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Monitoring of Atmospheric Corrosivity inside Steel Upper Box Girder in Yeongjong Grand Bridge

机译:永宗特大桥钢上箱梁内部大气腐蚀监测

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The typical corrosion prevention method inside the steel upper box girder in a suspension bridge involves the use of paints. However, in an effort to reduce environmental impact and cost, the suspension portion of the Yeongjong Bridge, Korea utilizes dehumidification systems to control humidity and prevent corrosion inside its box girder. Maintaining a uniform humidity distribution at the proper level inside the box girder is critical to the successful corrosion control. In this study, the humidity and the resultant atmospheric corrosivity inside the box girder of the Yeongjong Bridge was monitored. The corrosion rate of the steel inside the box girder was obtained using thin-film electrical resistance (TFER) corrosion sensors. Time-of-wetness (TOW) measurements and the deposition rates of atmospheric pollutants such as Cl~- and SO_x were also obtained. Classification of the atmospheric corrosivity inside the box girder was evaluated according to ISO 9223. As a result, no corrosion was found in the upper box girder, indicating that the dehumidification system used in the Yeongjong Bridge is an effective corrosion control method.
机译:悬索桥钢上箱梁内部的典型防腐蚀方法涉及使用油漆。但是,为了减少对环境的影响和降低成本,韩国永宗大桥的悬吊部分利用除湿系统来控制湿度并防止箱梁内部的腐蚀。在箱形梁内部保持适当的湿度分布均匀是成功控制腐蚀的关键。在这项研究中,对永宗大桥箱梁内部的湿度和由此产生的大气腐蚀性进行了监测。使用薄膜电阻(TFER)腐蚀传感器获得箱形梁内部钢的腐蚀速率。还获得了湿时间(TOW)测量值和大气污染物(如Cl〜-和SO_x)的沉积速率。根据ISO 9223对箱梁内部的大气腐蚀性进行了评估。结果,在上箱梁中未发现腐蚀现象,这表明在永宗大桥中使用的除湿系统是一种有效的腐蚀控制方法。

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