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- W3082730996 abstract "High-temperature fatigueFatigue of Ni-based single crystal superalloysSuperalloy is studied at 1000 °C in a wide range of loading conditions (−1 ≤ R ≤ 0.8) and number of cycles (103 − 109). Under fully reversed conditions, a competition between crack initiations from the surface—assisted by oxidation—and from internal metallurgical defects—mostly large casting pores—is observed. Increasing the testing frequency shifts the competition to a higher number of cycles. Conversely, decreasing the casting pore size or coating the specimen promotes surface initiations. When a positive mean stress is added (R ≥ 0), a creepCreep deformation/damage mechanism mainly controls fatigueFatigue life, despite fracture surfaces presenting a variety of initiation types. Fatigue life can be predicted by a simple creepCreep law if the contribution of the alternating stress is considered. A linear damage summation method that considers pure fatigue and pure creepCreep damage is used to predict the fatigueFatigue lives, and Haigh diagrams for different alloys are presented." @default.
- W3082730996 created "2020-09-08" @default.
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- W3082730996 date "2020-01-01" @default.
- W3082730996 modified "2023-09-26" @default.
- W3082730996 title "Creep, Fatigue, and Oxidation Interactions During High and Very High Cycle Fatigue at Elevated Temperature of Nickel-Based Single Crystal Superalloys" @default.
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- W3082730996 doi "https://doi.org/10.1007/978-3-030-51834-9_18" @default.
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