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- W2977462023 abstract "Abstract Fatigue damage and consequent failure account for the majority of the failure in metallic bolted joints of aerospace and mechanical engineering applications. In this paper, we present a cumulative fatigue damage evaluation approach for metallic bolted joints based on a combined continuum damage mechanics (CDM) theory and the critical plane approach. The analysis approach is applicable to both proportional and non-proportional multiaxial loading conditions. A cycle jumping based algorithm with a fixed damage evolution rate is adopted for efficient numerical approximation. To further increase the computational efficiency, a simplified modeling strategy is developed to avoid the expensive calculation of the full loading-unloading cyclic stress history. The proposed approach is established based on the assumption that a linear relation can be established between the minimum and maximum stress tensors in high-cycle fatigue analysis and is thus only dependent on the maximum stress states. A set of examples including a notched specimen and a metallic bolted joint with pre-tension are simulated to demonstrate the simplified approach." @default.
- W2977462023 created "2019-10-10" @default.
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- W2977462023 date "2020-02-01" @default.
- W2977462023 modified "2023-09-30" @default.
- W2977462023 title "A simplified continuum damage mechanics based modeling strategy for cumulative fatigue damage assessment of metallic bolted joints" @default.
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- W2977462023 doi "https://doi.org/10.1016/j.ijfatigue.2019.105302" @default.
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