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Simulation of ductile crack propagation and determination of CTOAs in pipeline steels using cohesive zone modelling

机译:粘性区建模模拟管道裂纹扩展和CTOAs的确定

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This paper presents recent results of numerical studies on stable crack extension of high toughness steels typical of those in modern gas pipelines using cohesive zone modelling (CZM). The main focus of the work is on the determination of crack-tip opening angles (CTOAs) of these steels from CZM. Two sets of materials are modelled. The first material set models a typical structural steel, with variable toughness described by four traction-separation (TS) laws. The second set models an X70 pipe steel, with three different TS laws. For each TS law, there are three defining parameters: the maximum cohesive strength, the final separation and the work of separation. The specimens analysed include a crack in an infinite plate (small-scale yielding, SSY) and a standard drop-weight tear test (DWTT). Fracture propagation characteristics and values of CTOA are obtained from these two types of specimens. It is shown that cohesive zone models can be successfully used to simulate ductile crack propagation and to numerically measure CTOAs. The ductile crack propagation characteristics and CTOAs obtained from SSY and DWTT specimens are compared for each set of steels. In addition, the CTOA results from numerical CZM of DWTT specimens of X70 steel are compared with those from laboratory tests.
机译:本文使用粘聚区模型(CZM),对现代燃气管道中典型的高韧性钢的稳定裂纹扩展进行了数值研究,并提供了最新的数值研究结果。这项工作的主要重点是根据CZM确定这些钢的裂纹尖端开口角(CTOA)。对两组材料进行了建模。第一组材料模拟了一种典型的结构钢,其韧性由四个牵引分离(TS)定律描述。第二组模型是X70钢管,具有三个不同的TS律。对于每个TS法则,都有三个定义参数:最大内聚强度,最终分离和分离功。分析的样品包括无限板中的裂纹(小尺寸屈服,SSY)和标准的落锤撕裂试验(DWTT)。从这两种类型的样品中获得了断裂扩展特征和CTOA值。结果表明,内聚区模型可以成功地用于模拟延性裂纹扩展和数值测量CTOA。比较了每套钢从SSY和DWTT试样获得的延性裂纹扩展特性和CTOA。此外,将X70钢DWTT试样的CZM数值CTA结果与实验室测试结果进行了比较。

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