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Electrochemical Investigation of the Corrosion of Different Microstructural Phases of X65 Pipeline Steel under Saturated Carbon Dioxide Conditions

机译:X65管线钢在饱和二氧化碳条件下不同组织腐蚀的电化学研究。

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摘要

The aim of this research was to investigate the influence of metallurgy on the corrosion behaviour of separate weld zone (WZ) and parent plate (PP) regions of X65 pipeline steel in a solution of deionised water saturated with CO2, at two different temperatures (55 °C and 80 °C) and at initial pH~4.0. In addition, a non-electrochemical immersion experiment was also performed at 80 °C in CO2, on a sample portion of X65 pipeline containing part of a weld section, together with adjacent heat affected zones (HAZ) and parent material. Electrochemical impedance spectroscopy (EIS) was used to evaluate the corrosion behaviour of the separate weld and parent plate samples. This study seeks to understand the significance of the different microstructures within the different zones of the welded X65 pipe in CO2 environments on corrosion performance; with particular attention given to the formation of surface scales; and their composition/significance. The results obtained from grazing incidence X-ray diffraction (GIXRD) measurements suggest that, post immersion, the parent plate substrate is scale free, with only features arising from ferrite (α-Fe) and cementite (Fe3C) apparent. In contrast, at 80 °C, GIXRD from the weld zone substrate, and weld zone/heat affected zone of the non-electrochemical sample indicates the presence of siderite (FeCO3) and chukanovite (Fe2CO3(OH)2) phases. Scanning Electron Microscopy (SEM) on this surface confirmed the presence of characteristic discrete cube-shaped crystallites of siderite together with plate-like clusters of chukanovite.
机译:这项研究的目的是研究在两种不同温度下,在CO2饱和的去离子水溶液中,冶金学对X65管线钢的单独焊接区(WZ)和母板(PP)区域的腐蚀行为的影响(55 °C和80°C)和初始pH〜4.0。此外,还在包含焊接部分一部分的X65管道的样品部分以及相邻的热影响区(HAZ)和母材一起在80°C的CO2中进行了非电化学浸泡实验。电化学阻抗谱(EIS)用于评估单独的焊缝和母板样品的腐蚀行为。本研究旨在了解在CO2环境中X65焊接管不同区域内不同微结构对腐蚀性能的重要性。特别注意表面水垢的形成;及其组成/意义。从掠入射X射线衍射(GIXRD)测量获得的结果表明,浸入后,母板基片是无鳞的,只有铁素体(α-Fe)和渗碳体(Fe3C)产生的特征才明显。相反,在80°C时,来自非电化学样品的焊接区基材和焊接区/热影响区的GIXRD表示存在菱铁矿(FeCO3)和硅藻土(Fe2CO3(OH)2)相。在该表面上的扫描电子显微镜(SEM)证实了菱铁矿的特征性离散立方体形状微晶以及chukanovite的板状簇的存在。

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