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Corrosion protection of steels by coatings containing electrically conductive polymers.

机译:通过包含导电聚合物的涂层对钢的腐蚀防护。

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摘要

The anti-corrosion performance of conducting polymers coated on the mild steel and stainless steel samples which exposed to artificial brine and dilute hydrochloric acid was investigated. Mechanistic information, and quantitative corrosion data were obtained by several common DC and AC monitoring techniques such as Tafel Extrapolation, Potentiodynamic Polarization, Galvanic Coupling and Electrochemical Impedance Spectroscopy(EIS). These characterization studies, in conjunction with surface analysis by SEM and XPS, indicate that the corrosion protection, even for purposely exposed steels, occurs by the formation of passivating iron oxides layer at interface between conducting polymer and steel and on direct-exposed areas. The possibility for anodic protection of steels and other metals was proposed over 10 years ago by several researchers. This work attempts to rationalize the observed corrosion processes in order to elucidate protection mechanisms from the view of a corrosion engineer. However, the mechanisms by which steel can be protected against corrosion are quite varied, and sometimes, not well understood. A systematic correlation between the inhibition performance of electrically conducting polymers and its electronic, molecular, and electrochemical properties was also established. The main function of most organic coatings for corrosion protection of metals is to provide pinhole-free barrier on the surface. When these barriers break down through pin-holes or scratches in the coatings, a secondary method of corrosion protection is desired. It is this secondary method of protection that conductive polymers appear most suited. In this work, experiments were conducted to evaluate the electrochemical kinetic behavior of the oxidation of metal surfaces for the purpose of understanding the interfacial stability, oxidation response and porous film diffusion phenomena of oxidation films on metal surface. Monitoring of electrochemical parameters alone provides enough information in terms of redox details; other in situ techniques were employed to further investigate the nature of why conductive polymers provide this corrosion protection in certain damaging environments. Several reaction models and revised corrosion principles are presented to discuss the protective properties of intrinsically conducting polymers from electrochemical macroscopic theories and microscopic molecular details.
机译:研究了涂覆在低碳钢和不锈钢样品上的导电聚合物在人造盐水和稀盐酸中的耐腐蚀性能。机械信息和定量腐蚀数据是通过几种常见的DC和AC监测技术获得的,例如Tafel外推法,电势极化,电流耦合和电化学阻抗谱(EIS)。这些表征研究与SEM和XPS的表面分析相结合,表明即使在有针对性的暴露的钢上,腐蚀防护也可以通过在导电聚合物和钢之间的界面以及直接暴露的区域上形成钝化氧化铁层来实现。十多年前,几位研究人员提出了对钢和其他金属进行阳极保护的可能性。这项工作试图合理化观察到的腐蚀过程,以便从腐蚀工程师的角度阐明保护机制。但是,保护钢免受腐蚀的机制千差万别,有时还不甚了解。还建立了导电聚合物的抑制性能与其电子,分子和电化学性质之间的系统相关性。大多数有机涂料对金属的腐蚀防护的主要功能是在表面提供无针孔的屏障。当这些障碍物通过针孔或涂层中的划痕而破裂时,需要第二种防腐蚀方法。导电聚合物似乎是最适合的第二种保护方法。在这项工作中,进行实验以评估金属表面氧化的电化学动力学行为,以了解金属表面氧化膜的界面稳定性,氧化反应和多孔膜扩散现象。仅凭电化学参数的监测就可以提供有关氧化还原细节的足够信息。其他原位技术被用于进一步研究为何导电聚合物在某些破坏性环境中提供这种腐蚀保护的性质。提出了几种反应模型和修正的腐蚀原理,以从电化学宏观理论和微观分子细节上讨论固有导电聚合物的保护性能。

著录项

  • 作者

    Lu, Wei-Kang.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 139 p.
  • 总页数 139
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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