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Investigation of different failure modes in oil and natural gas pipeline steels

机译:石油和天然气管道钢不同故障模式调查

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In this study, the effect of important failure modes in oil and natural gas pipeline steels has been studied by literature review and some previous investigations of authors. Two important failure modes including stress corrosion cracking and hydrogen assisted cracking were found in service pipeline steels. Hydrogen assisted cracking itself can be categorized to hydrogen induced cracking and sulphide stress cracking. The effect of different microstructural parameters on each failure mode was accurately investigated. For instance, it is found that the pH of surrounding solution has a key role in determining the nature of stress corrosion cracks. In other words, transgraular stress corrosion cracking occurs in near-neutral solution while the intergranular cracking becomes a dominant failure mode when the pH of solution reaches close to 9. Moreover, it is reported that low angle grain boundaries and coincidence site lattice boundaries may arrest short stress corrosion crack after its nucleation. Finally, some techniques for improving the resistance of pipeline steels against these failure modes were suggested.
机译:在这项研究中,通过文献综述和对原作者的一些先前调查研究了石油和天然气管道钢中的重要失效模式的影响。在服务管道钢中发现了两个重要的故障模式,包括压力腐蚀裂解和氢气辅助裂缝。氢辅助裂缝本身可以分类为氢诱导的裂化和硫化物应力裂化。精确研究了不同微结构参数对每个故障模式的影响。例如,发现周围解决方案的pH在确定应力腐蚀裂缝的性质方面具有关键作用。换句话说,在近中性溶液中发生转变应力腐蚀裂解,而当溶液的pH接近9时,晶间裂化变为显性衰竭模式。此外,据报道,低角度晶界和巧合点晶格边界可能会阻止成核后的短重应力腐蚀裂纹。最后,提出了一些用于改善管道钢对这些故障模式的电阻的技术。

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