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Corrosion mechanism and model of pulsed DC microarc oxidation treated AZ31 alloy in simulated body fluid

机译:脉冲直流微弧氧化处理AZ31合金在模拟体液中的腐蚀机理及模型

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This paper addresses the effect of pulse frequency on the corrosion behavior of microarc oxidation (MAO) coatings on AZ31 Mg alloys in simulated body fluid (SBF). The MAO coatings were deposited by a pulsed DC mode at four different pulse frequencies of 300 Hz, 500 Hz, 1000 Hz and 3000 Hz with a constant pulse ratio. Potentiodynamic polarization and electrochemical impedance spectroscopy (EIS) tests were used for corrosion rate and electrochemical impedance evaluation. The corroded surfaces were examined by X-ray diffraction (XRD), X-ray fluorescence (XRF) and optical microscopy. All the results exhibited that the corrosion resistance of MAO coating produced at 3000 Hz is superior among the four frequencies used. The XRD spectra showed that the corrosion products contain hydroxyapatite, brucite and quintinite. A model for corrosion mechanism and corrosion process of the MAO coating on AZ31 Mg alloy in the SBF is proposed.
机译:本文探讨了脉冲频率对AZ31镁合金在模拟体液(SBF)中的微弧氧化(MAO)涂层的腐蚀行为的影响。通过脉冲DC模式以恒定的脉冲比在300Hz,500Hz,1000Hz和3000Hz的四个不同脉冲频率下沉积MAO涂层。电位动力学极化和电化学阻抗谱(EIS)测试用于腐蚀速率和电化学阻抗评估。通过X射线衍射(XRD),X射线荧光(XRF)和光学显微镜检查腐蚀的表面。所有结果表明,在所使用的四个频率中,以3000 Hz产生的MAO涂层的耐蚀性均优越。 XRD谱图表明腐蚀产物中含有羟基磷灰石,水镁石和quintinite。提出了SBF中AZ31镁合金上MAO涂层的腐蚀机理和腐蚀过程模型。

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