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Galvanic corrosion properties of steel in water saturated concrete

机译:钢在水饱和混凝土中的电偶腐蚀性能

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Aluminum-based sacrificial anodes were installed to reinforced concrete to stop ongoing corrosion in cooling water tunnels in a Swedish nuclear power plant. The steel rebars were also unintentionally connected to stainless steel water pumps. Therefore, the consumption rate of the sacrificial anodes was higher than predicted. An experimental and a field study were performed to assess if the steel rebar suffer from galvanic corrosion and if the stainless steel pumps are responsible alone for the high consumption rate. It was found from the experimental study that there is an increased risk of galvanic corrosion for steel rebar when the corrosion potential is raised to -200mV (SCE) for samples with 1% Cl- by mass of cement and -500mV (SCE) for samples with 2% Cl- by mass of cement. The experimental results were compared with the corrosion potential measured in the cooling water tunnel where sacrificial anodes were in use and not mounted at all. The cooling water tunnel without sacrificial anodes had generally more anodic corrosion potentials compared to the tunnel with anodes. The tunnel with anodes had also more anodic potentials closer to the stainless steel pumps than further away which means that the rebar is affected by the stainless steel pumps. However, the measured corrosion potentials in the tunnels were not as anodic as the potentials needed for high galvanic current measured in the experimental study.
机译:铝基牺牲阳极安装在钢筋混凝土上,以阻止瑞典核电站冷却水隧道中持续的腐蚀。钢筋也无意中连接到不锈钢水泵。因此,牺牲阳极的消耗率高于预期。进行了一项实验和现场研究,以评估钢筋是否遭受电腐蚀,以及不锈钢泵是否单独导致了高消耗率。从实验研究中发现,当水泥含量为1%Cl-的样品的腐蚀电位提高到-200mV(SCE),样品的腐蚀电位提高到-200mV(SCE)时,钢筋的电化腐蚀风险会增加。含2%的水泥Cl-。将实验结果与在使用牺牲阳极而根本未安装牺牲阳极的冷却水隧道中测得的腐蚀电位进行了比较。与带有阳极的隧道相比,没有牺牲阳极的冷却水隧道通常具有更大的阳极腐蚀电位。带有阳极的隧道靠近不锈钢泵的阳极电位也比距离更远,这意味着钢筋受不锈钢泵的影响。但是,在隧道中测得的腐蚀电位并不像实验研究中测得的高电流电流所需的电位那样阳极。

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