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Continuous fiber-reinforced ceramic matrix composites, fatigue

Fatigue Behavior of Continuous Fiber-Reinforced Ceramic Matrix Composites... [Pg.189]

The model proposed by Rouby and Reynaud46 represents the first systematic approach for understanding how the microstructural damage governs the fatigue life of continuous fiber-reinforced ceramic matrix composites. This model will be used to explain various aspects of fatigue failure in the remaining portion of this chapter. [Pg.226]

Experimental studies of the influence of stress ratio on elevated temperature fatigue life have been conducted by Suresh71 for whisker-reinforced AI2O3 (see Chapter 7 by Suresh for a discussion of the fatigue behavior of whisker-reinforced ceramics). In this section, the influence of stress ratio on the fatigue life of continuous fiber-reinforced ceramic matrix composites is discussed. [Pg.226]


See other pages where Continuous fiber-reinforced ceramic matrix composites, fatigue is mentioned: [Pg.11]    [Pg.189]    [Pg.190]    [Pg.160]    [Pg.190]    [Pg.387]    [Pg.499]   


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Ceramer composites

Ceramic Reinforcement

Ceramic compositions

Ceramic fibers

Ceramic matrix composite

Ceramic-matrix

Ceramics ceramic-matrix composites

Ceramics) composites

Composite matrices

Composites fatigue

Continuous fiber

Continuous fiber ceramic composites

Continuous fiber composites

Continuous fiber reinforced composites

Continuous fiber reinforcement

Continuous fiber-reinforced

Fatigue reinforcements

Fiber Reinforced Ceramic Matrices

Fiber-reinforced ceramic composites

Fiber-reinforced composites

Matrix composition

Matrix continuity

Matrix fibers

Reinforcement continuous

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