首页> 外文会议>ASME Pressure Vessels Piping Conference >DEVELOPMENT OF GTN MODEL PARAMETERS FOR SIMULATING DUCTILE FRACTURE BEHAVIOR OF X 70 CARBON STEEL SENT SPECIMENS
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DEVELOPMENT OF GTN MODEL PARAMETERS FOR SIMULATING DUCTILE FRACTURE BEHAVIOR OF X 70 CARBON STEEL SENT SPECIMENS

机译:用于模拟X 70碳钢试样的韧性断裂行为的GTN模型参数的开发

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Single-Edge-Notched-Bending(SENB) specimen is mainly used for fracture characteristics test of pipe material. However, there is also a disadvantage in that it does not sufficiently simulate the fracture characteristics of thin pipes due to the difference in boundary effect between the SENB specimen and the actual pipe. The Single-Edge-Notched-Tensile(SENT) specimen can be used as complementary test method due to its less boundary effect compared to the SENB specimen. In this study, the SENT specimen which are fabricated with API X 70 carbon steel was simulated ductile fracture behavior by using finite-element-analysis(FEA). To simulate ductile fracture behavior, Gurson-Tvergaard-Needleman(GTN) model was applied. GTN model is a kind of damage model that describes the behavior of ductile fracture through three steps of void changes : nucleation, growth, and coalescence. And GTN model is composed of three constitutive equations and nine parameters. In order to develop the GTN ductile fracture model for API X 70 carbon steel, five kinds of tensile specimen tests were simulated by FEA. In addition, we analyzed the influence of parameters of GTN model through analysis and developed optimal material parameters for API X 70 carbon steel. Finally, the ductile fracture behavior of the SENT specimen was simulated and the FEA results of SENT specimen was compared with actual SENT specimen test.
机译:单边缺口弯曲(SENB)试样主要用于管道材料的断裂特性测试。但是,还有一个缺点是由于SENB试样和实际管材之间边界效应的差异,它不能充分模拟细管材的断裂特性。单边缺口拉伸(SENT)样品可以用作补充测试方法,因为与SENB样品相比,其边界效应较小。在这项研究中,使用有限元分析(FEA)模拟了用API X 70碳钢制成的SENT标本的延性断裂行为。为了模拟延性断裂行为,应用了Gurson-Tvergaard-Needleman(GTN)模型。 GTN模型是一种损伤模型,它通过三个阶段的空洞变化来描述韧性断裂的行为:成核,生长和聚结。 GTN模型由三个本构方程和九个参数组成。为了建立API X 70碳钢的GTN延性断裂模型,通过有限元分析对5种拉伸试样进行了模拟。此外,我们通过分析分析了GTN模型参数的影响,并开发了API X 70碳钢的最佳材料参数。最后,模拟了SENT标本的延性断裂行为,并将SENT标本的FEA结果与实际SENT标本测试进行了比较。

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