Local fatigue crack propagation behavior of a two-pass friction stir welded aluminum alloy
Author:
Affiliation:
1. Department of Mechanical Engineering, Nagaoka University of Technology
2. Nikkei Niigata Co. Ltd
Publisher
Japan Society of Mechanical Engineers
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/mej/1/6/1_2014smm0057/_pdf
Reference19 articles.
1. Annual Book of ASTM Standards, Standard Test Method for Measurement of Fatigue Crack Growth Rates, E647, (2003), pp. 615-641, ASTM International.
2. Brown R., Wei Tang and Reynolds A.P., Multi-pass friction stir welding in alloy 7050-T7451: Effects on weld response variables and on weld properties, Materials Science and Engineering: A, Vol. 513-514, (2009), pp. 115-121.
3. Chen Y. C, Feng J. C and Liu H.J, Precipitate evolution in FSW of 2219-T6 aluminum alloys, Materials Characterization, Vol. 60, (2009), pp. 476-481.
4. Chen Y., Liu H. and Feng J., Friction stir welding characteristics of different heat-treated-state 2219 aluminum alloy plates, Materials Science and Engineering: A, Vol. 420, (2006), pp. 21-25.
5. Gavras A. G., Chenelle B. F. and Lados D. A., Effects of microstructure on the fatigue crack growth behavior of light metals and design considerations, Revista Matéria, Vol. 15, (2010) pp. 319-329.
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