Practical Method for Estimating Time-Dependent Corrosion Depth of Uncoated Carbon Steel Plate under Atmospheric Environment using Fe/Ag Galvanic Couple ACM-Type Corrosion Sensor

  • Kainuma Shigenobu
    Department of Civil and Structural Engineering, Faculty of Engineering, Kyushu University
  • Yamamoto Yuya
    Kyoto Expressway Office, Kansai Branch, West Nippon Expressway Company Ltd.
  • Hayashi Hideyuki
    Department of Urban and Environmental Engineering, Graduate School of Engineering, Kyushu University
  • Itoh Yoshihiro
    Mechanical Engineering Research Laboratory, KOBE STEEL, LTD.
  • Oshikawa Wataru
    Department of Mechanical and Systems Engineering, College of Engineering, University of the Ryukyus

Bibliographic Information

Other Title
  • Fe/Ag対ACM型腐食センサーを用いた大気環境における無塗装普通鋼板の経時腐食深さの評価方法

Abstract

To maintain economically steel structures against corrosion damage, it is necessary to quantitatively clarify the corrosion environments of individual parts in the structures and to evaluate the time-dependent corrosion behavior. In this research, an evaluating method for the time-dependent corrosion depth of uncoated structural steel plates using Fe/Ag galvanic couple ACM type corrosion sensor was proposed. This method was focused on the environments with and without effect of rainfall and airborne sea salt. Atmospheric exposure tests were carried out on the uncoated steel plates in four fields in which the environments varied widely as a function of rainfall and airborne sea salt. In addition to this, the corrosive environments of the skyward- and groundward-facing surfaces of the plates were monitored using the ACM sensors.

Journal

  • Zairyo-to-Kankyo

    Zairyo-to-Kankyo 63 (2), 50-57, 2014

    Japan Society of Corrosion Engineering

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Details 詳細情報について

  • CRID
    1390001206258639104
  • NII Article ID
    130004678975
  • DOI
    10.3323/jcorr.63.50
  • COI
    1:CAS:528:DC%2BC2cXmvFelsr8%3D
  • ISSN
    18819664
    09170480
  • Text Lang
    ja
  • Data Source
    • JaLC
    • Crossref
    • CiNii Articles
  • Abstract License Flag
    Disallowed

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