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Mechanism of fatigue crack growth in a secundary hardening steel

โœ Scribed by I. B. Alekseichuk; G. P. Karzov; Yu. A. Nikonov


Publisher
Springer
Year
1984
Tongue
English
Weight
591 KB
Volume
20
Category
Article
ISSN
1573-885X

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Room temperature fatigue crack growth (FCG) testing was conducted after thermal aging for 500 and 5000 h at 823 K and for 500 h at 923 K, on 9%Cr-1%Mo steel normalized at 1323 K and tempered at 1053 K. Though crack growth behavior in Paris regime is not much affected by aging, stress intensity facto