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A FEM Model for the Cathodic Corrosion Protection of Reinforcing Steel in Concrete Structures Exposed to Chloride Contamination

机译:氯化物污染混凝土结构中加固钢阴极腐蚀保护的有限元模型

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This study developed a bi-dimensional model of a steel-reinforced concrete (RC) structure under cathodic protection against corrosion using the Finite Element Model (FEM) based Comsol Multiphysics software. Two small RC samples’ frontal geometry was considered from a reported experimental study, tested here against corrosion in a chloride environment. Those samples had different rebar diameters (10 mm and 16 mm). The reported specific electrochemical parameters and material properties were selected through this numerical investigation. The cathodic protection system’s optimization process was based on identifying the appropriate external applied potential $E_{app}i$ which lowers at minimum the corrosion rate. In this purpose, the first average corrosion current density iFe under the value with minimum corrosion risk (of 0.1 $mu A/cm^{2}$) was identified for both models. For Model 1 with rebar diameter of 10 mm, a safe iFe value of 0.087 $mu A/cm^{2}$ was attained $E_{app}i=-0.225V$, and for Model 2 with rebar diameter of16 mm, $i_{Fe}=0.085mu A/cm^{2}$ at $E_{app}i=-0.15$ V.
机译:本研究开发了一种使用基于有限元模型(FEM)COMSOL多体软件的阴极保护下的钢筋混凝土(RC)结构的二维模型。从报告的实验研究中考虑了两个小型RC样本的正面几何形状,此处测试了抗氯化物环境中的腐蚀。这些样品具有不同的钢筋直径(10 mm和16mm)。通过该数值调查选择了所报道的特定电化学参数和材料性能。阴极保护系统的优化过程是基于识别适当的外部应用潜在$ e_ {app} i $,该潜在$ e_ {app} i $至少降低腐蚀速率。以此目的,第一平均腐蚀电流密度I fe 根据两种型号识别出最小腐蚀风险的值(0.1 $ mu a / cm ^ {2} $)。对于铸型1,钢筋直径为10毫米,安全i fe 价值为0.087 $ mu a / cm ^ {2} $达到$ e_ {app} i = -0.225v $,以及钢筋直径为16 mm,$ i_ {fe} = 0.085 mu a / cm的型号2 $ e_ {app} i = -0.15 $ V.

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