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FATIGUE BEHAVIOUR OF DENTED PIPES UNDER INTERNAL PRESSURE: A NUMERICAL-EXPERIMENTAL APPROACH

机译:内压下凹陷管道的疲劳行为:一种数值实验方法

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This work presents a numerical-experimental methodology to study the fatigue behavior of dented pipes under internal pressure. A full-scale experimental program on dented pipes containing gouges were achieved. Two types of defects were studied: metal loss (plain dent) and sharp notch. Both defects acting independently reduce the fatigue life performance but their combination is highly detrimental and must be avoided. We did not find a severity threshold (e.g. dent depth or crack depth) where these defects could coexist. In addition, based on numerical analyses we proposed a new expression for stress concentration factor (SCF) in line with transversal indentation. This information was successfully integrated into a simple fatigue model where the fatigue life predictions were practically inside the window of experimental results.
机译:这项工作提出了一种数值实验方法,以研究凹管在内部压力下的疲劳行为。在包含凿子的凹陷管上实现了全面的实验程序。研究了两种类型的缺陷:金属损失(纯凹痕)和尖锐的缺口。两种缺陷独立起作用会降低疲劳寿命性能,但是它们的结合是非常有害的,必须避免。我们没有找到可以共存这些缺陷的严重程度阈值(例如凹痕深度或裂缝深度)。此外,基于数值分析,我们提出了一种与横向压痕一致的应力集中系数(SCF)的新表达式。该信息已成功集成到简单的疲劳模型中,其中疲劳寿命的预测实际上在实验结果的范围之内。

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