...
首页> 外文期刊>Corrosion science >Novel corrosion experiments using the wire beam electrode: (Ⅲ) Measuring electrochemical corrosion parameters from both the metallic and electrolytic phases
【24h】

Novel corrosion experiments using the wire beam electrode: (Ⅲ) Measuring electrochemical corrosion parameters from both the metallic and electrolytic phases

机译:线束电极的新型腐蚀实验:(Ⅲ)从金属和电解相测量电化学腐蚀参数

获取原文
获取原文并翻译 | 示例
           

摘要

The wire beam electrode (WBE) and the scanning reference electrode technique (SRET) have been applied in a novel combination to measure, for the first time, electrochemical parameters simultaneously from both the metallic and electrolytic phases of a corroding metal surface. The objective of this work is to demonstrate the application of this combined WBE-SRET method in obtaining unique information on localised corrosion mechanism, by investigating typical corrosion processes occurring over a mild steel WBE surface exposed to the classic Evans solution. The WBE method was used to map current and potential distributions in the metallic phase, and the SRET was used to map current or potential distribution in the electrolytic phase. It has been found that the combined WBE-SRET method is able to gain useful information on macro-cell electrochemical corrosion processes that involve macro-scale separation of anodes and cathodes. In such macro-cell corrosion systems, maps measured using WBE and SRET were found to correlate with each other and both methods were able to detect the locations of anodic sites. However the movement of the scanning probe during SRET measurements was found to affect the SRET detection of cathodic sites. In micro-cell corrosion systems where the separation of anodic and cathodic sites were less distinct, SRET measurement was found to be insensitive in detecting anodic and cathodic sites, while the WBE method was still able to produce results that correlated well with observed corrosion behaviour. Results obtained from this work suggest that the WBE-SRET method is applicable for understanding the initiation, propagation and electrochemical behaviour of localised corrosion anodes and cathodes, and also their dependence on externally controllable variables, such as solution pH changes and the existence of surface coatings.
机译:线束电极(WBE)和扫描参考电极技术(SRET)已以新颖的组合方式被应用,以首次同时从腐蚀的金属表面的金属和电解相中测量电化学参数。这项工作的目的是通过研究暴露于经典Evans溶液的低碳钢WBE表面上发生的典型腐蚀过程,来证明这种组合的WBE-SRET方法在获得有关局部腐蚀机理的独特信息方面的应用。 WBE方法用于绘制金属相中的电流和电位分布,而SRET用于绘制电解相中的电流或电位分布。已经发现,组合的WBE-SRET方法能够获得有关涉及阳极和阴极的宏观分离的大电池电化学腐蚀过程的有用信息。在这种宏单元腐蚀系统中,发现使用WBE和SRET测得的图相互关联,并且两种方法都能够检测出阳极位置。然而,发现在SRET测量期间扫描探针的移动会影响SRET对阴极位点的检测。在阳极和阴极位置分离不太明显的微孔腐蚀系统中,发现SRET测量对检测阳极和阴极位置不敏感,而WBE方法仍然能够产生与观察到的腐蚀行为良好相关的结果。从这项工作中获得的结果表明,WBE-SRET方法适用于理解局部腐蚀阳极和阴极的引发,传播和电化学行为,以及它们对外部可控变量(如溶液pH值变化和表面涂层的存在)的依赖性。 。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号