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Application of the modified Bai-Wierzbicki model for the prediction of ductile fracture in pipelines

机译:改进的Bai-Wierzbicki模型在管道延性骨折预测中的应用

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The complex mechanical and corrosive loads of modern pipeline systems transporting oil, natural gas and CO2 impose steadily increasing requirements on material properties. The majority of current design standards still limit the application of modern high toughness linepipe steels due to the simple specification of material requirements in terms of energy levels from Charpy impact or Battelle Drop-Weight-Tear (BDWT) tests. In consequence, research activities have been conducted recently aiming at developing modified or novel experimental methods for the characterization of the ductile fracture behavior. To quantify the effects of various parameters on fracture behavior and derive suitable correlations, it is necessary to accompany these activities by numerical simulations with appropriate ductile damage models. In this paper, the MBW model is applied to study the structural behavior of pipelines in ductile fracture regime. Due to its precise incorporation of the underlying load conditions, the damage model is successfully used to simulate the slant fracture behavior in Battelle Drop weight tear test specimens and pipe sections. In comparison to ductile damage models applied in former studies, namely the Gurson-Tvergaard-Needleman and Cohesive Zone model, the presented numerical methodology allows for a more detailed investigation of loading, material and geometry effects on fracture and crack arrest behavior of pipelines.
机译:现代管道系统的复杂机械和腐蚀载荷输送油,天然气和二氧化碳施加稳定提高材料特性要求。目前的大多数设计标准仍然限制了现代高韧性线索钢的应用,由于夏比冲击或战斗滴重撕裂(BDWT)测试的能量水平简单的材料要求规范。因此,最近进行了研究活动,目的是开发用于表征延性骨折行为的改性或新的实验方法。为了量化各种参数对骨折行为的影响并导出合适的相关性,有必要通过具有适当的延性损伤模型的数值模拟来伴随这些活动。本文采用MBW模型研究了延性骨折状态下管道的结构行为。由于其精确地掺入了潜在的负载条件,损坏模型成功地用于模拟Battelle Drop Texile Test试样和管道部分中的倾斜断裂行为。与在以前的研究中应用的韧性损伤模型相比,即Gurson-Tvergaard-ConseLeman和凝聚区模型,呈现的数值方法允许更详细地调查对管道的骨折和裂缝捕集行为的负载,材料和几何效应。

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