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微區電化學技術在薄液膜大氣腐蝕中的應用

Application of micro-electrochemical technologies in atmospheric corrosion of thin electrolyte layer

  • 摘要: 薄液膜大氣腐蝕的本質是吸附于金屬基體表面的水汽形成薄電解質液膜引起的金屬腐蝕現象.由于液膜很薄,無法滿足常規的三電極溶液測試體系要求,使得微區電化學技術在該領域得到廣泛的應用.本文對比分析了用于薄液膜大氣腐蝕的電化學測試技術,著重介紹了掃描Kelvin探針、絲束電極、微液滴電極等測試方法在薄液膜大氣腐蝕研究中的應用,并通過總結測試中涉及的關鍵參數揭示了薄液膜/液滴尺寸與腐蝕動力學過程的關系.最后提出了微區電化學方法在該領域應用目前存在的問題以及今后可進一步提升的可能.

     

    Abstract: The atmospheric corrosion of a metal under a thin electrolyte layer is caused due to the adsorption of the thin electrolyte layer on metal surfaces. As the electrolyte layer is considerably thin, the application of a traditional three-electrode system is considerably difficult; therefore, localized electrochemical technologies are of great use in this field. Herein, different localized electrochemical techniques for atmospheric corrosion under a thin liquid film were discussed. In particular, the applications of scanning Kelvin probe microscopy, wire-beam electrodes, and micro-droplet electrodes were introduced and comprehensively explained. In addition, the key parameters of the tests, which show the relation between thin film/droplet size and corrosion kinetics, were summarized. Furthermore, the issues that currently exist in this field and the potential for improvement was proposed in this research.

     

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