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Electrochemical corrosion of Ti6Al4V, Ti and AISI 316L SS after immersed in concentrated simulated body fluid

机译:浸入浓缩模拟体液后Ti6Al4V,Ti和AISI 316LSS的电化学腐蚀

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摘要

The biomimetic method is used to obtain hydroxyapatite (HAP) coatings on Ti6Al4V, Ti and AISI 316L SS substrates. These substrates with different pretreatment surface operations (HNO3, anodic polarization, base-acid) were immersed in concentrated simulated body fluids (SBF) for different days at physiologic conditions of 37A degrees C, initial pH of 7.4. Then the corrosion behaviours of substrates after immersion in concentrated SBF were examined by electrochemical methods in Ringer's and 0.9 wt% NaCl solutions at a temperature of 37A degrees C. Ions concentrations and pH analyses were carried out after incubation in concentrated SBF. After immersion in SBF for different days, the surface morphology remains almost unchanged and no apatite formation is observed. Corrosion currents of substrates increased after immersion. Ions concentrations and pH values were shown variability according to soaking time and pretreatment surface operations.
机译:仿生方法用于在Ti6Al4V,Ti和AISI 316L SS衬底上获得羟基磷灰石(HAP)涂层。 这些具有不同预处理表面操作(HNO3,阳极偏振,碱酸)的这些底物浸入浓缩的模拟体液(SBF)中,在37A℃的生理条件下不同的日子,初始pH为7.4。 然后通过在浓度为37A℃的温度的温度下,通过林格氏菌和0.9wt%NaCl溶液中的电化学方法检查底物浸没后的底物腐蚀行为。离子浓度和pH分析在浓浓浓度的SBF后进行。 在浸入SBF的不同日期后,表面形态仍然不变,并且没有观察到磷灰石形成。 浸泡后基质的腐蚀电流增加。 根据浸泡时间和预处理表面操作,显示离子浓度和pH值。

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