Application of the GTN model to ductile crack growth simulation in through-wall cracked pipes
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Application of the GTN model to ductile crack growth simulation in through-wall cracked pipes

机译:GTN模型在通壁裂纹管中的延展岩裂纹生长模拟中的应用

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AbstractThis paper presents ductile fracture simulation using the GTN (Gurson-Tvergaard-Needleman) model of through-wall cracked STPT410 carbon steel pipe test under pure bending. Three issues related to practical application are addressed; (i) how to determine the parameters in the GTN model from fracture toughness data, (ii) how to incorporate the element-size effect to the GTN model and (iii) the effect of the crack-tip mesh design on determination of the GTN model parameters. It is found that determined values of the parameters depend on the crack-tip mesh design and the finite element size used in simulation. The split of the crack tip element into two makes parameter determination easier and gives better simulation results, but is difficult to apply to three-dimensional surface crack problems.Highlights?Ductile fracture simulation using the GTN model is performed to simulate crack growth in through-wall cracked pipes.?Simulation results are compared with pipe test data.?The parameters in the GTN model are determined from fracture toughness data.?Determined values of the parameters depend on the crack-tip mesh design and the finite element size used in simulation.]]>
机译:<![CDATA [ 抽象 本文使用GTN(Gurson-Tvergaard-Greenleman)通过墙壁破裂的STPT410展示了延展性裂缝模拟纯弯曲下的碳钢管试验。解决了与实际申请相关的三个问题; (i)如何确定来自骨折韧性数据的GTN模型中的参数,(ii)如何将元素尺寸效应纳入GTN模型和(iii)裂纹尖端网格设计对GTN的测定的影响模型参数。发现确定的参数值取决于裂缝尖端网格设计和模拟中使用的有限元尺寸。裂缝尖端元件的分为两个使参数确定更容易并提供更好的仿真结果,但难以应用于三维表面裂纹问题。 亮点 执行使用GTN模型的延展性裂缝模拟,以模拟通壁裂纹管中的裂纹增长。 将仿真结果与管道测试数据进行比较。 GTN模型中的参数由断裂韧性数据确定。 所确定的参数值取决于裂纹尖端网格设计和有限元模拟中使用的大小。 ]]>

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