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Electrochemical measurements of cathodic protection for reinforced concrete piles in a marine environment using embedded corrosion monitoring sensors

机译:使用嵌入式腐蚀监测传感器的海洋环境中钢筋混凝土桩阴极保护的电化学测量

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摘要

This study developed a sensor to monitor the corrosion of reinforced concrete structures. Concrete pile specimens with embedded sensors were used to obtain data on corrosion and cathodic protection for bridge columns in a real marine environment. Corrosion potential, cathodic protection current density, concrete resistivity, and the degree of depolarization potential were measured with the embedded sensors in concrete pile specimens. The cathodic protection (CP) state was accurately monitored by sensors installed in underwater, tidal, splash, and atmospheric zones. The protection potential measurements confirmed that the CP by Zn-mesh sacrificial anode was fairly effective in the marine pile environment. The protection current densities in the tidal, splash zones were 2–3 times higher than those in underwater and atmospheric zones. The concrete resistivity in the tidal and splash zones was decreased through the installation of both mortar-embedded Zn-mesh (sacrificial anode) and outside an FRP jacket (cover). Considering the CP, the cathodic prevention was more effective than cathodic protection.
机译:这项研究开发了一种传感器来监视钢筋混凝土结构的腐蚀。带有嵌入式传感器的混凝土桩标本用于获得真实海洋环境中桥梁柱的腐蚀和阴极保护数据。使用嵌入式传感器在混凝土桩标本中测量腐蚀电位,阴极保护电流密度,混凝土电阻率和去极化电位。阴极保护(CP)状态通过安装在水下,潮汐,飞溅和大气区域的传感器进行了精确监控。保护电位的测量结果证实,锌网牺牲阳极的阴极保护在海堆环境中相当有效。潮汐区和飞溅区的保护电流密度是水下和大气区的保护电流密度的2-3倍。通过安装嵌有砂浆的Zn筛网(牺牲阳极)和FRP护套(覆盖层),降低了潮汐区和飞溅区的混凝土电阻率。考虑到CP,阴极保护比阴极保护更有效。

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  • 来源
    《Metals and Materials International》 |2013年第3期|445-452|共8页
  • 作者单位

    Department of Ship Operation Korea Maritime University">(13010);

    Department of Material Engineering Pusan National University">(23010);

    Department of Material Engineering Pusan National University">(23010);

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  • 正文语种 eng
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