Prediction of very high cycle fatigue failure for high strength steels, based on the inclusion geometrical properties

Author:

Dominguez Almaraz Gonzalo M.

Publisher

Elsevier BV

Subject

Mechanics of Materials,General Materials Science,Instrumentation

Reference10 articles.

1. Marines I.G., Rubio C.G., Dominguez, G.A., Bathias, C., 2004. Carburized steel S–N curves in the gigacycle regime. In: Sakai, T., Ochi, Y. (Eds.), Proceedings of 3rd VHCF International Conference. Springer, Berlin, pp. 116–123.

2. Ultrasonic fatigue tests on bearing steel AISI-SAE 52 100 at frequency of 20kHz and 30kHz;Marines;Int. J. Fatigue,2003

3. Bayraktar, E.I., Marines, G., Bathias, C., 2004. Failure mechanisms of automotive metallic alloys in very high cycle fatigue range. In: Sakai, T., Ochi, Y. (Eds.), Proceedings of 3rd VHCF International Conference. University of Electro-Communications Publication, Tokyo, Japan, pp. 124–131.

4. Mughrabi, H., 2004. Specific features and mechanisms of fatigue in the ultrahigh cycle regime. In: Sakai, T., Ochi, Y. (Eds.), Proceedings of 3rd VHCF International Conference. University of Electro-Communications Publication, Tokyo, Japan, pp. 14–23.

5. A theory of fatigue crack initiation at inclusions

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