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Assessing the accuracy of fatigue life in surface-cracked straight pipes

机译:评估表面裂纹直管疲劳寿命的准确性

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The demonstration of leak before brake (LBB) based on fracture mechanics requires information on the initial size of a defect, initiation of crack growth from the inherent defect and subsequent crack growth rates. In the present paper the prediction methodologies have been tested for three different full scale pipes geometry experimentally tested data. The prediction accuracy of two SIF solutions available in the literature has also been judged. The effect of fatigue crack closure and corrections needed in the numerical prediction methodology using FEM have also been included. The results showed that the FEM could fairly predict the fatigue crack initiation and crack growth life of full-scale piping components having a constant depth crack profile.
机译:基于断裂力学的制动前泄漏(LBB)演示需要以下信息:缺陷的初始尺寸,由固有缺陷引发的裂纹扩展以及随后的裂纹增长率。在本文中,已经针对三种不同的全尺寸管道几何实验测试数据测试了预测方法。文献中还提供了两种SIF解决方案的预测精度。疲劳裂纹闭合的影响和使用有限元法的数值预测方法中所需的校正也已包括在内。结果表明,有限元法可以较好地预测具有恒定深度裂纹轮廓的满刻度管道部件的疲劳裂纹萌生和裂纹扩展寿命。

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