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Multiaxial high-cycle fatigue life prediction under random spectrum loadings

机译:随机频谱载荷下的多轴高周疲劳寿命预测

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摘要

A multiaxial fatigue life prediction model under general multiaxial random loadings is proposed in this paper. First, a brief review for existing multiaxial fatigue models is given with a special focus is on the Liu- Mahadevan critical plane concept, which can be applied to both brittle and ductile materials. Next, the new model development based on the Liu-Mahadevan critical plane concept for random loading is presented. The key concept is to use two-steps to identify the critical plane: identify the maximum damage plane due to normal stress and calculate the critical plane orientation with respect to the maximum damage plane due to normal stress. Multiaxial rain-flow cycle counting method with mean stress correction is used to estimate the damage on the critical plane. Equivalent stress transformation is proposed to convert the multiaxial random load spectrum to an equivalent constant amplitude spectrum. The equivalent stress is then used for fatigue life predictions. The proposed model is validated with both literature and in-house testing data generated using an Al 7075-T6 alloy under various random uniaxial and multiaxial spectrums. Comparison between experimental and predicted fatigue life lives shows good agreements; thus, demonstrating efficacy of the proposed model. Finally, concluding remarks and future work based on the results obtained are discussed.
机译:提出了一般多轴随机载荷下的多轴疲劳寿命预测模型。首先,简要回顾了现有的多轴疲劳模型,并着重研究了Liu- Mahadevan临界平面概念,该概念可以应用于脆性和延性材料。接下来,提出了基于Liu-Mahadevan临界平面概念的随机加载新模型开发。关键概念是使用两个步骤来识别临界平面:识别由于法向应力引起的最大破坏平面,并计算相对于因法向应力引起的最大破坏平面的临界平面取向。采用平均应力修正的多轴雨流循环计数方法来估算临界面上的破坏。提出了等效应力变换,将多轴随机载荷谱转换为等效的恒定振幅谱。然后将等效应力用于疲劳寿命预测。在各种随机单轴和多轴光谱下,使用Al 7075-T6合金生成的文献和内部测试数据均对所提出的模型进行了验证。实验疲劳寿命与预期疲劳寿命之间的比较显示出良好的一致性。因此,证明了所提出模型的有效性。最后,讨论了结语,并根据获得的结果进行了今后的工作。

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