首页> 外文期刊>International Journal of Fatigue >Predicting the multiaxial fatigue limit and the multiaxial high-cycle fatigue life based on the unified equivalent shear stress from axial strength characteristics with various waveforms
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Predicting the multiaxial fatigue limit and the multiaxial high-cycle fatigue life based on the unified equivalent shear stress from axial strength characteristics with various waveforms

机译:根据具有各种波形的轴向强度特性,基于统一的等效剪应力,预测多轴疲劳极限和多轴高周疲劳寿命

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摘要

A new method for predicting high-cycle fatigue life under constant multiaxial amplitude loading is proposed using a unified equivalent shear stress amplitude proposed by the author. This criterion is an extension of the multiaxial fatigue limit criterion proposed previously by the author. This criterion uses the axial loading S-N curve and the true fracture strength as commonly available material characteristic values. The fatigue test data from the literature such as the bending and torsion combined loadings, the biaxial loadings and the biaxial loadings with sinusoidal, triangular and trapezoidal waveforms, were used to verify the criterion. The fatigue lives estimation error and fatigue limit estimation error of the proposed criterion were better than that of the other criteria used for comparison.
机译:利用作者提出的统一等效剪应力振幅,提出了一种在恒定多轴振幅载荷下预测高周疲劳寿命的新方法。该标准是作者先前提出的多轴疲劳极限标准的扩展。该标准使用轴向载荷S-N曲线和真实断裂强度作为常用的材料特性值。来自文献的疲劳测试数据,例如弯曲和扭转组合载荷,双轴载荷以及具有正弦,三角和梯形波形的双轴载荷,被用来验证该标准。提出的准则的疲劳寿命估计误差和疲劳极限估计误差均优于其他比较准则。

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