首页> 外文期刊>Journal of advanced concrete technology >Cathodic Protection Range of the Embedded Sacrificial Zinc Anode for RC Member Deteriorated by Carbonation and Mixed Chloride
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Cathodic Protection Range of the Embedded Sacrificial Zinc Anode for RC Member Deteriorated by Carbonation and Mixed Chloride

机译:用于RC构件的嵌入式牺牲锌阳极的阴极保护范围通过碳酸化和混合氯化物而劣化

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摘要

Much is left unknown about applicable conditions of the method or quantification of the cathodic protection range. In particular, little has been studied about how the range or effect of cathodic protection is influenced by such factors as the thickness of reinforcing bars (rebars) to be protected, combined deterioration by carbonation and mixed chloride, amount of chloride ions and carbonation depth. This study experimentally evaluated the effect of differences in the chloride ion content in concrete, the carbonation depth or the rebar thickness on the cathodic protection range of the embedded sacrificial anode method. The results of the experiment were that the smaller the carbonation depth, the amount of chloride ions or the rebar thickness, the larger the amount of depolarization of the rebars in the concrete to be protected was. That is, for corrosion protection of rebars near patch repair areas embedded with sacrificial anodes, it would be appropriate to make the steel surface area of components smaller and the salt damage environment less corrosive.
机译:关于阴极保护范围的方法或定量的适用条件,留下了很多。特别地,研究了阴极保护的范围或效果如何受到待保护的增强条(钢筋)的厚度,通过碳酸化和混合氯化物,氯离子量和碳酸化深度的厚度影响。本研究通过实验评估了嵌入牺牲阳极法的阴极保护范围内混凝土,碳化深度或钢筋厚度中氯离子含量差异的影响。实验结果是碳酸化深度越小,氯离子或钢筋厚度越小,钢筋的钢筋的去极化量越大。也就是说,对于嵌入牺牲阳极的补丁修复区域附近的钢筋腐蚀保护,使得使钢表面区域更小,盐损伤环境较少腐蚀。

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