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Bio-corrosion of PEO-modified titanium and magnesium alloys

机译:PEO改性钛和镁合金的生物腐蚀

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The present work reports the characteristics of Ca- and P-enriched PEO coatings in the thickness range of 5-100 μm generated on titanium of commercial grades (I and V) and on Mg alloys (Mg 99.99%, AM50 and Mg0.8Ca) and their corrosion resistance in simulated body fluid (SBF) at 37oC. The corrosion mechanism of the coated systems was investigated by DC polarization and electrochemical impedance (EIS). Additionally, metal ion release from Ti/PEO systems was evaluated by ICP-MS and hydrogen evolution rate was determined for Mg/PEO systems during in vitro immersion. The protective mechanism of PEO coatings on Ti and Mg alloys is determined by the resistance of their innermost dense layer adjacent to the substrate; diffusion resistance of the porous part of the coatings has significant contribution. PEO coatings on Mg alloys dramatically reduced the H2 evolution rate compared with untreated materials (10-15 mL cm~(-2) week~(-1)) even though an increasing tendency of H_2 generation (from <0.2 mL cm~(-2) week~(-1) to 2 mL cm~(-2) week~(-1)) was observed over 2 month immersion period. PEO coatings on Ti alloys reduced the Ti~(4+) liberation by 5 times compared with non-coated substrates over the period of 1 month. However, the liberation of Al~(3+) and V~(5+) were higher from PEO coated Ti grade V than from non-coated alloy. The coating itself, that incorporated the substrate elements, was found to be the main source of these ions. This indicates the necessity of further improvement of the PEO coating engineering for Ti alloys that contain potentially toxic elements.
机译:本工作报告了在商用级钛(I和V)和镁合金(Mg 99.99%,AM50和Mg0.8Ca)上生成的5-100μm厚度范围内的富含Ca和P的PEO涂层的特性。以及它们在37oC下对模拟体液(SBF)的耐腐蚀性。通过直流极化和电化学阻抗(EIS)研究了涂层体系的腐蚀机理。此外,通过ICP-MS对Ti / PEO系统中金属离子的释放进行了评估,并确定了Mg / PEO系统在体外浸泡过程中的析氢速率。 TiO和Mg合金上的PEO涂层的保护机制取决于其与基材相邻的最内层致密层的电阻。涂层的多孔部分的抗扩散性具有显着的贡献。镁合金上的PEO涂层与未经处理的材料(10-15 mL cm〜(-2)周〜(-1))相比,显着降低了H2的释放速率,尽管H_2生成的趋势有所增加(从<0.2 mL cm〜(-) 2)浸入期超过2个月(-1)到2 mL cm〜(-2)周〜(-1))。在1个月的时间内,与未涂覆的基底相比,在Ti合金上的PEO涂层将Ti〜(4+)的释放减少了5倍。然而,PEO涂层的Ti级V的Al〜(3+)和V〜(5+)的释放高于未涂层的合金。发现结合了基质元素的涂层本身是这些离子的主要来源。这表明有必要进一步改善含潜在毒性元素的Ti合金的PEO涂层技术。

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