Crystal plasticity modeling of cyclic deformation for a polycrystalline nickel-based superalloy at high temperature
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference33 articles.
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5. Deformation and creep modeling in polycrystalline Ti–6Al alloys
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1. Creep-fatigue life prediction of notched structure after an advanced surface strengthening treatment in a nickel-based superalloy at 650°C;International Journal of Plasticity;2024-02
2. Low cycle fatigue behaviour of engineering metallic materials: Review on cyclic deformation micro-mechanism;Mechanics of Materials;2024-01
3. Crystal plasticity FEM study of material and mechanical effects on damage accumulation mode of fatigue crack propagation;International Journal of Fatigue;2023-08
4. Investigation of creep-fatigue crack initiation by using an optimal dual-scale modelling approach;International Journal of Fatigue;2023-07
5. Creep-fatigue damage mechanisms and life prediction based on crystal plasticity combined with grain boundary cavity model in a nickel-based superalloy at 650°C;International Journal of Plasticity;2023-06
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