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On the application of the stochastic approach in predicting fatigue reliability using Miner's damage rule

机译:随机方法在基于Miner损伤准则的疲劳可靠性预测中的应用

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The present paper investigates the application of the stochastic approach when the commonly adopted Miner's linear damage rule is implemented, both in its traditional and modified forms to include the presence of a random stress threshold (random fatigue limit), below which the rate of damage accumulation is reduced. Main steps are provided to obtain the simulated distribution of the accumulated damage under variable amplitude loading. When the stochastic approach is applied in the presence of a random fatigue limit, an additional correlation structure, which takes into account the fatigue limit value, must be introduced in the analysis. If the number of cycles to failure under constant amplitude loading is Weibull (Log-Normal) distributed, then the corresponding accumulated damage is Frechet (Log-Normal) distributed. The effects of the correlation structure on reliability prediction under variable amplitude loading are also investigated. To this aim, several experimental datasets are taken from the literature, covering various metallic materials and variable amplitude block sequences. The results show that the choice of the damage accumulation model is a key factor to value the improvement in the accuracy of reliability predictions introduced by the stochastic approach. Comparison of the predicted number of cycles to failure with experimental data shows that larger errors are non-conservative, regardless of the adopted correlation structure. When the analysis is limited to reliability levels above 80%, for these large non-conservative errors, it is the quantile approach to be closer to actual experimental data, thus limiting the overestimation of component's life. For the experimental datasets considered in the paper, adoption of a stochastic approach would improve the accuracy of Miner's predictions in 10% of cases.
机译:本文研究了随机方法在实施常用的Miner线性损伤规则时的应用,包括传统形式和改进形式,其中包括随机应力阈值(随机疲劳极限)的存在,低于该阈值,损伤累积率降低了。提供了主要步骤来获得在可变振幅载荷下累积损伤的模拟分布。在存在随机疲劳极限的情况下应用随机方法时,必须在分析中引入考虑疲劳极限值的其他相关结构。如果在恒定振幅载荷下失效的周期数是Weibull(对数正态)分布,则相应的累积损伤是Frechet(对数正态)分布。还研究了相关结构对可变振幅载荷下的可靠性预测的影响。为此,从文献中获取了一些实验数据集,涵盖了各种金属材料和可变幅度块序列。结果表明,损伤累积模型的选择是评估随机方法引入的可靠性预测准确性提高的关键因素。将预测的故障循环次数与实验数据进行比较表明,无论采用哪种相关结构,较大的误差都是非保守的。当将分析限制在80%以上的可靠性水平时,对于这些较大的非保守误差,分位数方法更接近于实际实验数据,从而限制了对组件寿命的高估。对于本文中考虑的实验数据集,采用随机方法将在10%的情况下提高Miner预测的准确性。

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