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Numerical investigation of speed dependent dynamic fracture toughness of line pipe steels

机译:管线钢的速度相关动态断裂韧性数值研究

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Recent Drop Weight Tear Test (DWTT) showed that dynamic fracture toughness of line pipe steels depends on fracture speed. Based on a properly designed separation-traction law, standard and modified DWTT of API X80 line pipe steel are simulated by Cohesive Zone Model (CZM) based FEA (finite element analysis). The loading-displacement curve, fracture speed, and crack tip opening angle (CTOA) in FEA simulations are compared with experi mental results. The agreement between the present FEA and experimental results shows that the present FEA can well describe high-speed fracture of the standard and modified DWTT of API X80 line pipe steel. The relation between CZM fracture energy, steady-state CTOA and steady-state fracture speed are investigated through two groups of FEA simula tions designed for standard and modified DWTT. Our FEA results show that both CZM fracture energy and steady-state CTOA decrease with steady-state fracture speed, and two empirical relations are suggested to describe the dependence of the two toughness measures on steady-state fracture speed.
机译:最近的落锤撕裂试验(DWTT)表明,管线钢的动态断裂韧性取决于断裂速度。基于适当设计的分离-牵引定律,通过基于粘性区域模型(CZM)的FEA(有限元分析)对API X80管线钢的标准和改进的DWTT进行了模拟。将FEA模拟中的载荷-位移曲线,断裂速度和裂纹尖端张开角(CTOA)与实验结果进行了比较。目前的有限元分析和实验结果之间的一致性表明,目前的有限元分析可以很好地描述API X80管线钢标准和改进DWTT的高速断裂。通过为标准DWTT和改进型DWTT设计的两组FEA仿真,研究了CZM断裂能,稳态CTOA和稳态断裂速度之间的关系。我们的有限元分析结果表明,CZM断裂能和稳态CTOA均随稳态断裂速度而降低,并建议了两个经验关系来描述这两种韧性措施对稳态断裂速度的依赖性。

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