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Effective Fatigue Stress and Criterion for High-Cycle Multi-axial Fatigue

机译:高周期多轴疲劳的有效疲劳应力和准则

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摘要

Multi-axial fatigue criterion corresponding to the limiting condition of complicated multi-axial stress state is very important in application. Stresses and deformations are usually elastic if cyclic loadings are near to the limiting condition. A definition of effective fatigue stress has been proposed. Adopting the effective fatigue stress, a multi-axial fatigue criterion has been proposed by considering the equivalence of multi-axial stresses to a uni-axial problem. To clarify the fatigue criterion for a uni-axial problem with arbitrary mean stress, a quantitative relationship between fatigue limit and mean stress has also been proposed and examined. To verify the multi-axial fatigue criterion, examinations have been carried out for the cases of pure shear, shear and axial, and two-axial fatigue by experimental results. It is found that the criterion agrees well with experimental results, even for the cases with various multi-axial mean stresses and phase differences. It is also found that the shear fatigue limit is not an independent material property in common metals.
机译:与复杂的多轴应力状态极限条件相对应的多轴疲劳准则在应用中非常重要。如果循环载荷接近极限条件,则应力和变形通常是弹性的。已经提出了有效疲劳应力的定义。通过采用有效疲劳应力,通过考虑多轴应力与单轴问题的等效性,提出了多轴疲劳准则。为了阐明具有任意平均应力的单轴问题的疲劳准则,还提出并研究了疲劳极限与平均应力之间的定量关系。为了验证多轴疲劳准则,已经通过实验结果对纯剪切,剪切和轴向以及两轴疲劳情况进行了检查。发现该标准与实验结果非常吻合,即使对于具有多种多轴平均应力和相位差的情况也是如此。还发现在普通金属中,剪切疲劳极限不是独立的材料特性。

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