Research Concerning the Correlation between the Phenomena of Coating Degradation in Steel Coated with Various Paints and Impedance Value

  • Kobayashi Hiroaki
    Industrial Research Center Aichi Center for Industry and Science Technology
  • Yamashita Yoshiya
    Industrial Research Center Aichi Center for Industry and Science Technology
  • Hayashi Naohiro
    Industrial Research Center Aichi Center for Industry and Science Technology
  • Kataoka Yasuhiro
    Industrial Research Center Aichi Center for Industry and Science Technology
  • Okido Masazumi
    EcoTopia Science Institute Nagoya University Industrial Research Center Aichi Center for Industry and Science Technology

Bibliographic Information

Other Title
  • 各塗装鋼板の塗膜劣化現象とインピーダンス値との相関関係に関する研究
  • カク トソウ コウバン ノ トマク レッカ ゲンショウ ト インピーダンスチ ト ノ ソウカン カンケイ ニ カンスル ケンキュウ

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Abstract

In order to make a quantitative evaluation of degradation in coatings by the electrochemical impedance spectroscopy method, it is necessary to be able to understand the relationship between each coating method and coatings’ degradation phenomena and the behavior of the impedance. In this research, using test pieces for different coating methods, salt slay test, sunshine weather meter test and combined cyclic corrosion test were performed, and evaluations were made by means of the electrochemical impedance spectroscopy method and surface observations. As a result, though it was difficult to determine the corrosion resistance from the impedance prior to the test, from impedance measurements performed over time, it was found that it was possible to detect the presence of cracks and blistering. As a simple method of determining the degradation, investigations were performed observing the time rate of change of the impedance. From variations in the time rate of change of impedance, it was found that it would be possible unambiguously to detect degradation regardless of the coating method employed.

Journal

  • Zairyo-to-Kankyo

    Zairyo-to-Kankyo 64 (3), 82-90, 2015

    Japan Society of Corrosion Engineering

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