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Use of galvanostatic pulse measurements in active reinforcing steel in concrete to assess corrosion rates

机译:在混凝土中的活性钢筋中使用恒电流脉冲测量来评估腐蚀速率

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This paper reports the results (if galvanostatic pulse transient response experiments to determine the corrosion parameters associated with actively corroding reinforcing steel in concrete. Galvanostatic pulse measurements have been conducted on a number of short 100 mm sections of steel reinforcing bar embedded in chloride contaminated concrete. The duration of the applied galvanostatic pulse was 90 s and the lateral distance of the point of measurement from the bar varied from zero to 400 mm. All of the bars monitored were conditioned so that they were actively corroding at different rates. Analysis of the galvanostatic pulse transient response has enabled the separate components that make up the measured transients to be isolated and evaluated. These components display a range of resistivities and capacitances, dependent an the corrosion condition of the reinforcing steel, which may be attributed to the corrosion process, to effects within the concrete cover or to film effects an the surface of the concrete. Other investigators using this technique have evaluated the corrosion rate by summation of the separate corrosion components, i.e. simply summing all of the resistance values to obtain an aggregated corrosion resistance. However, it is possible that not all resistances identified are associated with the loss of steel from the surface of the reinforcement. Significant variations in corrosion rates have been observed dependent an the assignment of the separate components to either corrosion or to other processes. The data indicate that it is not feasible to assign the component based solely on the capacitance. An inappropriate selection of measurement time or equilibrium time may result in part of the resistance associated with the corrosion process being left out or an additional resistance not controlling the rate of corrosion being included.
机译:本文报道了这些结果(如果用恒电流脉冲瞬态响应实验来确定与主动腐蚀混凝土中钢筋有关的腐蚀参数。已对嵌入氯化物污染的混凝土中许多短的100 mm钢筋截面进行了恒电流脉冲测量。施加恒电流脉冲的持续时间为90 s,测量点到测棒的横向距离从零到400 mm不等,对所有测得的测棒进行调理,使其以不同的速率活跃腐蚀。脉冲瞬态响应使构成被测瞬变的各个组件得以隔离和评估,这些组件显示出一定范围的电阻率和电容,具体取决于钢筋的腐蚀状况(可能归因于腐蚀过程),在混凝土覆盖层内部效果或成膜效果e混凝土表面。使用这种技术的其他研究人员已经通过对单独的腐蚀成分求和,即简单地对所有电阻值求和以获得总的腐蚀抗性,来评估腐蚀速率。但是,可能并非所有确定的电阻都与钢筋从钢筋表面的损失有关。已经观察到腐蚀速率的显着变化,这取决于将单独的部件分配给腐蚀或其他过程。数据表明,仅基于电容分配组件是不可行的。测量时间或平衡时间的选择不当可能会导致与腐蚀过程相关的部分电阻被遗漏,或者导致无法控制腐蚀速率的附加电阻。

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