氢脆
材料科学
应力腐蚀开裂
氢
开裂
冶金
阴极保护
腐蚀
溶解
扩散
脆化
阳极
化学工程
复合材料
化学
热力学
物理
工程类
物理化学
有机化学
电极
作者
Mariana Anastácia de Oliveira,Mariana C. Folena,Samara Cruz da Silva,José Antônio da Cunha Ponciano Gomes
标识
DOI:10.1002/srin.202200732
摘要
The risk of hydrogen embrittlement (HE) and stress corrosion cracking (SCC) is a strong concern for material selection in the oil and gas sector. The presence of H 2 S enhances hydrogen charging, which can increase hydrogen embrittlement (HE) susceptibility. There are knowledge gaps about HE in the environment saturated with pure carbon dioxide (CO 2 ) and with CO 2 containing H 2 S. CO 2 has a strong impact on corrosion rate as well, enhancing cathodic reactions. CO 2 might also have a direct contribution to hydrogen charging and cracking mechanisms. This study addresses the assessment of hydrogen permeation and HE of X65 and X80 steels in CO 2 and/or H 2 S environments. The performance of both steel grades is investigated, supported by experimental approach. The results indicate that the loss of mechanical resistance is due to hydrogen uptake and diffusion as well as the anodic dissolution, especially in Solution B. It is observed that X80 steel used in this work is more susceptible to cracking than X65 steel even in pure CO 2 . It is concluded that the advantage of using a higher‐mechanical‐resistant steel, X80 can be suppressed by HE effects.
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