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Anti-corrosion performance of a new silane coating for corrosion protection of AZ31 magnesium alloy in Hank's solution

机译:在Hank's溶液中用于保护AZ31镁合金的新型硅烷涂层的防腐性能

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摘要

Mg alloys can be used as bioresorsable metallic implants. However, the high corrosion rate of magnesium alloys has limited their biomedical applications. Although Mg ions are essential to the human body, an excess may cause undesirable health effects. Therefore, surface treatments are required to enhance the corrosion resistance of magnesium parts, decreasing its rate to biocompatible levels and allowing its safe application as bioresorbable metallic implants. The application of biocompatible silane coatings is envisaged as a suitable strategy for retarding the corrosion process of magnesium alloys. In the current work, a new glycidoxypropyltrimethoxysilane (GPTMS) based coating was tested on AZ31 magnesium substrates subjected to different surface conditioning procedures before coating deposition. The surface conditioning included a short etching with hydrofluoric acid (HF) or a dc polarisation in alkaline electrolyte. The silane coated samples were immersed in Hank's solution and the protective performance of the coating was studied through electrochemical impedance spectroscopy (EIS). The EIS data was treated by new equivalent circuit models and the results revealed that the surface conditioning process plays a key role in the effectiveness of the silane coating. The HF treated samples led to the highest impedance values and delayed the coating degradation, compared to the mechanically polished samples or to those submitted to dc polarisation.
机译:镁合金可用作可生物还原的金属植入物。但是,镁合金的高腐蚀速率限制了其生物医学应用。尽管镁离子对人体至关重要,但过量镁离子可能会导致不良的健康影响。因此,需要进行表面处理以增强镁零件的耐腐蚀性,将其速率降低至生物相容水平,并使其能够安全地用作可生物吸收的金属植入物。设想将生物相容性硅烷涂层的应用作为延迟镁合金腐蚀过程的合适策略。在当前的工作中,在涂层沉积之前,在经过不同表面处理程序的AZ31镁基底上测试了一种新的基于环氧丙氧基丙基三甲氧基硅烷(GPTMS)的涂层。表面处理包括在碱性电解液中用氢氟酸(HF)或dc极化进行短刻蚀。将涂有硅烷的样品浸入Hank溶液中,并通过电化学阻抗谱(EIS)研究了涂层的保护性能。用新的等效电路模型处理EIS数据,结果表明表面调节过程对硅烷涂层的有效性起关键作用。与机械抛光的样品或经受直流极化的样品相比,经过HF处理的样品具有最高的阻抗值并延迟了涂层的降解。

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