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New methodology of fatigue life evaluation for multiaxially loaded notched components based on two uniaxial strain-controlled tests

机译:基于两个单轴应变控制试验的多轴加载缺口构件疲劳寿命评估的新方法

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摘要

The present paper focuses on the application of the total strain energy density approach to assess fatigue life in notched samples subjected to multiaxial loading. This approach requires, as a starting point, a fatigue master curve defined in terms of total strain energy density versus number of cycles to failure, which is usually determined from a set of uniaxial fatigue tests using smooth standard specimens. In order to reduce the time and cost associated with the generation of the fatigue master curve, a straightforward methodology based on the outcomes of only two uniaxial strain-controlled tests is proposed. The methodology is applied to round bars with U-shaped notches subjected to proportional bending-torsion loading histories. A very good correlation between the experimental and the predicted life of the notched specimens is observed. In addition, the theoretical predictions are nearly independent of the pairs of uniaxial strain-controlled tests selected to obtain the fatigue master curve, which indicates a good robustness of the suggested methodology.
机译:本文着重于总应变能密度方法在评估多轴载荷下缺口试样的疲劳寿命中的应用。这种方法需要以总应变能密度与失效循环数相关的疲劳主曲线作为起点,该曲线通常由使用光滑标准试样的一组单轴疲劳试验确定。为了减少与生成疲劳主曲线相关的时间和成本,提出了一种仅基于两个单轴应变控制测试结果的简单方法。该方法适用于承受成比例的弯曲扭转载荷历史的U形缺口的圆钢。观察到缺口试样的实验寿命与预测寿命之间有很好的相关性。此外,理论预测几乎独立于为获得疲劳主曲线而选择的成对的单轴应变控制测试,这表明所建议方法的良好鲁棒性。

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