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Study on corrosion behavior of nano-structured coatings developed on biodegradable as cast Mg-Zn-Ca alloy by plasma electrolyte oxidation

机译:等离子电解质氧化在生物降解铸造Mg-Zn-Ca合金中产生的纳米结构涂层腐蚀行为研究

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摘要

Despite some potentially desired properties of magnesium alloys for biomedical application, their utilizations are usually extremely restricted due to their low corrosion resistance. Therefore, the objective of this study was to apply a modified coating on a cast Mg-Zn-Ca alloy through plasma electrolytic oxidation process. This process was conducted under constant pulsed DC current conditions in a phosphate-based electrolyte and their corrosion properties were compared with the substrate. Surface characterizations and corrosion behavior by electrochemical impedance spectroscopy and potentiodynamic polarization tests in PBS solution was investigated and the results were compared with the substrate. The Kramers-Kronig relations were used to evaluate the quality of the EIS data. The nano-structured coating showed a pancake shape structure with an average pores size of 0.7 m which uniformly covered the 8% of the coating area. The coating microstructure was consisted of Slayers with complex impedance spectrum involved three times constant. Corrosion resistance of PEO coated sample was increased by about two orders of magnitude. Corrosion rate measurements demonstrated the occurrence of steeply fast corrosion reaction on Mg alloy. An increase of corrosion rate with immersion time was also observed for coated sample but with lesser extent.
机译:尽管对生物医学应用的镁合金有一些可能的含量性能,但由于其低耐腐蚀性,它们的利用通常极其限制。因此,本研究的目的是通过等离子体电解氧化方法在铸造Mg-Zn-Ca合金上施加改性涂层。该方法在恒定的脉冲直流电流条件下进行,在磷酸基电解质中,与基材进行比较它们的腐蚀性。研究了PBS溶液中电化学阻抗光谱和电位动力学测试的表面特征和腐蚀行为,并将结果与​​基材进行了比较。 Kramers-Kronig关系用于评估EIS数据的质量。纳米结构涂层显示煎饼形状结构,平均孔径为0.7μm,均匀覆盖涂布区域的8%。涂层微观结构由具有复杂阻抗光谱的杀剂组成,涉及三次恒定。 PEO涂覆样品的耐腐蚀性增加约两个数量级。腐蚀速率测量表明,Mg合金对急剧快速腐蚀反应的发生。对于涂覆的样品,也观察到浸渍时间的腐蚀速率的增加,但程度较小。

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