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Advances in Creep, Fatigue and Creep–Fatigue Interaction of High Temperature Structural Materials
Transactions of the Indian National Academy of Engineering, 2022A. Nagesha +3 more
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Creep-fatigue damage behavior of a titanium alloy at room temperature: Experiments and modeling
International Journal of Mechanical Sciences, 2023Yuhao Guo, Gang Liu
exaly
Mechanisms of Creep-Fatigue Interactions
1989In this part an attempt is made (i) to show how intergranular fracture can be used to rationalise a number of observations related to high temperature fatigue behavior of metals and alloys and (ii) to analyse various forms of microstructural intergranular damage.
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Machine learning assisted probabilistic creep-fatigue damage assessment
International Journal of Fatigue, 2022Run-Zi Wang, Shun-Peng Zhu
exaly
Creep-Fatigue-Effects in Composites
1983The fatigue behavior at elevated temperatures, mostly in vacuum, of several cobalt and nickel-base eutectic composites is described. Decreased fatigue life and increased crack propagation rates are noted as test frequency is reduced. A shift from surface to internal crack initiation occurs at low frequencies and high test temperatures.
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