Evaluation of the Synergistic Effect of Erosion-Corrosion on AISI 4330 Steel in Saline-Sand Multiphase Flow by Electrochemical and Gravimetric Techniques

IF 2.3 Q3 ELECTROCHEMISTRY International journal of electrochemistry Pub Date : 2016-05-17 DOI:10.1155/2016/1831654
D. P. Ballesteros, Yelsin Enrique Mendez Camacho, L. Hernandez
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引用次数: 4

Abstract

The synergistic effects of fluid flow, sand particles, and solution pH on erosion-corrosion of AISI 4330 steel alloy in saline-sand medium were studied through a rotating cylinder electrode (RCE) system by weight-loss and electrochemical measurements. The worn surface was analyzed by X-ray diffraction (XRD) and scanning electron microscopy (SEM). Results show that, under all the test conditions assessed, the passivity of the steel alloy could not be maintained; as a result, an activation mechanism dominates the corrosion process of steel alloy. Furthermore, the potentiodynamic curves show that, with the increasing of the electrode flow rate and particle size, the anodic current density increased, which is due to deterioration of the electrode by the impacting slurry. Although the increase of particle size affects the anodic current density, the effect of particle size does not cause a significant change in the polarization behavior of the steel electrode. The electrochemical impedance and potentiodynamic curves suggest that erosion-corrosion phenomenon of the ASISI 4330 steel is under mixed control of mass transport and charge transfer. The inductive loops formed in the impedance plots are representative of an increase in roughness of the electrode caused by the particles impacting at the surface. The change in the passivity of the steel alloy as the pH is altered plays an important role in the corrosion rate.
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用电化学和重量法评价aisi4330钢在盐砂多相流中的冲蚀-腐蚀协同效应
通过旋转圆柱电极(RCE)系统,通过失重和电化学测量,研究了流体流量、砂粒和溶液pH对AISI 4330钢合金在盐砂介质中的侵蚀腐蚀的协同效应。采用x射线衍射(XRD)和扫描电镜(SEM)对磨损表面进行了分析。结果表明,在所有试验条件下,钢合金的钝化性能都不能保持;因此,活化机制主导了钢合金的腐蚀过程。动电位曲线表明,随着电极流速和颗粒尺寸的增大,阳极电流密度增大,这是由于电极受到冲击浆的劣化。晶粒尺寸的增大虽然会影响阳极电流密度,但晶粒尺寸的影响不会对钢电极的极化行为产生显著影响。电化学阻抗和动电位曲线表明,ASISI 4330钢的冲蚀-腐蚀现象受质量输运和电荷传递的混合控制。在阻抗图中形成的感应回路代表了由于颗粒撞击表面而引起的电极粗糙度的增加。随着pH值的改变,钢合金的钝化率的变化对腐蚀速率起着重要的作用。
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审稿时长
7 weeks
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