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Fatigue crack propagation behavior in four-points bending specimens with multiple parallel edge notches at regular intervals
Authors:Hiroyuki Kagawa  Akira Morita
Affiliation:a Power Engineering R&D Center, The Kansai Electric Power Co. Inc., 11-20, Nakoji 3-Chome, Amagasaki, Hyogo 661-0974, Japan
b Research Supporting Division, Sumitomo Metal Technology Inc., 1-8, Huso-cho, Amagasaki, Hyogo 660-0891, Japan
c Graduate School of Engineering, Osaka University, 2-1, Yamadaoka, Suita, Osaka 565-0871, Japan
Abstract:Fatigue crack propagation tests were performed using specimens with multiple parallel edge notches at regular intervals. Fatigue pre-cracks of uniform length were successfully introduced by eccentric tension-compression loading. Fatigue crack propagation tests were carried out under four-points bending loading. Obtained crack propagation behavior was simulated by using newly developed stress intensity factor equations for multiple parallel edge cracks with alternately different lengths. Simulated results showed a good agreement with the experiment for specimens with relatively broad crack intervals, while for specimens with narrow crack intervals showed a different tendency from the experiment when crack lengths became long.
Keywords:Stress intensity factor  Fatigue crack growth  Finite element analysis  Multiple parallel cracks  Crack interval
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