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Effect of electrochemically reactive rust layers on the corrosion of steel in a Ca(OH)_2 solution

机译:电化学反应性防锈层对Ca(OH)_2溶液中钢腐蚀的影响

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Electrochemical and gravimetric measurements are used to study the effect of rust layers on the corrosion of rusted steel in a saturated Ca(OH)_2 solution imitating the liquid phase in concrete pores. The results indicate that the reduction of rust is the main cathodic reaction in the first phase of the corrosion process of rusted steel. Subsequently the oxygen reduction reaction becomes the cathodic predominant reaction, in which the rust seems to act as a porous electrode. In this research rust clearly favours the corrosion of rusted steel, and an approximately direct correlation is seen between the rust mass and the mass loss due to steel corrosion. In the electrochemical measurements, attention is paid to the overestimation of the corrosion rate deduced from the polarisation resistance in the case of specimens with the highest rust contents, a problem that is attributed to the inappropri-ateness of the conventional measuring procedure in the presence of high capacitance values and redox processes.
机译:电化学和重量分析法用于研究锈层对模拟水泥孔隙中液相的饱和Ca(OH)_2溶液中的锈钢腐蚀的影响。结果表明,锈蚀的减少是锈钢腐蚀过程第一阶段的主要阴极反应。随后,氧还原反应变成阴极占优势的反应,其中锈似乎起着多孔电极的作用。在这项研究中,铁锈显然有利于生锈的钢的腐蚀,并且在铁锈质量与由于钢腐蚀引起的质量损失之间存在近似直接的相关性。在电化学测量中,应注意过高估计了在锈含量最高的样品中由极化电阻得出的腐蚀速率,这是由于存在以下情况而导致的常规测量程序的不当性高电容值和氧化还原过程。

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