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The effect of surface patterning and unidirectional roughness on corrosion of metals

机译:表面构图和单向粗糙度对金属腐蚀的影响

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摘要

In this study two different surface modification methods, namely surface patterning and unidirectional roughness, were applied to nickel and mild steel specimens to investigate the effect of surface roughness on the corrosion resistance. The goal is to decrease the contact area between the corrosive electrolyte and the substrate by creating different surface morphologies using different methods including surface patterns by laser ablation and unidirectional surface roughness through using SiC papers with different grits (G60- to G1200) on nickel and mild steel with different passivation behaviours. Electrochemical impedance spectroscopy measurements (EIS), potentiodynamic polarization and different surface characterization methods were performed to investigate the protection performance of the metals. In the first phase, patterns of holes with specific diameters (D) and inter-hole spacings (L) were created by laser ablation on nickel and corrosion tests were carried out in a 0.5 M H 2 SO 4 solution. The corrosion potential, E Corr , and current density (I Corr ) were determined and compared for different ratios of (D/L). Energy dispersive spectroscopy (EDS) was performed on the surface of the samples to investigate the chemical composition, specifically the oxygen content of different regions of the patterned area before and after corrosion testing. By creating such patterns we are able to produce a surface with heterogeneous wetting properties, to decrease the contact area between the liquid and the substrate. It has been shown that for a few specific patterns the corrosion resistance can be increased by orders of magnitude. In the next phase, the effect of unidirectional surface roughness on the corrosion of nickel and mild steel was investigated using EIS and potentiodynamic polarization techniques. Scanning electron micrographs were also taken and roughnesses were measured before and after corrosion testing with a profilometer. EDS also measured oxygen concentration. By decreasing the roughness, the corrosion resistance of nickel and mild steel increased and decreased respectively. The patterned sample showed the best corrosion resistance as a result of the heterogeneous wetting phenomenon that happened on the surface. Surface patterning also can achieve a much larger improvement in corrosion resistance compared to unidirectional roughness.
机译:在这项研究中,将两种不同的表面改性方法,即表面图案和单向粗糙度应用于镍和低碳钢样品,以研究表面粗糙度对耐蚀性的影响。目的是通过使用不同的方法创建不同的表面形态(包括通过激光烧蚀形成的表面图案和通过使用不同粒度(从G60到G1200)在镍和温和的镍上的SiC纸来产生不同的表面形态)来减少腐蚀性电解质与基材之间的接触面积。具有不同钝化性能的钢。进行了电化学阻抗谱测量(EIS),电势极化和不同的表面表征方法,以研究金属的保护性能。在第一阶段,通过在镍上进行激光烧蚀形成具有特定直径(D)和孔间间距(L)的孔图案,并在0.5 M H 2 SO 4溶液中进行腐蚀测试。确定腐蚀电位E Corr和电流密度(I Corr),并比较不同比率(D / L)的腐蚀电位。对样品的表面进行了能量色散光谱(EDS),以研究化学成分,特别是腐蚀测试前后图案区域不同区域的氧含量。通过创建这样的图案,我们能够生产出具有不均匀润湿特性的表面,从而减少液体与基材之间的接触面积。已经表明,对于一些特定的图案,耐腐蚀性可以增加几个数量级。在下一阶段,使用EIS和电势极化技术研究了单向表面粗糙度对镍和低碳钢腐蚀的影响。还拍摄了扫描电子显微照片,并在用轮廓仪进行腐蚀测试之前和之后测量了粗糙度。 EDS还测量了氧气浓度。通过降低粗糙度,镍和低碳钢的耐蚀性分别提高和降低。图案化的样品由于表面上发生的异质润湿现象而显示出最佳的耐腐蚀性。与单向粗糙度相比,表面图案化还可在耐腐蚀性方面实现更大的改进。

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    Toloei Alisina;

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  • 年度 2014
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  • 正文语种 en
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