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    High Temperature and Environmental Effects on Polymeric Composites: 2nd Volume

    Gates TS, Zureick A-H
    Published: 1997

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    State-of-the-art research on the advancement of polymeric composite durability from experts in materials science and the mechanics of materials. 15 comprehensive, peer-reviewed papers examine such topics as:

    • Analytical models that predict long-term performance

    • Thermomechanical procedures to improve mechanical performance

    • The development of a methodology to predict remaining strength and life in polymeric composites

    • The impact of moisture in elevated temperature environments

    • The interaction between creep and fatigue at elevated temperatures

    • How crack propagation rates correlated with the stress intensity factor effect materials

    • Experimental and analytical techniques for assessing long-term performance and durability.

    Table of Contents

    The Effects of Moisture on the Material Properties and Behavior of Thermoplastic Polyimide Composites

    Materials and Mechanics Analyses of Durability Tests for High-Temperature Polymer Matrix Composites

    Mechanisms of Property Improvements of Polymer Composites by Thermomechanical Treatment

    Simulation Methods for Life and Remaining Strength Prediction of High-Temperature Polymeric Composites Subjected to Cyclic Loads

    Effect of Moisture on the Interfacial Shear Strength: A Study Using the Single Fiber Fragmentation Test

    Aging of Composites in Water: Comparison of Five Materials in Terms of Absorption Kinetics and Evolution of Mechanical Properties

    Two-Dimensional Moisture Diffusion in Hybrid Composite Components

    Creep-Fatigue Interaction in Delamination Crack Propagation of Advanced CFRPs at High Temperatures

    Characterization of a Graphite/Epoxy Composite Under In-Plane Shear Fatigue Loading

    High Temperature and Environmental Effects on the Durability of Ti-6AI-4V/FM5 Adhesive Bonded System

    Long-Term Isothermal Aging Effects on Carbon Fabric-Reinforced PMR-15 Composites: Compression Strength

    Microscopic Study of Surface Degradation of Glass Fiber-Reinforced Polymer Rods Embedded in Concrete Castings Subjected to Environmental Conditioning

    Use of Thermogravimetric Analysis to Develop Accelerated Test Methods to Investigate Long-Term Environmental Effects on Fiber-Reinforced Plastics

    Combined Effects of the Low-Earth-Orbit Environment on Polymeric Materials

    Physical and Chemical Aging Effects in PMR-15 Neat Resin

    Committee: D30

    DOI: 10.1520/STP1302-EB

    ISBN-EB: 978-0-8031-5360-8

    ISBN-13: 978-0-8031-1491-3