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Crack growth retardation following the application of an overload cycle using a strip-yield model
Authors:John Codrington  Andrei Kotousov
Affiliation:School of Mechanical Engineering, University of Adelaide, SA 5005, Australia
Abstract:Experiments have shown that the application of an overload cycle can act to retard crack growth and even potentially lead to crack arrest. This paper describes a new method for investigating fatigue crack growth after the application of an overload cycle under plane stress conditions. The developed method is based on the concept of plasticity-induced crack closure and utilises the distributed dislocation technique and a modified strip-yield model. The present results are compared to previous experimental data for several materials. A good agreement is found, with the predictions showing the same trends in the various stages of post-overload crack growth.
Keywords:Crack growth retardation   Distributed dislocation technique   Fatigue crack closure   Overload effect   Plasticity-induced crack closure
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