Model for Fatigue Life Prediction of Titanium Alloys. Part 2. Model Testing and Analysis of Obtained Results
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanics of Materials
Link
http://link.springer.com/content/pdf/10.1007/s11223-013-9443-4.pdf
Reference9 articles.
1. O. M. Herasymchuk and O. V. Kononuchenko, “Model for fatigue life prediction of titanium alloys. Part 1. Elaboration of a model of fatigue life prior to initiation of microstructurally short crack and a propagation model for physically short and long cracks,” Strength Mater., 45, No. 1, 44–55 (2013).
2. V. T. Troshchenko, B. A. Gryaznov, Yu. S. Nalimov, et al., “Fatigue strength and cyclic crack resistance of titanium alloy VT3-1 in different structural states. Communication 1. Study procedure and experimental results,” Strength Mater., 27, No. 5–6, 245–251 (1995).
3. O. M. Herasymchuk, “A generalized grain-size dependence of the fatigue limit,” Strength Mater., 43, No. 2, 205–216 (2011).
4. G. Lütjering and J. C. Williams, Titanium, Springer, Berlin–New York (2003).
5. C. Santus and D. Taylor, “Physically short crack propagation in metals during high cycle fatigue,” Int. J. Fatigue, 31, 1356–1365 (2009).
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