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Corrosion Analysis of Super Duplex Stainless Steel immersed in Seawater under different Rotation Speeds

机译:不同旋转速度下浸入海水中超级双相不锈钢的腐蚀分析

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This work presents the influence of the turbulent flow in the corrosion of super duplex stainless steel (SDSS) samples immersed in synthetic seawater at room temperature and atmospheric pressure. In order to control the turbulent flow conditions, a rotating cylinder electrode (RCE) was used. Five different rotation rates were studied: 0 (or static conditions), 1000, 2000, 3000, 5000 and 7000 rpm. The electrochemical technique used in the corrosion study was potentiodynamic polarization curve. In addition, Eisenberg equation and analysis of dimensionless numbers were used to determine the limiting current density generated by the cathodic reaction. The results show that of the turbulent flow just has influence in the first rotational speeds of rotating cylinder electrode with an increment in Reynolds number. Cathodic current density obtained at static conditions is higher than densities obtained at 4000, 5000 and 7000 rpm. It is important to point out that at those last rotation speeds; the turbulent flow has not influence on the cathodic current density.
机译:这项工作提出了湍流在室温和大气压下浸入合成海水中的超级双相不锈钢(SDSS)样品腐蚀中的影响。为了控制湍流条件,使用旋转缸电极(RCE)。研究了五种不同的旋转率:0(或静态条件),1000,2000,3000,5000和7000rpm。腐蚀研究中使用的电化学技术是电位动力学偏振曲线。另外,艾森伯格方程和无量纲数的分析用于确定阴极反应产生的限制电流密度。结果表明,湍流的旋转圆筒电极的第一转速具有雷诺数的旋转圆柱电极的第一转速。在静态条件下获得的阴极电流密度高于4000,5000和7000rpm获得的密度。重要的是要指出,在最后的轮换速度下;湍流对阴极电流密度没有影响。

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