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Corrosion Resistance and Apatite-Forming Ability of Composite Coatings formed on Mg–Al–Zn–Ca Alloys

机译:Mg-Al-Zn-Ca合金复合涂层的耐蚀性和磷灰石形成能力

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摘要

The properties of composite coatings formed by plasma electrolytic oxidation (PEO) were affected by the alloy composition. The corrosion resistance and apatite-forming ability of PEO coatings formed on Mg–6Al–1Zn–xCa alloys with a variation of Ca content were investigated. Potentiodynamic polarization and electrochemical impedance spectroscopy (EIS) measurements showed an order magnitude improvement of corrosion resistance in the AZ61 alloy as a result of the coating. A higher enhancement in polarization resistance was obtained in the Mg–6Al–1Zn–1Ca and Mg–6Al–1Zn–2Ca alloys due to thicker coatings were formed as a result of the incorporation of calcium oxide/hydroxide. However, the underlying substrates were more prone to localized corrosion with increasing Ca content. The microstructure investigation revealed an enlargement in precipitates (Al2Ca, Mg2Ca) sizes with increasing Ca content in the alloys. The growth of larger size precipitates increased the danger to micro galvanic corrosion. Apatite layers were formed on all of the coatings indicating high apatite-forming ability, but the layers formed on the Mg–6Al–1Zn–1Ca and Mg–6Al–1Zn–2Ca alloys contained higher Mg, possibly due to the accumulation of corrosion product, than that on the Mg–6Al–1Zn alloy. The alloying element Ca should be limited to 1 wt.% as the excess tended to degrade the corrosion resistance and apatite-forming ability of the PEO coating.
机译:通过等离子电解氧化(PEO)形成的复合涂层的性能受合金成分的影响。研究了在Ca含量变化的Mg-6Al-1Zn-xCa合金上形成的PEO涂层的耐蚀性和形成磷灰石的能力。电位动力学极化和电化学阻抗谱(EIS)测量表明,由于涂层的存在,AZ61合金的耐腐蚀性提高了一个数量级。在Mg-6Al-1Zn-1Ca和Mg-6Al-1Zn-2Ca合金中,由于结合了氧化钙/氢氧化物而形成了较厚的涂层,因此其极化电阻得到了更高的增强。但是,随着Ca含量的增加,下面的基材更容易发生局部腐蚀。显微组织研究表明,随着合金中Ca含量的增加,析出物(Al2Ca,Mg2Ca)的尺寸增大。较大尺寸沉淀物的生长增加了微电腐蚀的危险。在所有涂层上均形成了磷灰石层,表明具有较高的磷灰石形成能力,但在Mg-6Al-1Zn-1Ca和Mg-6Al-1Zn-2Ca合金上形成的层中Mg较高,这可能是由于腐蚀产物的积累,比在Mg-6Al-1Zn合金上要高。合金元素Ca应限制为1wt。%,因为过量的Ca趋于降低PEO涂层的耐腐蚀性和形成磷灰石的能力。

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