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Anticorrosion performance of chromized coating prepared by pack cementation in simulated solution with H2S and CO2

机译:在H2S和CO2的模拟溶液中通过填充胶结法制备的铬酸盐涂层的防腐性能

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A hash service environment containing H2S and CO2 in oil industry usually causes corrosion of carbon steel. In this study, the chromized coatings with different deposited time were prepared on the surface of carbon steel by the method of pack cementation to enhance its corrosion resistance. Then the microstructure, hardness, corrosion resistance as well as the semiconductor behavior of coatings in the simulated solution with saturated H2S and CO2 were investigatell. The results show that the content of Cr in coating was increased by prolonging deposited time, and both chromium carbides and chromium nitrides were formed. Furthermore, coatings display higher polarization resistance, R-p, than that of the substrate, indicating a higher resistance to charge transfer on coating surface. The corrosion rates of coatings with different deposited time were significantly lower than that of substrate. Chemical analysis showed the formation of heavy sulfides on the surface of substrates after corrosion, while the least corrosion products were detected on the surface of coating with deposited time of 12 h. Mott-Schottky results indicated that coating of 12 h displayed less defects than the other two coatings with deposited time of 4 h and 8 h, which will be beneficial to improve corrosion resistance. The investigation showed that chromized coatings exhibited high corrosion resistance and owned a potential application in oil industry for corrosion prevention. (C) 2017 Elsevier B.V. All rights reserved.
机译:石油工业中包含H2S和CO2的哈希服务环境通常会导致碳钢腐蚀。本研究采用填料渗碳法在碳钢表面制备了具有不同沉积时间的镀铬涂层,以提高其耐蚀性。然后研究了在饱和的H 2 S和CO 2模拟溶液中涂层的组织,硬度,耐腐蚀性以及半导体性能。结果表明,随着镀层时间的延长,镀层中的Cr含量增加,同时形成碳化铬和氮化铬。此外,涂层显示出比基材更高的极化电阻R-p,表明在涂层表面上具有更高的电荷转移电阻。具有不同沉积时间的涂层的腐蚀速率明显低于基体。化学分析表明,腐蚀后在基材表面形成了重金属硫化物,而在涂层表面沉积时间为12 h的腐蚀产物最少。莫特-肖特基(Mott-Schottky)结果表明,12 h的涂层与其他两种涂层相比,其沉积时间分别为4 h和8 h的缺陷较少,这将有利于提高耐腐蚀性。调查表明,铬涂层具有很高的耐腐蚀性,在石油工业中具有潜在的防腐蚀应用。 (C)2017 Elsevier B.V.保留所有权利。

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