Characteristics of elastic waves generated by fatigue crack penetration and growth in an aluminum plate
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering
Link
http://link.springer.com/content/pdf/10.1007/BF02983589.pdf
Reference26 articles.
1. Ando, K., Fujibayashi, S., Nam, K. W., Takahashi, M. and Ogura, N., 1987, “ The Fatigue Life and Crack Through-Thickness Behavior of a Surface-Cracked Plate (for the Case of Tensile Load),”JSME Int. J., Vol. 30, pp. 1898–1905.
2. Ando, K., Matsushita, H., Fujibayashi, S. and Ogura, N., 1985, “ Separation and Fracture Toughness of Controlled Rolled Steel,”J. Society of Materials Science, Vol.34, pp. 388–393, (in Japanese).
3. Choi, C. Y., Kwon. J. D. and Sul, I. C., 2001, “ Application of the Leak Before Break (LBB) Concept to a Heat Exchanger in a Nuclear Power Plant,”KSME International Journal, Vol. 15, pp. 10–20.
4. Dunegan, H. L. and Harris, D. O., 1969, “ Acoustic Emission — A New Nondestructive Testing Tool,”Ultrasonics, Vol. 7, pp. 160–166.
5. Elber, W., 1970, “ Fatigue Crack Closure under Cyclic Tension,”Engng. Fract. Mech., Vol. 2, pp. 37–45.
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1. Influence of Stress Ratio of Elastic Waves Generated by Fatigue Crack Growth and Penetration in 6061 Aluminum Plates;Transactions of the Korean Society of Mechanical Engineers A;2005-06-01
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3. Fabrication and AE characteristics of TINI/A16061 shape memory alloy composite;KSME International Journal;2004-03
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