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- W1963863968 endingPage "2034" @default.
- W1963863968 startingPage "2021" @default.
- W1963863968 abstract "A sequentially coupled thermo-mechanical finite element model is used to simulate the friction stir welding process. Fracture mechanical models for the middle tension specimen and the eccentrically loaded single-edge crack tension specimen are established. Utilizing the residual stress intensity factor obtained by the fracture mechanical models, the crack-closure model and superposition method are adopted to predict the fatigue crack growth rates of the two specimens. The results indicate that the effect of the residual stress on the fatigue crack growth rate becomes obvious as the stress ratio decreases. Considering the residual stress, the fatigue life of the welded plate exhibits a dramatic decrease for the middle tension specimen, but a remarkable increase for the eccentrically loaded single-edge crack tension specimen. The fatigue life of the middle tension specimen is almost insensitive to the rotational speed, but that of the eccentrically loaded single-edge crack tension specimen increases with the increase in the rotational speed." @default.
- W1963863968 created "2016-06-24" @default.
- W1963863968 creator A5045825493 @default.
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- W1963863968 date "2014-07-29" @default.
- W1963863968 modified "2023-09-27" @default.
- W1963863968 title "Effect of residual stress of friction stir welding on the fatigue life of AA 2024-T351 joint" @default.
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- W1963863968 doi "https://doi.org/10.1177/0954405414543489" @default.
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