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Electrophoretic deposition of bioactive glass nanopowders on magnesium based alloy for biomedical applications

机译:在镁基合金上电泳沉积生物活性玻璃纳米粉体,用于生物医学应用

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摘要

To slow down the initial biodegradation rate of magnesium (Mg) alloy, crystalline nano-sized bioactive glass coating was used to deposit on micro-arc oxidized AZ91 samples via elcctrophoretic deposition (EPD). Zcta potential and conductivity of the bioactivc glass suspension were characterized at various pH values to identify the most stable dispersion conditions. The bone-bonding properties of bioactive glass coated samples were evaluated in terms of apatite-forming ability during the immersion in simulated body fluid (SBF) solution. Results revealed that the ability to form a bioactive glass coating via EPD was influenced by the degree of its crystalline phase composition. Moreover, the potentiodynamic polarization tests recorded significant drops in corrosion current density and corrosion rate of the coated samples which implies a good level of corrosion protective behavior. These preliminary results show that this process will enable the development of Mg implants in the later stage of bone healing.
机译:为了减慢镁(Mg)合金的初始生物降解速度,使用结晶纳米级生物活性玻璃涂层通过电泳沉积(EPD)沉积在微弧氧化的AZ91样品上。在各种pH值下对生物活性玻璃悬浮液的Zcta电位和电导率进行了表征,以确定最稳定的分散条件。根据浸入模拟体液(SBF)溶液中磷灰石的形成能力,评估了生物活性玻璃涂层样品的骨结合性能。结果表明,通过EPD形成生物活性玻璃涂层的能力受其结晶相组成程度的影响。此外,电位动力学极化试验记录了涂覆样品的腐蚀电流密度和腐蚀速率显着下降,这表明腐蚀防护行为具有良好水平。这些初步结果表明,该过程将使Mg植入物在骨骼愈合的后期得以发展。

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