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首页> 外文期刊>International Journal of Fatigue >Retroextrapolation of crack growth curves using phenomenological models based on cumulative distribution functions of the generalized extreme value family
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Retroextrapolation of crack growth curves using phenomenological models based on cumulative distribution functions of the generalized extreme value family

机译:基于广义极值家族的累积分布函数的现象学模型,使用现象学模型的裂纹生长曲线的retroExtapolation

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摘要

In this work, the evolution of crack lengths under fatigue load is interpreted as a sample function of a cumulative damage process which, once normalized, allows a phenomenological model to be satisfactory applied using cumulative distribution functions (cdfs) of the generalized extreme value family (GEV). The denoted "retro-extrapolation" procedure is used to determine the complete evolution of the a-N crack growth curve from the final fragment of the curve recorded during the test implying the consideration of additional crack growth phases, namely, prior to the pre-crack length and subsequent to the failure, respectively. The proposed methodology verifies excellent fitting of the a-N curves. It also ensures its conversion to fatigue crack growth rate curves (CGR) and, as a result, promotes the analysis of the transition from micro- to macrocracks, depending on the resulting parameters for the material tested, the specimen geometry and test type. Lastly, it allows a probabilistic analysis on the prediction of fatigue life originated from random initial sizes of cracks, smaller or larger than those induced in the experimental program to determine the a-N curve. In this way, a statistically reliable basis is provided for the application of the damage tolerance concept to the practical component design.
机译:在这项工作中,疲劳负荷下的裂缝长度的进化被解释为累积损伤过程的样本功能,这是一旦标准化,允许使用广义极值家族的累积分布函数(CDF)施加现象学模型( GEV)。表示的“复古外推”程序用于确定在测试期间记录的曲线的最终片段的裂纹生长曲线的完全演变,这意味着在预裂纹长度之前考虑额外的裂缝生长相,即在失败之后分别。所提出的方法验证了A-N曲线的优异拟合。它还确保其转化为疲劳裂纹扩展速率曲线(CGR),因此,根据所测试的材料的所得参数,试样几何和试验类型的所得参数促进从微型到MacRecrack的过渡的分析。最后,它允许对突发生命的预测源自突出的初始尺寸的预测,比实验程序中的裂缝较小或大于实验程序中的那些来确定A-N曲线的概率分析。以这种方式,提供了统计上可靠的基础,用于将损坏的容差概念应用于实际组件设计。

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