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首页> 外文期刊>Corrosion Engineering, Science and Technology >The Suppression of transformation of gamma-FeOOH to alpha-FeOOH accelerating the steel corrosion in simulated industrial atmospheric environment with a DC electric field interference
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The Suppression of transformation of gamma-FeOOH to alpha-FeOOH accelerating the steel corrosion in simulated industrial atmospheric environment with a DC electric field interference

机译:用直流电场干扰将伽马-FOOH转化为α-FeoH转换为模拟工业大气环境中的钢腐蚀

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摘要

The initial corrosion of steels exposed to the simulated industrial atmospheric environment with a direct current (DC) electric field for 30 days was investigated using weight loss, electrochemical and characterisation methods. The results show that the steel weight loss increased with the increase in DC electric field intensity. The steels exposed to the DC electric field interference exhibited a higher corrosion rate than the blank samples during the exposure. The microstructural studies reveal that the existence of the DC electric field favours the growth of the gamma-FeOOH, while suppresses the transformation of gamma-FeOOH into alpha-FeOOH during the 30 days' exposure, as a result of decreasing the protective ability and stable property of the rust layer. The amount of porous gamma-FeOOH enhances the transmission of oxygen and conductivity of the whole rust layer. All these induce an accelerated effect of DC electric field on the initial steel corrosion in simulated industrial environment.
机译:使用减肥,电化学和表征方法研究暴露于模拟工业大气环境的钢材的初始腐蚀。结果表明,随着直流电场强度的增加,钢重量损失增加。暴露于直流电场干扰的钢表现出比曝光期间的空白样本更高的腐蚀速率。微观结构研究表明,DC电场的存在涉及γ-FeOOH的生长,同时抑制在30天暴露过程中γ-FeOOH转化为α-FeO​​h,导致降低保护能力和稳定性铁锈层的财产。多孔γ-FeOOH的量增强了整个防锈层的氧气和电导率的传递。所有这些诱导直流电场对模拟产业环境初始钢腐蚀的加速效果。

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