Today, a major thrust toward improving the thermomechanical properties of engine components lies in the development of fiber-reinforced silicon carbide matrix composite materials, including SiC-fiber/SiC-matrix composites. These materials are lighter in weight and capable of withstanding higher temperatures, relative to state-of-the-art metallic alloys and oxide-matrix composites for which maximum use temperatures are in the vicinity of 1,100 C. In addition, the toughness or damage tolerance of the SiC-matrix composites is significantly greater than that of unreinforced silicon-based monolithic ceramics. For successful application in advanced engine systems, the SiC-matrix composites should be able to withstand component service stresses an...
Silicon Carbide based Ceramic Matrix Composites (CMCs) are attractive materials for use in high-temp...
Silicon Carbide based Ceramic Matrix Composites (CMCs) are attractive materials for use in high-temp...
The use of reliable, high-temperature, lightweight materials in the manufacture of aircraft engines ...
Today, a major thrust for achieving engine components with improved thermal capability is the develo...
As structural materials for hot-section components in advanced aerospace and land-based gas turbine ...
Silicon carbide fiber reinforced silicon carbide (SiC/SiC) composites are candidate materials for va...
Researchers at the NASA Glenn Research Center have been developing durable, high-temperature ceramic...
Silicon Carbide based Ceramic Matrix Composites (CMCs) are attractive materials for use in high-temp...
SiC-SiC composites are being considered as potential candidate materials for next generation turbine...
For 5 years, the cooperative agreement NCC3-763 has focused on the development and understanding of ...
For the successful utilization of ceramic matrix composites (CMC) as hot-section components in advan...
The mechanical properties of NASA Lewis developed SiC/RBSN composites and their thermal and environm...
Silicon carbide (SiC) composites are considered to be potential materials for future aircraft engine...
Advanced SiC/SiC ceramic matrix composites (CMCs) are being considered for demanding aerospace appli...
Silicon carbide fibers reinforced silicon carbide based-matrix composites (SiC/SiC CMC’s), are proba...
Silicon Carbide based Ceramic Matrix Composites (CMCs) are attractive materials for use in high-temp...
Silicon Carbide based Ceramic Matrix Composites (CMCs) are attractive materials for use in high-temp...
The use of reliable, high-temperature, lightweight materials in the manufacture of aircraft engines ...
Today, a major thrust for achieving engine components with improved thermal capability is the develo...
As structural materials for hot-section components in advanced aerospace and land-based gas turbine ...
Silicon carbide fiber reinforced silicon carbide (SiC/SiC) composites are candidate materials for va...
Researchers at the NASA Glenn Research Center have been developing durable, high-temperature ceramic...
Silicon Carbide based Ceramic Matrix Composites (CMCs) are attractive materials for use in high-temp...
SiC-SiC composites are being considered as potential candidate materials for next generation turbine...
For 5 years, the cooperative agreement NCC3-763 has focused on the development and understanding of ...
For the successful utilization of ceramic matrix composites (CMC) as hot-section components in advan...
The mechanical properties of NASA Lewis developed SiC/RBSN composites and their thermal and environm...
Silicon carbide (SiC) composites are considered to be potential materials for future aircraft engine...
Advanced SiC/SiC ceramic matrix composites (CMCs) are being considered for demanding aerospace appli...
Silicon carbide fibers reinforced silicon carbide based-matrix composites (SiC/SiC CMC’s), are proba...
Silicon Carbide based Ceramic Matrix Composites (CMCs) are attractive materials for use in high-temp...
Silicon Carbide based Ceramic Matrix Composites (CMCs) are attractive materials for use in high-temp...
The use of reliable, high-temperature, lightweight materials in the manufacture of aircraft engines ...