Ceramic Matrix Composites: Lifetime and Strength Prediction Under Static and Stochastic Loading focuses on the strain response and lifetime prediction of fiber-reinforced ceramic-matrix composites under stress-rupture loading at intermediate temperatures.
Typical damage mechanisms of matrix cracking, interface debonding and oxidation, and fiberâs oxidation and fracture are considered in the micromechanical analysis.
Effects of compositeâs constituent properties, peak stress, and testing temperature on the compositeâs strain response and lifetime are also analyzed in detail.
Finally, a comparison of constant and different stochastic stress spectrum on compositeâs damage evolution and fracture is discussed.
This book will be a practical guide for the material researcher and component designer needing to better understand the compositeâs damage and fracture behavior under stress-rupture loading at intermediate temperatures.
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