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首页> 外文期刊>International journal of corrosion >Study on the Electrochemical Performance of Sacrificial Anode Interfered by Alternating Current Voltage
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Study on the Electrochemical Performance of Sacrificial Anode Interfered by Alternating Current Voltage

机译:交流电压干扰牺牲阳极的电化学性能研究

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The effect of alternating current (AC) voltage of 0V, 1V, 3V, and 5V on magnesium alloy sacrificial anode electrochemical properties was studied by open circuit potential (OCP) analysis, electrochemical impedance spectroscopy (EIS), and polarization curve measurements. The results demonstrate that the AC voltage has a great effect on the magnesium alloy sacrificial anode. The corrosion control is anode control in the first two days with no AC interference. The stray current accelerates the transmission and diffusion of oxygen, so the corrosion rate under AC interference is higher than that with no AC interference. And the corrosion control becomes cathodic control under AC interference. The corrosion rate of the sacrificial anode is faster and faster as the AC interference voltage increases in the range of 0~5V, while the corrosion inclination is weakened.
机译:通过开路电势(OCP)分析,电化学阻抗谱(EIS)和极化曲线测量研究了0V,1V,3V和5V交流电压对镁合金牺牲阳极电化学性能的影响。结果表明,交流电压对镁合金牺牲阳极有很大的影响。腐蚀控制在开始的两天内是阳极控制,没有交流干扰。杂散电流会加速氧气的传输和扩散,因此交流干扰下的腐蚀速率高于无交流干扰下的腐蚀速率。并且腐蚀控制成为交流干扰下的阴极控制。当交流干扰电压在0〜5V范围内增加时,牺牲阳极的腐蚀速率越来越快,腐蚀倾向减小。

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