Toughened Composites

    Johnston NJ
    Published: 1987

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    Twenty-six papers provide research findings in the effort to develop high performance continuous fiber composites. The papers are multidisciplinary, covering micromechanics, interlaminar fracture, composite toughness, interfacial adhesion, thermoplastic matrices, and thermoset matrices.

    Table of Contents

    Johnston N.

    Toughened Composites Selection Criteria
    Kam C., Walker J.

    Damage Tolerance of Toughened Resin Graphite Composites
    Griffin C.

    The Effect of Resin Toughness and Modulus on Compressive Failure Modes of Quasi-Isotropic Graphite/Epoxy Laminates
    Hahn H., Sohi M., Williams J.

    A Comparison of Several Mechanical Tests Used to Evaluate the Toughness of Composites
    Hirschbuehler K.

    Matrix Resin Effects in Composite Delamination: Mode I Fracture Aspects
    Bascom W., Hunston D., Johnston N., Moulton R.

    Micromechanisms of Fracture in Toughened Graphite-Epoxy Laminates
    Bradley W., Jordan W.

    Interlaminar Fracture Toughness and Real-Time Fracture Mechanism of Some Toughened Graphite/Epoxy Composites
    Bradley W., Hibbs M., Tse M.

    Fractographic Analysis of Interlaminar Fracture
    Bascom W., Boll D., Fuller B., Hunston D., Phillips P.

    Effect of Fiber Coatings on Interlaminar Fracture Toughness of Composites
    Hartness J., Schwartz H.

    Surface Energy Measurements of Graphite and Glass Filaments
    Weinberg M.

    Axisymmetric Stress Distribution Around an Isolated Fiber Fragment
    Drzal L., Whitney J.

    Comparisons of Various Configurations of the Edge Delamination Test for Interlaminar Fracture Toughness
    Johnston N., Morris D., O'Brien T., Raju I., Simonds R.

    The Characterization of Edge Delamination Growth in Laminates Under Fatigue Loading
    Poursartip A.

    Frequency and Load Ratio Effects on Critical Strain Energy Release Rate Gc Thresholds of Graphite/Epoxy Composites
    Adams D., Odom E., Zimmerman R.

    Rate Effects on Delamination Fracture Toughness of a Toughened Graphite/Epoxy
    Aliyu A., Daniel I., Shareef I.

    The Effect of Matrix Toughness on Delamination: Static and Fatigue Fracture Under Mode II Shear Loading of Graphite Fiber Composites
    Russell A., Street K.

    Influence of the Resin on Interlaminar Mixed-Mode Fracture
    Johnson W., Mangalgiri P.

    Ryton®-PPS Carbon Fiber Reinforced Composites: The How, When, and Why of Molding
    Beever W., Lou A., O'Connor J., Ryan C.

    The Development of Residual Thermal Stresses in Amorphous and Semicrystalline Thermoplastic Matrix Composites
    Nairn J., Zoller P.

    Mechanical Properties and Morphology of Poly(etheretherketone)
    Cebe P., Chung S., Gupta A., Hong S.

    Delamination Behavior of Carbon Fiber/Poly(etheretherketone) (PEEK) Composites
    Curtis D., Leach D., Tamblin D.

    Modifying Matrix Materials for Tougher Composites
    Yee A.

    Structural Property Improvements Through Hybridized Composites
    Evans R., Garcia R., Palmer R.

    A New Generation of Epoxy Composites for Primary Structural Applications: Materials and Mechanics
    Evans R., Masters J.

    Screening of Advanced Matrix Resin Systems for Use in High Performance Aircraft
    Boschan R., Forsberg G., Harper-Tervet J., Hull G., Tajima Y.

    A Dicyanate Semi-Interpenetrating Polymer Network (SIPN) Matrix Composite
    Hartness J.

    Author Index

    Subject Index

    Committee: D30

    DOI: 10.1520/STP937-EB

    ISBN-EB: 978-0-8031-5002-7

    ISBN-13: 978-0-8031-0934-6

    ASTM International is a member of CrossRef.