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In vitro corrosion and mineralization of novel Ti-Si-C alloy

机译:新型Ti-Si-C合金的体外腐蚀与矿化

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摘要

The in vitro electrochemical behaviour of a new titanium based α-alloy (Ti-0.5 wt% Si-0.65 wt% C), fabricated via casting and rapid cooling route, was determined using linear, Tafel, potentiodynamic polarization tests and electrochemical impedance spectroscopy (EIS), complemented with ex situ SEM-EDS analysis to evaluate the corrosion mechanism. The experimental results revealed that silicon and carbon, in addition to titanium, resulted in the enhancement of mechanical properties. The polarization tests confirmed that Ti-Si-C alloy possessed excellent corrosion resistance (a low corrosion current density of 0.033 μA cm~(-2)), comparable to cp Ti and better than Ti6Al4V in phosphate buffered saline (PBS). The mechanism of corrosion was identified as selective dissolution of titanium solid solution matrix. EIS studies indicated the formation of a stable, passive oxide film on the alloy. Further, in vitro bioactivity was evaluated using mineralization tests i.e. by immersing the pre-treated alloy in a concentrated simulated body fluid (10× SBF). Chemical and microstructural characterization of the mineral layer, formed during immersion, revealed the deposition of fine, porous micron-sized globules of a phase rich in calcium-phosphate (Ca-P). In summary, the bulk properties and excellent in vitro electrochemical and mineralization behaviour of the as-cast Ti-Si-C alloy reveal a high potential for its application as load bearing metallic implants.
机译:使用线性,Tafel,势动力极化测试和电化学阻抗谱法()通过铸造和快速冷却途径制备的新型钛基α合金(Ti-0.5 wt%Si-0.65 wt%C)的体外电化学行为( EIS),并辅以异位SEM-EDS分析来评估腐蚀机理。实验结果表明,除钛外,硅和碳还提高了机械性能。极化测试证实,Ti-Si-C合金具有优异的耐腐蚀性(0.033μAcm〜(-2)的低腐蚀电流密度),与cp Ti相当,并且在磷酸盐缓冲盐水(PBS)中优于Ti6Al4V。腐蚀的机理被确定为钛固溶体基质的选择性溶解。 EIS研究表明在合金上形成了稳定的钝化氧化膜。此外,使用矿化试验,即通过将预处理的合金浸入浓缩的模拟体液(10×SBF)中来评估体外生物活性。在浸没过程中形成的矿物层的化学和微观结构表征表明,沉积了富含磷酸钙(Ca-P)的细小,多孔的微米级小球。总而言之,铸态Ti-Si-C合金的整体性能以及出色的体外电化学和矿化性能显示出其作为承重金属植入物的巨大潜力。

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