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Corrosion of steel embedded in mortar and concrete under different electrolytic accelerated corrosion methods

机译:不同电解加速腐蚀方法对砂浆和混凝土中钢的腐蚀

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摘要

An efficient accelerated corrosion test method is the foundation for experimental investigation of corrosion behaviors of reinforcing steel embedded in mortar and concrete. In this work, the electrochemical mechanisms of four typical electrolytic accelerated corrosion methods (EACMs) currently adopted by numerous researchers are analyzed and compared, including embedded auxiliary electrode method, soaking method, part soaking method, and surface coating method. Based on the electrochemical mechanism, a numerical model for predicting the distribution of rust layers around steel rebar under EACMs is established. The parameters influencing the electrolytic accelerated corrosion (e.g. position of electrodes for embedded auxiliary electrode method, the electrolyte solution level for other methods) are investigated. It is concluded that the distribution profiles of rust layer vary with the EACMs adopted; by controlling and optimizing the critical parameters of EACMs, non-uniform distribution pattern of rust around rebar that is similar to that by natural corrosion can be induced in a short time. (C) 2020 Elsevier Ltd. All rights reserved.
机译:一种有效的加速腐蚀试验方法是实验研究埋在砂浆和混凝土中的钢筋腐蚀行为的基础。在这项工作中,分析和比较了许多研究人员当前采用的四种典型的电解加速腐蚀方法(EACM)的电化学机理,包括嵌入式辅助电极法,浸泡法,部分浸泡法和表面涂层法。基于电化学机理,建立了预测EACMs下钢筋周围锈层分布的数值模型。研究了影响电解加速腐蚀的参数(例如嵌入式辅助电极方法的电极位置,其他方法的电解质溶液液位)。得出的结论是,锈层的分布轮廓随采用的EACM的不同而不同。通过控制和优化EACM的关键参数,可以在短时间内引起钢筋周围锈蚀与自然腐蚀相似的不均匀分布模式。 (C)2020 Elsevier Ltd.保留所有权利。

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