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首页> 外文期刊>Protection of Metals and Physical Chemistry of Surfaces >The effect of complexing agent on Ti alloy micro-arc oxidation(MAO) coatings in Ca-P electrolyte
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The effect of complexing agent on Ti alloy micro-arc oxidation(MAO) coatings in Ca-P electrolyte

机译:络合剂对Ca-P电解质中Ti合金微弧氧化(MAO)涂层的影响

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摘要

Three new microarc (MAO) ceramic coatings were fabricated in the Ca-P electrolyte with three eco-friendly easily degradable complexing agent GA, TEA and EDTMPS and compared to that fabricated with the current common agent EDTA-2Na. A 3-Dimensional video microscope and scanning electro microscope were utilized to observe surface and cross-sectional morphology; the statistics of the coating surface were measured by the image software Image J x 2.0. Compositions of elements and phases were detected by the energy-dispersive X-ray spectroscopy and X-ray diffraction, respectively; X-ray photoelectron spectroscopy was further applied to provide more information about the components of the four complexing agents for MAO coatings surfaces. The surface morphologies show difference, which is a result of different quantity of melting metal during the treatment. The EDS results indicate that the elements compositions of the four MAO ceramic coatings are similar. The phases show little difference which is a result of the crystal transformation of TiO2 in different physical characteristic electrolytes. The biocative tests of four complexing agent MAO coatings shows good bioactive performance. The surface morphology of MAO coatings could meet the demand of biological implanting. Corrosion resistance properties are improved effectively in simulated body fluid (SBF). The wetting angles are less than 90 degrees, which indicates better solid-liquid affinity. After 28 days of sedimentation experiments in SBF, the white substance-carboxyl apatite (HA) generate on the surface of the coatings. The biological activities of the four MAO coating samples are demonstrated.
机译:在Ca-P电解液中用三种环保易降解的络合剂GA,TEA和EDTMPS制备了三层新的微弧(MAO)陶瓷涂层,并与当前的普通EDTA-2Na进行了比较。利用三维视频显微镜和扫描电镜观察表面和截面形态。通过图像软件Image J x 2.0测量涂层表面的统计量。元素和相的组成分别通过能量色散X射线光谱和X射线衍射检测;进一步应用了X射线光电子能谱,以提供有关用于MAO涂层表面的四种络合剂成分的更多信息。表面形态显示出差异,这是由于在处理期间熔融金属量不同的结果。 EDS结果表明,四种MAO陶瓷涂层的元素组成相似。由于在不同的物理特性电解质中TiO2的晶体转变,这些相几乎没有差异。四种络合剂MAO涂料的生化测试显示出良好的生物活性。 MAO涂层的表面形貌可以满足生物植入的需求。在模拟体液(SBF)中有效改善了耐腐蚀性。润湿角小于90度,这表明更好的固液亲和力。在SBF中进行28天的沉积实验后,白色物质-羧基磷灰石(HA)在涂层表面生成。证明了四个MAO涂层样品的生物活性。

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