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Simulation of Ductile Crack Propagation in Pipeline Steels Using Cohesive Zone Modeling.

机译:使用内聚区模型模拟管道钢中的延性裂纹扩展。

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摘要

Finite element simulations of ductile crack propagation are carried out using cohesive zone modeling. Two sets of materials are modeled. The first material set was defined by Tvergaard and Hutchinson (1992), and has four traction-separation (TS) laws of varying strength and toughness. The second set is modeled after X70 pipeline steel, and is referred to as C2 steel. Three TS laws are used to model this C2 material. The specimens analyzed include small-scale yielding (SSY) and drop-weight tear test (DWTT). The fracture propagation characteristics and CTOA values are obtained. It is shown that cohesive zone models can be successfully used to simulate ductile crack propagation and to numerically measure CTOAs.;From SSY simulations, steady-state CTOAs for the TH materials were measured to range from 2° - 6°. The CTOAs for the C2 materials were higher than those of the TH materials due to higher fracture resistance, but no steady-state values were obtained from the SSY simulations. From simulations of the DWTT specimens, steady-state CTOA values for the TH materials ranged from 2° - 4.5°, and therefore had good agreement with the SSY results. Estimated steady-state CTOA values for the C2 materials ranged from 14° - 26°. The measured CTOAs agree reasonably well between the SSY and DWTT simulations for both the TH and C2 material sets, indicating that these values are transferable among specimens. Direct comparisons of the CTOAs obtained from DWTT simulations to the experimental observations (12.4° - 18.5°) have reasonable agreement as well.
机译:韧性裂纹扩展的有限元模拟是使用内聚区建模进行的。对两组材料进行了建模。第一组材料是由Tvergaard和Hutchinson(1992)定义的,并具有四个具有不同强度和韧性的牵引分离(TS)定律。第二组以X70管线钢为模型,称为C2钢。三个TS法则用于对此C2材料进行建模。分析的标本包括小规模屈服(SSY)和落锤撕裂试验(DWTT)。获得了裂缝扩展特性和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。通过SSY模拟,测得TH材料的稳态CTOA范围为2°-6°。由于较高的抗断裂性,C2材料的CTOA高于TH材料,但无法通过SSY模拟获得稳态值。根据DWTT样品的模拟,TH材料的稳态CTOA值范围为2°-4.5°,因此与SSY结果具有很好的一致性。 C2材料的稳态CTOA估计值范围为14°-26°。对于TH和C2材料集,在SSY和DWTT模拟中测得的CTOA相当吻合,表明这些值可在样本之间转移。从DWTT模拟获得的CTOA与实验观察值(12.4°-18.5°)的直接比较也具有合理的一致性。

著录项

  • 作者

    Dunbar, Andrew John.;

  • 作者单位

    Carleton University (Canada).;

  • 授予单位 Carleton University (Canada).;
  • 学科 Mechanical engineering.;Petroleum engineering.;Mechanics.
  • 学位 M.A.Sc.
  • 年度 2011
  • 页码 112 p.
  • 总页数 112
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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