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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Influence of alternating, direct and superimposed alternating and direct current on the corrosion of mild steel in marine environments
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Influence of alternating, direct and superimposed alternating and direct current on the corrosion of mild steel in marine environments

机译:交流,直流和叠加交流与直流对海洋环境中低碳钢腐蚀的影响

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摘要

The corrosion of mild steel in marine environments was studied with respect to induced alternating current (AC), direct current (DC) and the superimposed AC+DC sources. Corrosion rate determination at the different applied AC, DC and AC+DC current densities was carried out by conventional weight loss method for the exposure period of 24 h. The quantitative estimation of leaching of iron into solution was done by using inductively coupled plasma spectrometry (ICP). Mild steel specimens were subjected to surface examinations after treatment with various AC, DC and AC+DC current densities. Surface analysis was done by optical microscopy. The salient features of this investigation are AC source accelerate the corrosion of mild steel in the presence of marine environments, but the extent of corrosion was increased when it was superimposed with DC. Especially, upto the corrosion current density, the AC field is not a great threat for mild steel and uniform corrosion was observed, But after the corrosion current density, AC accelerate the pitting corrosion of mild steel in marine media. Surface micrographs showed severe pitting at the higher AC sources. The concentration of iron was increased above the corrosion current density. The electrochemical measurements coupled with surface examination and solution analysis proved to be a very effective tool by means of characterizing the AC corrosion effect of mild steel in marine environments.
机译:针对感应交流电(AC),直流电(DC)和叠加的AC + DC电源,研究了海洋环境中低碳钢的腐蚀情况。通过常规的失重法在暴露时间为24 h的条件下,确定在不同AC,DC和AC + DC电流密度下的腐蚀速率。通过使用电感耦合等离子体光谱法(ICP)对铁浸出到溶液中进行定量估计。在用各种交流,直流和交流+直流电流密度处理后,对低碳钢样品进行表面检查。通过光学显微镜进行表面分析。这项研究的显着特征是交流电源在存在海洋环境的情况下加速了低碳钢的腐蚀,但是当与直流电叠加时,腐蚀的程度增加了。尤其是,在不超过腐蚀电流密度的情况下,交流电场对低碳钢的威胁不是很大,并且观察到均匀腐蚀,但是在腐蚀电流密度之后,交流电会加速低碳钢在海洋介质中的点蚀。表面显微照片显示在较高的交流电源下出现严重的点蚀。铁的浓度增加到高于腐蚀电流密度。通过表征海洋环境中低碳钢的交流腐蚀作用,电化学测量与表面检查和溶液分析相结合是一种非常有效的工具。

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