Article ID Journal Published Year Pages File Type
777080 International Journal of Fatigue 2008 10 Pages PDF
Abstract

The fatigue crack growth rate in notched fiber metal laminates under constant amplitude fatigue loading was studied analytically and experimentally. An analytical approach was used for predicting the crack growth rate with an empirical Paris-type equation, where the effective stress intensity factor in the metal layer is modulated by a bridging factor. The dimensionless bridging factor is calculated by the normalized bridging stress intensity factor with respect to the remote stress intensity factor. The S–N curve was also calculated based on the predicted crack growth rate and the crack initiation life. A 3-D finite element method was established to predict the delamination profile during crack growth. Good agreement was achieved between the prediction and experimental results.

Related Topics
Physical Sciences and Engineering Engineering Mechanical Engineering
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