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Ductile crack growth behaviors at different locations of a weld joint for an X80 pipeline steel: A numerical investigation using GTN models

机译:用于X80管道钢的焊接接头的不同位置的韧性裂纹生长行为:使用GTN模型进行数值调查

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The finite element method (FEM) based on the Gurson-Tvergaard-Needleman (GTN) model was used to investigate the ductile crack growth behaviors at different weld joint locations of X80 pipeline steel. As the result of the welding process, the X80 weld joints are inhomogeneous and can be divided into different zones (base metal, weld metal and heat affected zones), with different material properties and ductile crack growth resistance characteristics. By fitting the experimental results of uniaxial tension and single-edge notched bending (SENB) tests for specific zones, the GTN model parameters were calibrated in consideration of the inhomogeneity of the weld joint. The calibrated GTN models were then used to analyze the ductile crack growth behaviors in single-edge notched tension (SENT) tests at different locations of the weld joint. In addition, the effect of T-stress on the crack propagation at different locations was also studied using the small-scale yield model. It is demonstrated the calibrated GTN models are capable of predicting crack growth resistance curves at different weld joint locations, under different constraint conditions.
机译:基于Gurson-Tvergaard-Codememan(GTN)模型的有限元方法(FEM)用于研究X80管线钢的不同焊接接头位置处的延性裂纹生长行为。由于焊接过程的结果,X80焊接接头不均匀,可分为不同的区域(贱金属,焊接金属和热影响区域),具有不同的材料性质和延展岩裂纹耐生长特性。通过拟合单轴张力的实验结果和针对特定区域的单轴张力和单边缘切口弯曲(SENB)测试,考虑到焊接接头的不均匀性来校准GTN模型参数。然后使用校准的GTN模型来分析焊接接头的不同位置的单边缘切口张力(送)测试中的延性裂纹生长行为。此外,还使用小规模产量模型研究了T胁迫对不同位置的裂纹繁殖的影响。据证明校准的GTN模型能够在不同的约束条件下预测不同焊接联合位置处的裂纹生长电阻曲线。

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