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Experimental Study on Erosion–Corrosion of TP140 Casing Steel and 13Cr Tubing Steel in Gas–Solid and Liquid–Solid Jet Flows Containing 2 wt NaCl

机译:TP140套管钢和13Cr钢管在含2 wt%NaCl的气固和液固射流中冲蚀腐蚀的实验研究

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摘要

To study the erosion–corrosion characteristics of TP140 casing steel and 13Cr tubing steel in oil fields, we performed gas–solid and liquid–solid jet flow experiments to control particle addition, jet angle, and flow velocity and measure erosion and corrosion components. Meanwhile, we used a standard three-electrode system to study the changes in electrochemical parameters on a metal surface in a two-phase flow containing 2 wt % NaCl. Results showed that erosion is mainly dominated by the flow velocities and impact angles of particles, and corrosion rate is mainly affected by liquid flow rate. The erosion rates of the two materials increase with flow velocity, and the critical angle of maximum erosion rate exists. Meanwhile, flow velocity growth increases the current density on the TP140 surface while reducing the corrosion potential of 13Cr, but the effect of the angle on the two parameters is relatively small. The uniform corrosion of TP140 increases the erosion rate in the range of 10–20%, and the pitting of 13Cr increases the erosion rate in the range of 30–90%, indicating that the interaction between the erosion and corrosion of stainless steel is obvious.
机译:为了研究TP140套管钢和13Cr钢管在油田的腐蚀-腐蚀特性,我们进行了气-固和液-固射流实验,以控制颗粒的添加,射流角度和流速,并测量腐蚀和腐蚀成分。同时,我们使用标准的三电极系统研究了含2 wt%NaCl的两相流中金属表面电化学参数的变化。结果表明,腐蚀主要受颗粒的流速和冲击角的影响,腐蚀速率主要受液体流速的影响。两种材料的腐蚀速率随流速的增加而增加,并且存在最大腐蚀速率的临界角。同时,流速的增长增加了TP140表面的电流密度,同时降低了13Cr的腐蚀电位,但是角度对两个参数的影响相对较小。 TP140的均匀腐蚀使腐蚀率在10–20%的范围内增加,而13Cr点蚀使腐蚀率在30–90%的范围内增加,这表明不锈钢的腐蚀与腐蚀之间的相互作用是明显的。

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