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Effects of Concrete Mix Proportion and Chloride Content on Electrochemical Properties of Reinforcing Steel in Concrete

机译:混凝土混合比例和氯化物含量对混凝土钢筋电化学性能的影响

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Corrosion of steel in concrete has been considered as a major cause reducing the lifespan of reinforced concrete (RC) structures. Evaluation of corrosion rate is crucial to determine service life and maintenance plaining for RC structures. Electrochemical properties of corrosion of embedded steel in concrete, including the Tafel slope, corrosion potential and corrosion current density, are significant parameters predicting corrosion rate. The objective of this paper was to quantitatively evaluate electrochemical properties of steel in different compositions of concrete. Varied parameters include the water to binder ratio of concrete, type of binder and chloride content. The electrochemical properties were evaluated at three periods of exposure. Experimental results reveal that the electrochemical properties of reinforcing steel depend on water to binder ratio, type of binder and chloride content. An increase in chloride content significantly decreases the corrosion potential and increases the corrosion rate of steel. The anodic equilibrium potential is lower with an increase in chloride content. The varied concrete mix proportion significantly influence the cathodic polarization. This is due to the effects of concrete porosity on oxygen concentration, which is influenced by the concrete mix proportions. The results can be used to predict corrosion rate of steel in various concrete mix proportion for determining service life and repairing of RC structures.
机译:混凝土中钢的腐蚀被认为是减少钢筋混凝土(RC)结构的寿命的主要原因。腐蚀速率的评估对于确定RC结构的使用寿命和维护预测是至关重要的。混凝土中嵌入钢腐蚀的电化学性能,包括Tafel坡度,腐蚀电位和腐蚀电流密度,是预测腐蚀速率的重要参数。本文的目的是在混凝土组成中定量评价钢的电化学性质。不同的参数包括水与混凝土的粘合剂比,粘合剂型和氯化物含量。在三个曝光时间内评估电化学性质。实验结果表明,增强钢的电化学性能取决于水与粘合剂比,粘合剂型和氯化物含量。氯化物含量的增加显着降低了腐蚀电位并提高了钢的腐蚀速率。阳极平衡电位随着氯化物含量的增加而较低。不同的混凝土混合比例显着影响阴极极化。这是由于混凝土孔隙率对氧浓度的影响,这受混凝土混合比例的影响。结果可用于预测各种混凝土混合比例的钢腐蚀速率,以确定使用寿命和RC结构的修复。

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