mentioned: [Pg.165]    [Pg.240]    [Pg.881]    [Pg.74]    [Pg.35]    [Pg.4]    [Pg.844]    [Pg.109]    [Pg.169]    [Pg.179]    [Pg.11]    [Pg.12]    [Pg.197]    [Pg.335]    [Pg.380]    [Pg.380]   
See also in sourсe #XX -- [ Pg.282 , Pg.283 , Pg.284 , Pg.285 , Pg.290 , Pg.292 , Pg.299 , Pg.308 , Pg.309 , Pg.321 ]




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Carbon fibre-reinforced plastic composites

Composite fibre reinforced

Composite materials fibre-reinforced plastics

Composite plasticity

Composites Fibre-reinforcement

Fibre reinforcement

Fibre-reinforced plastic composite deformability

Fibre-reinforced plastic composite mechanical properties

Fibre-reinforced plastic composite shear strength

Fibre-reinforced plastic composite types

Fibre-reinforced plastic composite using

Fibre-reinforced plastics fibres

Fibre-reinforced plastics polyester composite

Fibre-reinforced thermoset plastic composites

Glass fibre-reinforced plastic composites

Plastic composites

Plasticized Compositions

Plastics compositions

Reinforced plastics reinforcement

Reinforcements plastics

Reinforcing fibre

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