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Reinforced-plastic compaction

Reinforced Plastics. Reinforced plastics represent the most technologically advanced field of structural composites. They also have the broadest and most diverse range of applications. Fiber-reinforced plastics (FRPs) are divided into normal and advanced composites. The methods of working with each are very similar in many respects. The designation relates to the nature of the matrix and reinforcement materials and the tolerances required of the finished products. To create a fiber-reinforced plastic, an array of selected fiber reinforcement material is impregnated with a polymer resin and formed into a desired shape. The mass is then compacted to consolidate the fibers together as tightly as possible, and the matrix material polymerizes to form a solid mass about the reinforcement fibers. [Pg.1758]

Stadtfeld, H. C., Erninger, M., Bickerton, S. and Advani, S. G., An experimental method to continuously measure permeability of fiber preforms as a function of fiber volume fraction . Journal of Reinforced Plastics Composites, 21, 879-899, 2002. Yenihnez, B., Senan, M. and Sozer, E. M., Variation of part thickness and compaction pressure in vacuum infusion process , Composites Science and Technology, 69(11-12), 1710-1719, 2009. [Pg.306]

Karbhari VM, Simacek P. Notes on the modeling of preform compaction II -Effect of sizing on bundle level micromechanics. Journal of Reinforced Plastics and Composites, 1996 15(8) 837-861. DOI 10.1177/073168449601500807. [Pg.179]

Pressure bag compacting compacting reinforced plastics moulding by applying air pressure inside a heated vessel, as opposed to vacuum bag compacting (qv). [Pg.65]

Vacuum bag compacting when moulding reinforced plastics by hand lay-up (qv) the moulding can be compacted by enclosing it and... [Pg.66]


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