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    Cyclic Deformation, Fracture, and Nondestructive Evaluation of Advanced Materials

    Mitchell MR, Buck O
    Published: 1992

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    STP1157 provides insight into the deformation behavior/response of advanced engineering materials as well as nondestructive means to quantifying these responses.

    Table of Contents


    Cyclic Fatigue of Alumina

    Fatigue Crack Growth in Ceramics and Ceramic Matrix Composites

    Fatigue Test Methodology and Results for Ceramic Matrix Composites at Room and Elevated Temperatures

    Small-Crack Behavior and Safety-Critical-Design Criteria for Cyclic Fatigue in Mg-PSZ Ceramics

    Modeling Crack Growth Resistance in Ceramics and Ceramic-Matrix Composites

    Thermomechanical Cyclic Deformation of Metal-Matrix Composites

    Fatigue Characteristics of Heavily Cold-Rolled Cu-20Nb

    Effect of Tensile Mean Stress on Fatigue Behavior of Single-Crystal and Directionally Solidified Superalloys

    Mechanical Properties of Amorphous and Roll-Drawn Polypropylene

    The Influence of Constituent Properties on the Compression Behavior of Laminates with Discontinuities

    Cyclic Creep Effects in Single-Overlap Bonded Joints Under Constant-Amplitude Testing

    Interpretation of Laboratory Test Information for Residual Strength and Life Prediction of Composite Systems

    Crack Resistance, Fracture Toughness, and Instability in Damage-Tolerant Aluminum-Lithium Alloys

    Ultrasonic Wave Technique to Assess Cyclic-Load Fatigue Damage in Silicon-Carbide Whisker Reinforced 2124 Aluminum Alloy Composites

    Nondestructive Characterization for Metal-Matrix Composite Fabrication

    Nondestructive Evaluation of a Ceramic Matrix Composite Material

    Acoustic Emission Monitoring of Fatigue in Titanium Aluminide XD Composite

    On the Flexure Test and Nondestructive Evaluation for Nicalon/CAS Ceramic Composites

    Split Spectrum Processing of Backscattered Rayleigh Wave Signals to Improve Detectability of Fatigue Microcracks

    Author Index

    Subject Index

    Committee: E08

    DOI: 10.1520/STP1157-EB

    ISBN-EB: 978-0-8031-5212-0

    ISBN-13: 978-0-8031-1444-9