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Effect of arisen dislocation density and texture components during cold rolling and annealing treatments on hydrogen induced cracking susceptibility in pipeline steel

机译:冷轧和退火处理过程中产生的位错密度和织构成分对氢引起的管线钢裂纹敏感性的影响

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摘要

In this study, we used thermo-mechanical control process (TMCP) technique to investigate the effect of arisen dislocation density and texture components on hydrogen induced cracking susceptibility in as-received API X60 pipeline steel. Dislocations and texture components appeared during cold rolling and annealing treatments. X-ray diffraction and electron backscatter diffraction measurements were used to study these phenomena. We observed that the cold rolling and annealing treatments produced higher dislocation density in deformed and recovered regions. The increase of dislocation density also caused the increased hydrogen trap density. Macro-texture studies by x-ray method indicates that initial weak texture of as-received X60 steel was changed from ζ-fiber to γ-fiber and θ-fiber in 90% cold rolled and annealed specimen. Therefore, the number of grains with (100)||ND orientation which had a harmful effect on hydrogen induced cracking susceptibility increased. The {100} dominant texture and high density of hydrogen traps mitigated against any possible benefits of the other microstructural parameters such as coincidence site lattice boundaries and grain size. As a result, we could not consider this process as a suitable method to increase hydrogen induced cracking resistance in pipeline steel.
机译:在这项研究中,我们使用热机械控制过程(TMCP)技术来研究所产生的位错密度和织构成分对原样的API X60管线钢中氢诱导的开裂敏感性的影响。在冷轧和退火处理过程中出现了位错和织构成分。 X射线衍射和电子背散射衍射测量用于研究这些现象。我们观察到,冷轧和退火处理在变形和恢复区产生更高的位错密度。位错密度的增加也导致氢陷阱密度的增加。通过X射线方法进行的宏观织构研究表明,在90%的冷轧和退火试样中,所接受的X60钢的初始弱织构从ζ纤维变为γ纤维和θ纤维。因此,对氢诱导的裂纹敏感性具有有害影响的(100)||| ND方向的晶粒的数量增加。 {100}的主要织构和高密度的氢陷阱可减轻其他微结构参数(如重合点晶格边界和晶粒尺寸)的任何可能的好处。结果,我们不能认为该工艺是增加管道钢中氢诱导的抗开裂性的合适方法。

著录项

  • 来源
    《Journal of Materials Research》 |2016年第21期|3390-3400|共11页
  • 作者单位

    Department of Mechanical Engineering, Faculty of Engineering, University of Bonab, Bonab, Iran;

    Department of Materials Science & Engineering, Faculty of Engineering, Shahid Chamran University of Ahvaz, Ahvaz, Iran;

    Department of Mechanical Engineering, University of Saskatchewan, S7N5A9 Saskatoon, Saskatchewan, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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