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・ Fibre Channel network protocols
・ Fibre Channel over Ethernet
・ Fibre Channel over IP
・ Fibre Channel point-to-point
・ Fibre Channel Protocol
・ Fibre Channel switch
・ Fibre Channel time-out values
・ Fibre Channel Utility
・ Fibre Channel zoning
・ Fibre multi-object spectrograph
・ Fibre optic gyrocompass
・ Fibre optic gyroscope
・ Fibre satellite distribution
・ Fibre saturation point
・ Fibre supplements
Fibre-reinforced plastic
・ Fibrecity Holdings
・ Fibred category
・ FibreFab
・ Fibrelac
・ Fibrenap (Cushy Pads)
・ FibreOP
・ FibreTech Innovations
・ Fibria
・ Fibriani Ratna Marita
・ Fibriciellum
・ Fibricola lucida
・ Fibrifold
・ Fibril
・ Fibrillanosema crangonycis


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Fibre-reinforced plastic : ウィキペディア英語版
Fibre-reinforced plastic
Fibre-reinforced plastic (FRP) (also ''fibre-reinforced polymer'') is a composite material made of a polymer matrix reinforced with fibers. The fibres are usually glass, carbon, aramid, or basalt. Rarely, other fibres such as paper or wood or asbestos have been used. The polymer is usually an epoxy, vinylester or polyester thermosetting plastic, and phenol formaldehyde resins are still in use.
FRPs are commonly used in the aerospace, automotive, marine, construction industries and ballistic armor.
==Process definition==
A polymer is generally manufactured by Step-growth polymerization or addition polymerization. When combined with various agents to enhance or in any way alter the material properties of polymers the result is referred to as a plastic. Composite plastics refer to those types of plastics that result from bonding two or more homogeneous materials with different material properties to derive a final product with certain desired material and mechanical properties. Fibre-reinforced plastics are a category of composite plastics that specifically use fibre materials to mechanically enhance the strength and elasticity of plastics. The original plastic material without fibre reinforcement is known as the matrix. The matrix is a tough but relatively weak plastic that is reinforced by stronger stiffer reinforcing filaments or fibres. The extent that strength and elasticity are enhanced in a fibre-reinforced plastic depends on the mechanical properties of both the fibre and matrix, their volume relative to one another, and the fibre length and orientation within the matrix.〔Smallman, R. E., and R.J. Bishop. (Modern Physical Metallurgy and Materials Engineering ). 6th ed. Oxford: Butterworth-Heinemann, 1999.〕 Reinforcement of the matrix occurs by definition when the FRP material exhibits increased strength or elasticity relative to the strength and elasticity of the matrix alone.〔Erhard, Gunter. (Designing with Plastics ). Trans. Martin Thompson. Munich: Hanser Publishers, 2006.〕

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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