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COMPARISON OF FRACTURE MODELS TO QUANTIFY THE EFFECTS OF MATERIAL PLASTICITY ON THE DUCTILE FRACTURE PROPAGATION IN PIPELINES

机译:裂缝模型的比较量化材料可塑性对管道延性骨折繁殖的影响

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Various numerical approaches have been developed in the last years aimed to simulate the ductile fracture propagation in pipelines transporting CO_2 or natural gas. However, a reliable quantification of the influence of material plasticity on the fracture resistance is still missing. Therefore, more accurate description of the material plasticity on the ductile fracture propagation is required based on a suitable numerical methodology. In this study, different plasticity and fracture models are compared regarding the ductile fracture propagation in X100 pipeline steel with the objective to quantify the influence of plasticity parameters on the fracture resistance. The plastic behavior of the investigated material is considered by the quadratic yield surface in conjunction with a non-associated quadratic plastic flow potential. The strain hardening can be appropriately described by the mixed Swift-Voce law. The simulations of ductile fracture are conducted by an uncoupled, modified Mohr-Coulomb- (MMC) and the micromechanically based Gurson-Tvergaard-Needleman (GTN) models. In contract to the original GTN model, the MMC model is capable of describing ductile failure over wide range of stress states. Thus, ductile fracture resistance can be estimated for various load and fracture scenarios. Both models are used for the simulation of fracture propagation in DWTT and 3D pressurized pipe sections. The results from the present work can serve as a basis for establishing the correlation between plasticity parameters and ductile fracture propagation.
机译:在过去几年中已经开发了各种数值方法,旨在模拟输送CO_2或天然气的管道中的延性断裂繁殖。然而,仍然缺失对材料可塑性对骨折抗性影响的可靠量化。因此,基于合适的数值方法需要更准确地描述延性骨折传播上的材料可塑性。在该研究中,比较了X100管道钢中的延性骨折传播的不同可塑性和裂缝模型,目的是量化塑性参数对骨折性抗性的影响。通过二次屈服表面与非相关的二次塑性流动电位结合使用的调查材料的塑性行为。菌株硬化可以通过混合的SWIFT-VOCE法适当地描述。延展性骨折的模拟由未耦合的修饰的MoHR-Coulomb-(MMC)和微机械基于Gurson-Tvergaard-Constleman(GTN)模型进行。在合同到原始GTN模型中,MMC模型能够在广泛的应力状态下描述延性故障。因此,可以估计延展性裂缝阻力以用于各种负载和裂缝场景。两种型号用于模拟DWTT和3D加压管部分中的断裂传播。本作工作的结果可以作为建立可塑性参数与延性裂缝繁殖之间的相关性的基础。

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