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首页> 外文期刊>International Journal of Fracture >Determination of failure pressure for tubes with two non-aligned axial through-wall cracks
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Determination of failure pressure for tubes with two non-aligned axial through-wall cracks

机译:确定两个不对齐的轴向通孔裂纹的管的破坏压力

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摘要

The 40% of wall thickness criterion which has been used as a plugging rule is applicable only to a single cracked steam generator tubes. In the previous studies performed by authors, several failure prediction models were introduced to estimate the plastic collapse pressures of steam generator tubes containing two adjacent collinear or parallel axial through-wall cracks. The objective of this study is to examine the failure prediction models and propose optimum ones for two non-aligned axial through-wall cracks in steam generator tubes. In order to determine the optimum ones, a series of plastic collapse tests and finite element analyses were carried out for steam generator tubes with two machined non-aligned axial through-wall cracks. Thereby, either the plastic zone contact model or COD based model was selected as the optimum one according to axial distance between two cracks. Finally, the optimum failure prediction model was used to demonstrate the conservatism of flaw characterization rules for multiple cracks having equal lengths according to ASME code.
机译:用作堵塞规则的壁厚标准的40%仅适用于单个破裂的蒸汽发生器管。在作者进行的先前研究中,引入了几种故障预测模型来估计包含两个相邻的共线或平行轴向通孔裂纹的蒸汽发生器管的塑性破坏压力。这项研究的目的是检查故障预测模型,并针对蒸汽发生器管中两个未对准的轴向贯通壁裂纹提出最佳模型。为了确定最佳裂纹,对具有两个机加工的未对准轴向通孔裂纹的蒸汽发生器管子进行了一系列塑性塌陷测试和有限元分析。因此,根据两个裂缝之间的轴向距离,选择塑性区接触模型或基于COD的模型作为最佳模型。最后,根据ASME规范,使用最佳失效预测模型来证明具有相同长度的多个裂纹的缺陷表征规则的保守性。

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