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Effect of erosion on corrosion of API X120 steel in relation to erodent particle size

机译:侵蚀对API X120钢腐蚀与腐蚀粒径相关的影响

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The nature of the solid erodent particles present in corrosive petroleum fluid can cause transporting pipeline to experience severe erosion and corrosion damages. The effect of erosion on corrosion behavior of API X120 steel was investigated using aluminum oxide and silicon carbide particles with different sizes as erodent and 3.5 wt.% NaCl aqueous solution saturated with carbon dioxide as a corrosive medium. The effect of the erodent particle size on the corrosion behavior of the steel material at different particle speeds and impact angles was investigated using weight loss, potentiodynamic polarization and surface analysis techniques. The erosion results confirmed that the material damage increased with increasing particle speed. It was observed that in carbon dioxide-saturated saline solution, deposition of protective iron carbonate film occurred on the steel surface. It was found that the corrosion film can provide better protection at lower particle speed than at higher speed. The ratio of total erosion-corrosion (S)/effect of erosion on corrosion (T) analysis confirmed that at higher S/T ratio, the particle speed and material removal rate are low and vice versa at lower S/T ratio. Lower S/T values for the combined erosion and corrosion tests performed with erodent silicon carbide particle compared to erodent aluminum oxide particle showed that erosion enhancement of corrosion is more evident in the test performed using aluminum oxide particle than using silicon carbide particle. The result also suggests that when subjected to larger size erodent particle, the damage to pipeline due to effect of erosion on corrosion process can be more significant compared to smaller size erodent particle.
机译:腐蚀性石油流体中存在的固体腐蚀颗粒的性质可导致运输管道体验严重的侵蚀和腐蚀损坏。使用氧化铝和碳化硅颗粒作为腐蚀和3.5重量%的不同尺寸的氧化铝和碳化硅颗粒研究了API X120钢腐蚀行为的影响。使用减肥,电位偏振极化和表面分析技术研究了蚀刻粒度对钢材以不同颗粒速度和冲击角的腐蚀行为的影响。侵蚀结果证实,材料损坏随着粒子速度的增加而增加。观察到,在二氧化碳饱和盐酸溶液中,在钢表面上发生保护碳酸铁膜的沉积。发现腐蚀膜可以以低于较高速度的较低粒径提供更好的保护。总侵蚀腐蚀的比例/侵蚀对腐蚀(T)分析的影响证实,在较高的S / T比下,粒度和材料去除速率低,反之亦然。与腐蚀碳化铝颗粒相比,用腐蚀碳化硅颗粒进行的较低的腐蚀和腐蚀试验的降低S / T值表明,在使用氧化铝粒子的试验中比使用碳化硅颗粒的试验更明显,腐蚀的侵蚀更明显。结果还表明,与较小尺寸的腐蚀颗粒相比,当受到较大尺寸的腐蚀颗粒时,由于腐蚀过程的侵蚀效果导致的管道损坏可能更为显着。

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