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    Stress Corrosion Testing

    Craig H.
    Published: 1967

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    Table of Contents


    Stress Corrosion Testing Methods

    Influence of Stress and Temperature on Short-Transverse Stress Corrosion Cracking of an Al-4.2Zn-2.5Mg Alloy

    A Comparison of Three Precracked Specimens for Evaluating the Susceptibility of High-Strength Steel to Stress Corrosion Cracking

    Application of an Accelerated Stress Corrosion Test to Alloy Development

    A Rapid Stress Corrosion Test for Aluminum-Magnesium Alloys

    Influence of Environment on Crack Propagation Characteristics of High-Strength Aluminum Alloys

    Stress Corrosion Cracking of High-Strength Bolting

    Stress Corrosion of High-Strength Steel Alloys—Environmental Factors

    Stress Corrosion of Magnesium Alloys—Environmental Factors

    Resistance of Ferritic Stainless Steels to Stress Corrosion Cracking

    Some Techniques Used in the Study of Stress Corrosion Cracking

    A Proposed Mechanism for the Stress Corrosion Fracture of a Copper-Beryllium Alloy

    A Quantitative Stress Corrosion Test for Al-Zn-Mg Alloy Plate

    Stress Corrosion Test Environments and Test Durations

    Reactions Contributing to the Formation of Susceptible Paths for Stress Corrosion Cracking

    Critical Species in Stress Corrosion Phenomena

    Circulating Autoclave System for Stress Corrosion Cracking Studies

    Stress Corrosion Cracking Rates of a Nickel-Brass Alloy Under Applied Potential

    Reporting and Evaluating Stress Corrosion Data

    Evaluation of Various Techniques for Stress Corrosion Testing Welded Aluminum Alloys

    Stress Corrosion Testing of 7079-T6 Aluminum Alloy in Various Environments

    Environmental Factors Affecting the Stress Corrosion Cracking Behavior of an Aluminum-Zinc-Magnesium Alloy

    Committee: G01

    DOI: 10.1520/STP425-EB

    ISBN-EB: 978-0-8031-6808-4

    ISBN-13: 978-0-8031-6638-7