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Pitting and Crevice Corrosion of Super Duplex Stainless Steels in Seawater - Effect of Tungsten

机译:超级双相不锈钢在海水中的点蚀和缝隙腐蚀-钨的影响

摘要

The need for low cost and lighter materials with higher mechanical and chemical properties has lead to more frequently usage of SDSS because of their increased mechanical and superior corrosion properties compared to other stainless steels. SDSS is also relatively less expensive compared to austenitic stainless steels (ASS) due to lower nickel content. This has lead to an increased hunger for knowledge about every aspect of different alloy elements effect on different parameters for the best compromise between price, chemical properties and mechanical properties.25 wt. % Cr SDSS is frequently used in the oil and gas industry both for seawater applications and for pipes and components exposed to hydrocarbon environments. The composition of SDSS varies depending on the UNS number, primarily in terms of chromium, molybdenum and tungsten contents. During the last years the effect of W on pitting and crevice corrosion resistance has been debated among corrosion experts. In particular, some authors claim that W has a strong synergistic effect with Mo when added above certain threshold value. Tungsten-containing SDSS have been claimed to offer corrosion resistance on a par with higher-grade steels such as type 6Mo (UNS S31254) and 654SMO (UNS S32654) super austenitic grades. This master´s thesis is a twofold thesis where the main objective in the first part was to investigate the effect of tungsten on crevice corrosion resistance by measuring the critical crevice temperature (CCT) and critical re-passivation temperature after initiation of crevice corrosion (CRTCREV) in short-term conditions (8 hours) by obtaining cyclic potentiodynamic polarization scans (CPDPS) on two SDSS in artificial seawater: a high tungsten chemistry 25 wt. % Cr SDSS and a conventional low-tungsten SDSS, to fully understand tungsten´s effect on localized crevice and pitting corrosion. The second part was obtained in long-term conditions (8 weeks) in natural seawater to simulate actual service conditions to verify the results in part one. The results of the CPDPD showed that tungsten has a beneficial effect on localized crevice corrosion increasing the CCT and CRTCREV by 10°C, which corresponded with the author´s earlier work and that showed that the critical pitting temperature (CPT) and critical re-passivation temperature after initiation of pitting corrosion (CRTP) increased with 10°C and 30°C. These results were confirmed by the experiments in long-term conditions, which showed increased initiation temperatures when the tungsten content was increased.
机译:对具有更高机械和化学性能的低成本,轻质材料的需求已导致SDSS的使用更加频繁,因为与其他不锈钢相比,它们具有更高的机械性能和优异的腐蚀性能。由于镍含量较低,SDSS与奥氏体不锈钢(ASS)相比也相对便宜。这导致对有关不同合金元素的各个方面的知识的渴望增加,从而对价格,化学性能和机械性能之间的最佳折衷做出了最佳折衷。25 wt。 %Cr SDSS在石油和天然气行业中经常用于海水应用以及暴露于碳氢化合物环境的管道和组件。 SDSS的组成取决于UNS编号,主要是铬,钼和钨的含量不同。在最近几年中,腐蚀专家对钨对点蚀和缝隙腐蚀的影响进行了辩论。特别是,一些作者声称,当添加到一定阈值以上时,W与Mo具有很强的协同作用。据称,含钨的SDSS可提供与6Mo(UNS S31254)和654SMO(UNS S32654)超级奥氏体等级等更高等级钢同等的耐腐蚀性。本硕士论文是一个双重论文,其第一部分的主要目的是通过测量缝隙腐蚀开始后的临界缝隙温度(CCT)和临界再钝化温度(CRTCREV),研究钨对缝隙耐腐蚀性的影响。 )在短期条件下(8小时),通过在人造海水中的两种SDSS上获得循环电势极化扫描(CPDPS):高钨化学成分25 wt。 %Cr SDSS和常规的低钨SDSS,以充分了解钨对局部缝隙和点蚀的影响。第二部分是在天然海水中的长期条件下(8周)获得的,以模拟实际使用条件以验证第一部分中的结果。 CPDPD的结果表明,钨对局部缝隙腐蚀具有有益的作用,可使CCT和CRTCREV升高10°C,这与作者先前的工作相对应,并且表明临界点蚀温度(CPT)和临界点蚀率均达到了极限。发生点蚀(CRTP)后的钝化温度分别升高10°C和30°C。这些结果在长期条件下的实验中得到了证实,该实验表明,当钨含量增加时,引发温度会升高。

著录项

  • 作者

    Bjørge Haugan Eirik;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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