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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Control of degradation rate of Mg alloys using silica sol-gel coatings for biodegradable implant materials
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Control of degradation rate of Mg alloys using silica sol-gel coatings for biodegradable implant materials

机译:使用二氧化硅溶胶 - 凝胶涂层对可生物降解的植入物材料的降解速率的控制

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摘要

Silica sol-gel coatings were deposited on AZ31B and AZ91D magnesium substrates with the aim of controlling the degradation rate, corrosion attack and further dissolution of magnesium alloys for temporal implants. Two different silica sols were prepared with and without colloidal silica particles (MTL and TG sols) and deposited by dip-coating on both alloys. The coatings were characterised in SBF using three different in vitro tests; hydrogen evolution, pH variation and potentiodynamic polarization curves. The results show that the corrosion behaviour depends on the alloy and on the coating composition. Coatings on AZ91D-MTL were able to block the degradation of the alloy during 8 days of immersion in SBF, whereas coatings AZ91D-TG only maintain their stability during 3 days. Mg(OH)(2) and hydroxyapatite (HAp) were identified as the compounds precipitated on AZ31B samples, not appearing on AZ91D samples. The electrochemical tests confirm the promising corrosion results obtained for coated AZ91D samples.
机译:硅胶溶胶涂层沉积在AZ31B和AZ91D镁基板上,目的是控制降解速率,腐蚀攻击和镁合金的进一步溶解时间植入物。用胶体二氧化硅颗粒(MT1和Tg溶胶)制备两种不同的二氧化硅溶胶,并通过两种合金上的浸涂沉积。使用三种不同的体外测试在SBF中表征涂层;氢气进化,pH变异和电位动力学偏振曲线。结果表明,腐蚀行为取决于合金和涂料组合物。 AZ91D-MT1上的涂层能够在SBF浸没8天内阻断合金的降解,而涂层AZ91D-TG仅在3天内保持其稳定性。将Mg(OH)(2)和羟基磷灰石(HAP)鉴定为在AZ31B样品上沉淀的化合物,未出现在AZ91D样品上。电化学试验确认了涂覆的AZ91D样品获得的有希望的腐蚀结果。

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