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SIMULATION OF DUCTILE FRACTURE IN PIPELINE STEELS UNDER VARYING CONSTRAINT CONDITIONS USING COHESIVE ZONE MODELING

机译:约束区域变化约束条件下管线钢的韧性断裂模拟

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Fracture propagation toughness is important to pipeline steels. In this study, the effect of non-singular T-stress (a measure of constraint) on crack growth resistance curves (R-curves) and crack tip opening angle (CTOA) was investigated using modified boundary layer (MBL) models of pipeline steels. Two sets of steel types: 1) TH (a typical high strength steel) and 2) C4 (X100 steel) were used in this work. Surface-based cohesive zone models with four sets of bilinear traction-separation (TS) laws were used for TH steel. The models of C4 steel were computed using element-based cohesive zone modeling with one bilinear TS law. All finite element simulations were conducted using the finite element (FE) program ABAQUS. It was assumed in these simulations that there was no effect of T-stress on the TS laws per se. With this assumption, it was found that the T-stress does not have a significant effect on the CTOA for the two materials studied.
机译:断裂扩展韧性对管线钢很重要。在这项研究中,使用管道钢的改进边界层(MBL)模型研究了非奇异的T应力(一种约束措施)对裂纹扩展阻力曲线(R曲线)和裂纹尖端张开角(CTOA)的影响。 。两组钢类型:1)TH(典型的高强度钢)和2)C4(X100钢)被用于这项工作。 TH钢使用具有四组双线性牵引-分离(TS)律的基于表面的粘聚区模型。使用具有双线性TS律的基于元素的粘结带建模来计算C4钢的模型。所有的有限元模拟都是使用有限元(FE)程序ABAQUS进行的。在这些模拟中假设T应力本身对TS律没有影响。在此假设下,发现两种研究材料的T应力对CTOA的影响均不显着。

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