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Probabilistic Life and Damage Assessment of Components under Fatigue Loading

机译:疲劳载荷造成的概率寿命与损伤评价

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This study presents a probabilistic life (failure) and damage assessment approach for components under general fatigue loadings, including constant amplitude loading, step-stress loading, and variable amplitude loading. The approach consists of two parts: (1) an empirical probabilistic distribution obtained by fitting the fatigue failure data at various stress range levels, and (2) an inverse technique, which transforms the probabilistic life distribution to the probabilistic damage distribution at any applied cycle. With this approach, closed-form solutions of damage as function of the applied cycle can be obtained for constant amplitude loading. Under step-stress and variable amplitude loadings, the damage distribution at any cycle can be calculated based on the accumulative damage model in a cycle-by-cycle manner. For Gaussian-type random loading, a cycle-by-cycle equivalent, but a much simpler closed-form solution can be derived. Several case studies are provided to demonstrate the effectiveness of the approach.
机译:本研究介绍了一般疲劳负荷下组件的概率寿命(失败)和损伤评估方法,包括恒定幅度负载,静力应力载荷和可变幅度负载。该方法由两部分组成:(1)通过在各种应力​​范围水平下拟合疲劳失效数据而获得的经验概率分布,(2)将概率损伤分布转变为任何应用周期的概率损伤分布。利用这种方法,可以获得作为施加循环的函数的闭合损坏解决方案以进行恒定幅度载荷。在阶梯应力和可变幅度负载下,可以基于逐个周期的方式基于累积损伤模型来计算任何循环的损伤分布。对于高斯型随机加载,可以推导出逐个周期的等效项,但可以推导出更简单的闭合解决方案。提供了几种案例研究以证明该方法的有效性。

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