Two prototype laminar composites have shown potential for high strength and high temperature applications. These composites might be made with less in-place anisotropy and be less expensive than comparable fiber composites
Investigation of filamentary composites having high strength and stiffness and a zero thermal coeffi...
High temperature research on creep rupture strength of refractory metal fiber and nickel alloy compo...
Advanced aircraft engine research within NASA Lewis is being focused on propulsion systems for subso...
A study was conducted to obtain indications of the potentialities of laminar metal-metal composites ...
Metallic composite prepared for utilization which remains intact without aluminum/carbon reactions, ...
Superalloy has 1000-hour strength of 37,000 psi at 2000 degrees F. The strength to density ratio of ...
Aluminum and magnesium composite sheet laminates reinforced with low density, high strength modular ...
Metallic composities can be fabricated in one-step process in which mixture is directionally solidif...
Tungsten fiber-reinforced nickel superalloy combines the strength of refractory metals with the oxid...
Introduction of metal foil as part of matrix and fiber composite, or ""sandwich'', improves strength...
Description of method for producing metallic composites reinforced with ceramic and refractory hard ...
The application of fiber composites to aeronautical and space vehicle systems indicates the followin...
There are ever-increasing demands to develop low-density materials that maintain high strength and s...
Metal fiber reinforced superalloys are being considered for construction of critical components in t...
A laminated composite material with improved interlaminar strength and damage tolerance having short...
Investigation of filamentary composites having high strength and stiffness and a zero thermal coeffi...
High temperature research on creep rupture strength of refractory metal fiber and nickel alloy compo...
Advanced aircraft engine research within NASA Lewis is being focused on propulsion systems for subso...
A study was conducted to obtain indications of the potentialities of laminar metal-metal composites ...
Metallic composite prepared for utilization which remains intact without aluminum/carbon reactions, ...
Superalloy has 1000-hour strength of 37,000 psi at 2000 degrees F. The strength to density ratio of ...
Aluminum and magnesium composite sheet laminates reinforced with low density, high strength modular ...
Metallic composities can be fabricated in one-step process in which mixture is directionally solidif...
Tungsten fiber-reinforced nickel superalloy combines the strength of refractory metals with the oxid...
Introduction of metal foil as part of matrix and fiber composite, or ""sandwich'', improves strength...
Description of method for producing metallic composites reinforced with ceramic and refractory hard ...
The application of fiber composites to aeronautical and space vehicle systems indicates the followin...
There are ever-increasing demands to develop low-density materials that maintain high strength and s...
Metal fiber reinforced superalloys are being considered for construction of critical components in t...
A laminated composite material with improved interlaminar strength and damage tolerance having short...
Investigation of filamentary composites having high strength and stiffness and a zero thermal coeffi...
High temperature research on creep rupture strength of refractory metal fiber and nickel alloy compo...
Advanced aircraft engine research within NASA Lewis is being focused on propulsion systems for subso...