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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Two time domain models for fatigue life prediction under multiaxial random vibrations
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Two time domain models for fatigue life prediction under multiaxial random vibrations

机译:多轴随机振动下疲劳寿命预测的两个时域模型

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摘要

Two time domain models for fatigue life prediction under multiaxial random vibrations are developed on the basis of the critical plane approach. Firstly, the stress power spectral density matrix of each node at the notch root of the test specimen is obtained by the random vibration analysis with finite element method, and the stress time-histories are generated from the stress power spectral density matrix by the time domain randomization approach. Then, the fatigue life of each node is predicted based on the damage on the critical plane, where the cumulative damage value is the greatest. The minimum fatigue life of all nodes at the notch root is considered as the fatigue life of the test specimen. Finally, the proposed models are validated by the multiaxial random vibration fatigue test with the 6061-T4 aluminum alloy. The results show that the predicted fatigue lives and predicted crack orientation angles are in good agreement with the experimental fatigue lives and experimentally observed crack orientation angles, respectively.
机译:在临界平面方法的基础上开发了多轴随机振动下的疲劳寿命预测的两个时域模型。首先,通过用有限元方法的随机振动分析获得试样的凹口根部处的每个节点的应力功率谱密度矩阵,并且通过时域从应力功率谱密度矩阵产生应力时间历史随机化方法。然后,基于临界平面上的损坏预测每个节点的疲劳寿命,其中累积损伤值是最大的。陷波根部的所有节点的最小疲劳寿命被认为是试样的疲劳寿命。最后,通过使用6061-T4铝合金的多轴随机振动疲劳试验验证了所提出的模型。结果表明,预测的疲劳寿命和预测的裂缝取向角度与实验疲劳寿命和实验观察到的裂缝取向角度吻合良好。

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