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A PROCEDURE FOR FAST EVALUATION OF HIGH-CYCLE FATIGUE UNDER MULTIAXIAL RANDOM LOADING

机译:多轴随机载荷下高周疲劳的快速评估方法

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摘要

This paper presents a fast evaluation procedure for high-cycle fatigue (HCF) under multiaxial random loading. The recent multiaxial cycle counting method of Wang and Brown is used to identify the loading reversals. For each identified reversal, the effective shear stress amplitude is directly calculated from the component stress ranges by an equation derived from the MCE approach, which is a newly developed method to account for non-proportional loading effect. This shear stress amplitude and the maximum hydrostatic stress during the time period of an identified reversal are used to evaluate the fatigue damage for that reversal by Crossland's criterion. The fatigue damage of the loading block is then calculated by summing the damages of all the identified reversals by Miner's rule. Comparisons with other multiaxial HCF approaches show that the procedure is a computationally efficient and conservative engineering approach.
机译:本文提出了一种多轴随机载荷下高周疲劳(HCF)的快速评估程序。 Wang和Brown最近使用的多轴循环计数方法被用来识别载荷逆转。对于每个确定的反向,有效的切应力幅度是通过MCE方法(该方法是一种新开发的解决非比例载荷效应的方法)得出的方程式,从分应力范围直接计算出来的。在确定的反转期间,该剪切应力振幅和最大静水应力用于通过Crossland准则评估该反转的疲劳损伤。然后,通过根据Miner规则将所有已识别的逆转的总和求和,从而计算出加载块的疲劳破坏。与其他多轴HCF方法的比较表明,该程序是一种计算有效且保守的工程方法。

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