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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Instability moment predictions for complex through-wall cracked pipes of low alloy steel
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Instability moment predictions for complex through-wall cracked pipes of low alloy steel

机译:低合金钢复合通壁裂纹管的不稳定力矩预测

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摘要

The complex through-wall cracks (TWC) that have been discovered in the dissimilar metal weld of nuclear power plants have different fracture behavior compared with the simple TWC that is typically assumed in a flaw evaluation. In this regards, a number of prior research has aimed at developing an appropriate J-estimation scheme and constructing of the J-R curve that can be utilized for complex crack analysis. In the present paper, instability moments of complex TWC pipes of low alloy steel were calculated through the crack driving force diagram approach, employing J-estimation formula for complex crack recently developed. As a fracture property, the test data of complex crack tension (CCT) specimen was used. Comparing with the prediction results of FE analysis using a damage model, it was observed that this procedure could provide an accurate prediction of the instability moment with the reasonable conservatism.
机译:与通常在缺陷评估中通常假设的简单TWC相比,在核发生物的不同金属焊接中发现的复合通壁裂缝(TWC)具有不同的裂缝行为。 在这方面,许多现有研究旨在开发适当的J估计方案和构建可用于复杂裂纹分析的J-R曲线。 在本文中,通过裂缝驱动力图方法计算了低合金钢的复杂TWC管道的不稳定矩,采用了最近开发的复杂裂缝的J估计公式。 作为骨折性质,使用复杂裂纹张力(CCT)样本的测试数据。 与使用损伤模型的FE分析的预测结果相比,观察到该程序可以提供对合理保守主义的不稳定力矩的准确预测。

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