Handbook of Composite Reinforcements
This comprehensive single volume handbook covers every aspect of reinforcement science, from hands-on subjects, such as manual 'lay-up' processing, to theoretical discussions concerning rheology and modeling. Taken from the recently published six volume International Encyclopedia of Composites, this reference volume offers scholarly and practical knowledge of distinguished industry-experts, academics, and government researchers in one accessible and informative handbook.
Fibers, processes, and composite reinforcement types, as well as relevant miscellaneous subjects such as property relationships, manufacturing, hybrid reinforcements, and modeling are given detailed treatment. Engineers, materials scientists, and technologists will find the Composite Reinforcement Handbook an invaluable tool.
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3D braided adhesion alloy aluminum applications aramid axial basal plane bonding boron carbon fibers carbon–carbon ceramic chemical coating components Composite Materials compressive core crack crystal cure deformation density developed diameter epoxy extruded fabrication failure fiber composites fiber length fiber orientation fiber reinforced fiber surface filament winding filler Flexural flow fracture toughness glass fibers graphite heat high modulus increase interface Kevlar Kevlar 49 laminate layer layup liquid load magnesium mandrel manufacturing mechanical properties melt ment Metal Matrix Composites method microspheres mold oxide particleboard particles PBZT phase plasma plastic polyester polyimide polymer polymeric powder preform prepreg pressure produced resin resistance rheology shape shear strength shown in Figure silicon carbide solid stiffness strain stress structure syntactic foams Table techniques temperature tensile strength thermal thermoplastic thickness tion ture typical U.S. Patent viscosity volume fraction weave yarns