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Shape Effect of Electrochemical Chloride Extraction in Structural Reinforced Concrete Elements Using a New Cement-Based Anodic System

机译:基于新型水泥基阳极体系的钢筋混凝土结构中电化学氯化物提取的形状效应

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摘要

This article shows the research carried out by the authors focused on how the shape of structural reinforced concrete elements treated with electrochemical chloride extraction can affect the efficiency of this process. Assuming the current use of different anode systems, the present study considers the comparison of results between conventional anodes based on Ti-RuO2 wire mesh and a cement-based anodic system such as a paste of graphite-cement. Reinforced concrete elements of a meter length were molded to serve as laboratory specimens, to closely represent authentic structural supports, with circular and rectangular sections. Results confirm almost equal performances for both types of anode systems when electrochemical chloride extraction is applied to isotropic structural elements. In the case of anisotropic ones, such as rectangular sections with no uniformly distributed rebar, differences in electrical flow density were detected during the treatment. Those differences were more extreme for Ti-RuO2 mesh anode system. This particular shape effect is evidenced by obtaining the efficiencies of electrochemical chloride extraction in different points of specimens.
机译:本文显示了作者进行的研究,重点在于用电化学氯化物萃取处理的结构钢筋混凝土元件的形状如何影响该过程的效率。假设当前使用不同的阳极系统,本研究考虑了基于Ti-RuO2丝网的常规阳极与基于水泥的阳极系统(如石墨水泥浆)之间的结果比较。一米长的钢筋混凝土构件被模制成实验室样本,以紧密地代表具有圆形和矩形截面的真实结构支撑。当将电化学氯化物萃取应用于各向同性结构元素时,结果证实了两种阳极系统的性能几乎相同。在各向异性的情况下,例如没有均匀分布的钢筋的矩形截面,在处理过程中会检测到电流密度的差异。对于Ti-RuO2网格阳极系统,这些差异更为极端。通过获得样品不同点的电化学氯化物萃取效率,可以证明这种特殊的形状效果。

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