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- W1514333882 startingPage "1273" @default.
- W1514333882 abstract "Electrochemical reoxidation currents are shown to provide a new method of detecting fatigue damage in metals. The basic principle is demonstrated by measurements on anodized fatigue samples of aluminum. The initial anodic oxide film is ruptured at the site of the fatigue damage, and the flow of charge is measured during subsequent reanodization, or healing of the oxide. The localized distribution of the damage is revealed by a simple immersion scanning procedure, and the flow of charge to these localized regions correlates with observations of the severity of the damage by scanning electron microscopy. Fatigue cracks ∼50 μm long or longer can be detected. In our specimens, these occurred after 10 percent of the fatigue life. The magnitude of the associated reanodization current transient is an accurate measure of the crack length and can predict the fatigue life within ±50 percent." @default.
- W1514333882 created "2016-06-24" @default.
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- W1514333882 date "1979-01-01" @default.
- W1514333882 modified "2023-09-23" @default.
- W1514333882 title "Detection of Fatigue Damage by Electrochemical Scanning" @default.
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- W1514333882 doi "https://doi.org/10.1016/b978-1-4832-8412-5.50211-3" @default.
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