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Refractory Fiber Reinforced Composites
Refractory Fiber Reinforcements for Elevated Temperature
Development and Fabrication of High Strength Alloy Fibers
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airfoil alloy aluminum applications as-drawn as-fabricated Avco axial specimens B/Al behavior blade materials bonding boron boron fiber brittle carbon ceramic Composite Materials cost cracks creep curve cycles density diameter ductile dynamic modulus effect elastic modulus elevated temperatures exposure fabrication process FeCrAlY fiber reinforced fiber-matrix filament flexural strength FP/Al fracture strain G/Gl gas turbine graphite graphite fiber heat treatment heat-treated high strength high temperature increase interaction interface investment casting JT9D Kovar longitudinal flexural matrix alloy measured mechanical properties melting Metal Matrix Composites micron microstructure modulus mold NASA oxidation polymers potential predicted refractory resistance room temperature shown in Figure SiC(C silicon carbide sintered stainless steel stress rupture stress-to-rupture superalloy swaging Table techniques tensile strength thermal expansion thermal fatigue transverse tungsten fibers tungsten wires turbine blade v/o fiber vacuum values volume fraction volume percent W/FeCrAlY wire reinforced zone