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ESTIM ATION OF PLASTIC COLLAPSE LOAD OF STEAM GENERATOR TUBE WITH TWO PARALLEL AXIAL THROUGH-WALL CRACKS

机译:带有两个平行轴向穿墙裂纹的蒸汽发生器管的塑性塌落载荷估算

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摘要

The 40% of wall criterion, which is generally used for the plugging of steam generator tubes, is applied only to a single crack. In the previous study, a total number of 9 failure models were introduced to estimate the local failure of the ligament between cracks and the optimum coalescence model of multiple collinear cracks was determined among these models. It is, however, known that parallel axial cracks are more frequently detected during an in-service inspection than collinear axial cracks. The objective of this study is to determine the plastic collapse model which can be applied to the steam generator tube containing two parallel axial through-wall cracks. Three previously proposed local failure models were selected as the candidates. Subsequently interaction effects between two adjacent cracks were evaluated to screen them. Plastic collapse tests for the plate with two parallel through-wall cracks and finite element analyses were performed for the determination of the optimum plastic collapse model. By comparing the test results with the prediction results obtained from the candidate models, a COD base model was selected as an optimum model.
机译:通常用于堵塞蒸汽发生器管的壁厚标准的40%仅适用于单个裂缝。在先前的研究中,总共引入了9个破坏模型来估计裂缝之间的韧带的局部破坏,并在这些模型中确定了多个共线裂缝的最佳合并模型。然而,众所周知,在使用中检查期间,与共线轴向裂纹相比,平行轴裂纹更常见。这项研究的目的是确定可用于包含两个平行轴向通孔裂纹的蒸汽发生器管的塑性塌陷模型。选择了三个先前提出的局部故障模型作为候选模型。随后评估了两个相邻裂纹之间的相互作用效应,以筛选它们。为了确定最佳的塑性塌陷模型,对具有两个平行的贯穿壁裂缝的板材进行了塑性塌陷测试和有限元分析。通过将测试结果与从候选模型获得的预测结果进行比较,选择了COD基础模型作为最佳模型。

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