Stress-controlled isothermal fatigue experiments were performed at room temperature (RT) and 548 C (in argon) on (0)8 SCS6/Ti 15-3 metal matrix composites (MMC's) with 15 and 41 volume percent SCS6 (SiC) fibers. The primary objectives were to evaluate the mechanical responses, and to obtain a clear understanding of the damage mechanisms leading to failure of the MMC's. The mechanical data indicated that strain ranges attained fairly constant values in the stress-controlled experiments at both RT and 538 C, and remained so for more than 85 percent of life. The fatigue data for MMC's with different volume fraction fibers showed that MMC life was controlled by the imposed strain range rather than the stress range. At RT, and at low and interme...
Thermomechanical testing techniques recently developed for monolithic structural alloys were success...
The development of fatigue damage in (0/90) sub SCS-6/TI-15-3 laminates containing center holes was ...
Fatigue tests of the SCS-6/Timetal 21S composite system were performed to characterize the fatigue b...
The objective of this investigation was to identify the inelastic deformation and damage mechanisms ...
Several layups of SCS-6/Ti-15-3 composites were investigated. Fatigue tests were conducted and analy...
The role of fiber/matrix interface strength, residual thermal stresses, and fiber and matrix propert...
The fatigue characteristics of a unidirectional titanium based metal matrix composite (MMC) were inv...
Thermomechanical fatigue (TMF) data was generated for a Ti-15V-3Cr-3Al-3Sn (Ti-15-3) material reinfo...
The thermomechanical fatigue (TMF) deformation, damage, and life behaviors of SCS6/Timetal 21S (0/90...
This research extends the existing knowledge of cross-ply metal matrix composites (MMC) to include f...
Since metal matrix composites (MMC) are composed from two very distinct materials each having their ...
A general overview of the fatigue behavior of metal matrix composites (MMC) is presented. The first ...
The complex damage mechanisms that occur in fiber reinforced advanced metallic materials are discuss...
The response of a [0/90]2S, SCS-6/TIMETAL®21S metal matrix composite under isothermal and thermo mec...
The bridging fatigue crack growth damage mechanisms in a unidirectional SiC/Ti MMC include matrix cr...
Thermomechanical testing techniques recently developed for monolithic structural alloys were success...
The development of fatigue damage in (0/90) sub SCS-6/TI-15-3 laminates containing center holes was ...
Fatigue tests of the SCS-6/Timetal 21S composite system were performed to characterize the fatigue b...
The objective of this investigation was to identify the inelastic deformation and damage mechanisms ...
Several layups of SCS-6/Ti-15-3 composites were investigated. Fatigue tests were conducted and analy...
The role of fiber/matrix interface strength, residual thermal stresses, and fiber and matrix propert...
The fatigue characteristics of a unidirectional titanium based metal matrix composite (MMC) were inv...
Thermomechanical fatigue (TMF) data was generated for a Ti-15V-3Cr-3Al-3Sn (Ti-15-3) material reinfo...
The thermomechanical fatigue (TMF) deformation, damage, and life behaviors of SCS6/Timetal 21S (0/90...
This research extends the existing knowledge of cross-ply metal matrix composites (MMC) to include f...
Since metal matrix composites (MMC) are composed from two very distinct materials each having their ...
A general overview of the fatigue behavior of metal matrix composites (MMC) is presented. The first ...
The complex damage mechanisms that occur in fiber reinforced advanced metallic materials are discuss...
The response of a [0/90]2S, SCS-6/TIMETAL®21S metal matrix composite under isothermal and thermo mec...
The bridging fatigue crack growth damage mechanisms in a unidirectional SiC/Ti MMC include matrix cr...
Thermomechanical testing techniques recently developed for monolithic structural alloys were success...
The development of fatigue damage in (0/90) sub SCS-6/TI-15-3 laminates containing center holes was ...
Fatigue tests of the SCS-6/Timetal 21S composite system were performed to characterize the fatigue b...