In this paper, the fatigue life of fiber-reinforced ceramic-matrix composites (CMCs) with different fiber preforms, i.e., unidirectional, cross-ply, 2D (two dimensional), 2.5D and 3D CMCs at room and elevated temperatures in air and oxidative environments, has been predicted using the micromechanics approach. An effective coefficient of the fiber volume fraction along the loading direction (ECFL) was introduced to describe the fiber architecture of preforms. The statistical matrix multicracking model and fracture mechanics interface debonding criterion were used to determine the matrix crack spacing and interface debonded length. Under cyclic fatigue loading, the fiber broken fraction was determined by combining the interface wear model and...
Ceramic matrix composites (CMCs) reinforced with continuous fibers exhibit several features that dif...
An experimental investigation was performed to study the rate at which strength-controlling fatigue ...
This paper investigates the fatigue failure of SiC fibers bridging a fatigue crack in unidirectional...
In this paper, the fatigue life of fiber-reinforced ceramic-matrix composites (CMCs) with different ...
In this paper, the damage accumulation and life prediction in fiber-reinforced ceramic-matrix compos...
The damage evolution and life prediction of cross-ply C/SiC ceramic-matrix composite (CMC) under cyc...
In this paper, micromechanical constitutive models are developed to predict the tensile and fatigue ...
Prediction of fatigue damage and fatigue life in fiber-reinforced ceramic-matrix composites under th...
Stress-strain behavior of unidirectional Nicalon fiber/CAS II matrix composite was examined at varyi...
An analytic methodology is developed to model the response of fiber-reinforced ceramic matrix compos...
Low-cycle fatigue failure in titanium metal matrix composites is caused by two separate damage mecha...
A life prediction model is being developed by the authors for application to metal matrix composites...
In this paper, comparisons of damage evolution between 2D C/SiC and SiC/SiC ceramic-matrix composite...
In this paper, the synergistic effects of stress rupture and cyclic loading on the strain response o...
The successful application of fiber-reinforced ceramic matrix composites (CMC) depends strongly on m...
Ceramic matrix composites (CMCs) reinforced with continuous fibers exhibit several features that dif...
An experimental investigation was performed to study the rate at which strength-controlling fatigue ...
This paper investigates the fatigue failure of SiC fibers bridging a fatigue crack in unidirectional...
In this paper, the fatigue life of fiber-reinforced ceramic-matrix composites (CMCs) with different ...
In this paper, the damage accumulation and life prediction in fiber-reinforced ceramic-matrix compos...
The damage evolution and life prediction of cross-ply C/SiC ceramic-matrix composite (CMC) under cyc...
In this paper, micromechanical constitutive models are developed to predict the tensile and fatigue ...
Prediction of fatigue damage and fatigue life in fiber-reinforced ceramic-matrix composites under th...
Stress-strain behavior of unidirectional Nicalon fiber/CAS II matrix composite was examined at varyi...
An analytic methodology is developed to model the response of fiber-reinforced ceramic matrix compos...
Low-cycle fatigue failure in titanium metal matrix composites is caused by two separate damage mecha...
A life prediction model is being developed by the authors for application to metal matrix composites...
In this paper, comparisons of damage evolution between 2D C/SiC and SiC/SiC ceramic-matrix composite...
In this paper, the synergistic effects of stress rupture and cyclic loading on the strain response o...
The successful application of fiber-reinforced ceramic matrix composites (CMC) depends strongly on m...
Ceramic matrix composites (CMCs) reinforced with continuous fibers exhibit several features that dif...
An experimental investigation was performed to study the rate at which strength-controlling fatigue ...
This paper investigates the fatigue failure of SiC fibers bridging a fatigue crack in unidirectional...