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Mechanism and modelling of CO2 corrosion on downhole tools

机译:井下工具二氧化碳腐蚀的机理与模型

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摘要

The conditions surrounding oil and gas exploration are becoming more hazardous, especially in oil and gas fields with a high quantity of corrosive components such as CO2. CO2 causes localized corrosion of tools made from metal, rubber and other materials in humid environments; this leads to corrosion failure in metal equipment and downhole tools such as drills pipes, casings and oil pipes, thereby reducing their service life. In this study, the composition, lattice and crystalline forms of corrosion products and corroded materials were analysed using scanning electron microscopy, energy spectrum analysis, X-ray diffraction and polarization curves, in order to investigate the corrosion mechanisms and influential factors for several common tool materials. A CO2 corrosion model was established for two materials and the results were verified with optimal prediction values.
机译:围绕石油和天然气勘探的条件变得越来越危险,尤其是在含有大量腐蚀性成分(例如二氧化碳)的油气田中。在潮湿的环境中,二氧化碳会引起由金属,橡胶和其他材料制成的工具的局部腐蚀;这会导致金属设备和井下工具(例如钻杆,套管和油管)的腐蚀失效,从而缩短其使用寿命。在这项研究中,使用扫描电子显微镜,能谱分析,X射线衍射和极化曲线分析了腐蚀产物和被腐蚀材料的组成,晶格和晶体形式,以研究几种常用工具的腐蚀机理和影响因素。材料。建立了两种材料的CO2腐蚀模型,并用最佳预测值验证了结果。

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