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Effect of Coloring by Anodizing on the Corrosion Behavior of Ti-6Al-4V Alloy

机译:Ti-6Al-4V合金腐蚀行为阳极氧化作用

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Coloring of an implant material is necessary to identify parts and type of the implant for clinical purposes. The coloring process involved anodizing, which might affect the corrosion resistance of the alloy. The effect of anodizing on the corrosion resistance of Ti-6Al-4V alloy was investigated by potentiodynamic polarization test in Ringer Lactate solution. The variation of color was obtained by varying the anodizing voltage 10, 20, and 30 V in 1 M KOH solution. The resulting color was gold, dark blue, and light blue for anodizing at 10, 20, and 30 V, respectively. Surface observation by optical microscope showed that the pore density of the anodic film increased with applied voltage. The cross-sectional FE-SEM images indicated that the film was thicker with increasing applied voltage. The film thickness was 198.6, 435.5, and 1199 nm for the film formed at 10, 20, and 30 V, respectively. The variation of interference color of the film was attributed to the alteration in pore density and film thickness. The presence of the anodic film enhanced the corrosion resistance of the alloy about an order of magnitude. The corrosion current density of the alloy decreased consecutively from 14.27 to 1.93, 0.73, and 0.43 μA/cm~2 after anodized at 10, 20, 30 V, respectively. The film served as a barrier layer between the metal and the solution. Therefore, the corrosion resistance increased with film thickness. Anodizing of Ti-6Al-4V provides the dual benefit of surface coloring and corrosion protection.
机译:植入物材料的着色是鉴定植入物的术语和类型的临床目的所必需的。着色过程涉及阳极氧化,这可能影响合金的耐腐蚀性。林乳液溶液中的电位显微偏振试验研究了阳极氧化对Ti-6Al-4V合金耐腐蚀性的影响。通过在1M KOH溶液中改变阳极氧化电压10,20和30V来获得颜色的变化。得到的颜色分别为金,深蓝色,浅蓝色,分别在10,20和30V下阳极氧化。光学显微镜表面观察表明,阳极膜的孔密度随施加的电压而增加。横截面Fe-SEM图像表明,随着施加电压的增加,薄膜较厚。膜厚度为198.6,435.5和1199nm,分别为在10,20和30V处形成的膜。膜的干涉颜色的变化归因于孔密度和膜厚度的变化。阳极膜的存在提高了合金的耐腐蚀性约级。在10,20,30V的阳极氧化后,合金的腐蚀电流密度从14.27至1.93,0.73和0.43μA/ cm〜2减少。将薄膜用作金属和溶液之间的阻挡层。因此,耐腐蚀性随膜厚度而增加。 TI-6AL-4V的阳极氧化可提供表面着色和耐腐蚀的双重效益。

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