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Effects of alloying elements and microstructure on the susceptibility of the welded HSLA steel to hydrogen-induced cracking and sulfide stress cracking

机译:合金元素和显微组织对焊接的HSLA钢对氢致裂纹和硫化物应力裂纹敏感性的影响

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摘要

Hydrogen-induced cracking (HIC) and sulfide stress cracking (SSC) susceptibility of the submerged arc welded API 5L-X70 pipeline steel with different amounts of titanium at two levels of manganese (1.4% and 2%) were studied. The centerline segregation region (CSR) observed in the X70 pipe steel played an important role in the HIC susceptibility. Increased acicular ferrite content in the microstructure improved HIC resistance and SSC resistance, while bainite and martensite/austenite constituents deteriorated the workability of the welded specimens in sour environments. The 2% Mn-series welds showed higher SSC susceptibility than the 1.4% Mn-series welds due to the higher hardness values of the welds. The precipitated titanium carbonitrides in the welds can act as beneficial hydrogen traps and delay cracking in hydrogen sulfide environments. By further addition of titanium, the appearance of bainite and martensite/austenite in the microstructure outweigh any beneficial effect of titanium carbonitrides. The weld metals contained high percentage of acicular ferrite and good distribution of titanium carbonitrides yielded the best performance in sour environments. In two series of the welds, the best sour service properties were obtained at two compositions, 1.40% Mn-0.08% Ti and 1.92% Mn-0.02% Ti.
机译:研究了不同含量的钛和两种锰含量(1.4%和2%)的埋弧焊API 5L-X70管线钢的氢致开裂(HIC)和硫化物应力开裂(SSC)敏感性。 X70管钢中观察到的中心线偏析区域(CSR)在HIC敏感性中起重要作用。显微组织中针状铁素体含量的增加改善了耐HIC和SSC的性能,而贝氏体和马氏体/奥氏体组成降低了在酸性环境中焊接试样的可加工性。 2%Mn系列焊缝比1.4%Mn系列焊缝具有更高的SSC敏感性,这是因为焊缝的硬度更高。焊缝中沉淀的碳氮化钛可作为有益的氢陷阱,并在硫化氢环境中延迟开裂。通过进一步添加钛,在显微组织中贝氏体和马氏体/奥氏体的出现超过了碳氮化钛的任何有益作用。焊缝金属中的针状铁素体含量高,碳氮化钛的良好分布在酸性环境中表现出最佳性能。在两个系列的焊缝中,在两种成分(1.40%Mn-0.08%Ti和1.92%Mn-0.02%Ti)下获得了最佳的耐酸蚀性能。

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  • 来源
    《Materials Science and Engineering》 |2009年第2期|167-173|共7页
  • 作者单位

    Department of Material Science and Engineering, Sharif University of Technology, Azadi Avenue, P.O. Box 11155-9466, Tehran, Iran;

    Department of Material Science and Engineering, Sharif University of Technology, Azadi Avenue, P.O. Box 11155-9466, Tehran, Iran;

    Department of Material Science and Engineering, Sharif University of Technology, Azadi Avenue, P.O. Box 11155-9466, Tehran, Iran;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microstructure; cracking; hydrogen sulfide; titanium; manganese;

    机译:微观结构破裂硫化氢钛;锰;

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