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电解液中钙磷组分对镁合金MAO生物陶瓷膜层特性的影响
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江苏高校优势学科建设工程资助项目 (苏政办[2011]6); 江苏省先进焊接技术重点实验室资助项目(JSAWT-11); 江苏省高校研究生科研创新计划资助项目(2014-1081)


Influence of the Ca- or P-containing Electrolyte Compositions on Properties of Micro-arc Oxidation Coatings Fabricated on Mg Alloy
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    摘要:

    采用恒流模式,通过单变量实验改变电解液中乙酸钙、六偏磷酸钠和磷酸二氢钠等钙磷组分的浓度,在AZ31镁合金表面制备微弧氧化生物陶瓷膜,观察分析膜层微观组织结构,测定膜层表面Ca/P比、耐蚀性等,探讨钙磷组分及其浓度对膜层组织和性能的影响,进而对电解液进行优化,并对优化后的膜层性能进行观察和分析。结果表明:乙酸钙、六偏磷酸钠、磷酸二氢钠对膜层Ca、P元素含量及Ca/P比值有决定作用;乙酸钙浓度越高,膜层厚度越小,但是均一性越好;六偏磷酸钠浓度对膜层表面形貌和厚度几乎无影响,其浓度越高,膜层中P元素含量越高;磷酸二氢钠浓度越高,Ca/P比值越小。电解液优化后,制备的膜层较为平整致密,表面均匀分布10.7 μm左右的微孔,但存在微裂纹;膜层主要由MgO、Mg和少量Ca2P2O7、SiO2等物相组成,使硬度和耐蚀性比镁合金基体有明显提高;膜层粗糙度Ra=0.45 μm,润湿角为42.65°,有利于细胞的附着与生长

    Abstract:

    Micro-arc oxidation was conducted on AZ31 Mg alloy under CC mode by single variable experiments to improve its corrosion resistance and bio-activity. The microstructure, Ca/P ratio and corrosion rate were studied to investigate the influence of the Ca- or P-containing compositions on the coating. Furthermore, the properties of the optimized coating were studied. The results reveal that Ca/P ratio depends on the concentration of Ca(Ac)2, (Na2PO3)6 and NaH2PO4. With the increase of Ca(Ac)2, the coating thickness decreases, but it becomes more uniform; while (Na2PO3)6 has little effects on surface morphology or coating thickness. The content of P increases with (Na2PO3)6. The more NaH2PO4, the bigger the pore size and the smaller Ca/P ratio. The optimized coating possesses a flat and compact surface covered by micropores with diameters of about 10.7 μm and there are microcracks. And the coating phases are mainly MgO, Mg and a small amount of Ca2P2O7 and SiO2, which make the coating harder and more resistant to corrosion. The coating roughness Ra is 0.4482 μm and the wetting angle is 42.65°, which are good for cells to adhere to and grow on.

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许 蕾,王泽鑫,杜翠玲,陈 静,芦 笙.电解液中钙磷组分对镁合金MAO生物陶瓷膜层特性的影响[J].稀有金属材料与工程,2015,44(10):2576~2582.[Xu Lei, Wang Zexin, Du Cuiling, Chen Jing, Lu Sheng. Influence of the Ca- or P-containing Electrolyte Compositions on Properties of Micro-arc Oxidation Coatings Fabricated on Mg Alloy[J]. Rare Metal Materials and Engineering,2015,44(10):2576~2582.]
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  • 收稿日期:2014-10-28
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  • 在线发布日期: 2016-07-13
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