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首页> 外文期刊>Surface & Coatings Technology >Morphology, composition and electrochemical properties of bioactive-TiO2/HA on CP-Ti and Ti6Al4V substrates fabricated by alkali treatment of hybrid plasma electrolytic oxidation process (estimation of porosity from EIS results)
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Morphology, composition and electrochemical properties of bioactive-TiO2/HA on CP-Ti and Ti6Al4V substrates fabricated by alkali treatment of hybrid plasma electrolytic oxidation process (estimation of porosity from EIS results)

机译:通过碱处理杂交等离子体电解氧化工艺制造的CP-Ti和Ti6Al4V基材的生物活性-TiO2 / HA的形态学,组成和电化学性能(EIS结果探测孔隙率)

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摘要

Ti6-Al-4V and pure titanium substrates were subjected to two-step plasma electrolytic oxidation (hybrid PEO coating) and alkali treatment. Electrochemical properties of the hybrid PEO coatings were studied in SBF solution and it was revealed that electrochemical behavior of the samples were correlated to discharge behavior of second step and its effect on compactness of first layer. If discharges are intensified corrosion performance of the existing layer deteriorates while lowering of discharge intensity of second step will result in modification of existing layer and hence improves corrosion performance. Electrochemical and microstructural tests were carried out after alkali treatment and it was found that after alkali-treatment the surface became nano-flaky, phase composition of oxide layer was not changed, and the chemical composition was slightly changed due to dissolution in NaOH solution. After 2 weeks of immersion, surface of samples were fully covered by HA. XPS and FTIR studies confirmed that hydroxyl groups were formed on the surface of oxide film which found to be responsible for enhanced bioactivity of the samples. Superior bioactivity of PEO oxide film on CP-Ti samples were correlated to presence of anatase and its lower point of zero charge, compared to rutile phase. It was also revealed that the surficial porosities favored formation of HA nuclei and hence improve bioactivity. A novel graphical method is developed for estimation of porosity of PEO oxide films, which helps to predict bioactivity behavior of oxide films. It was found that the area under graph of Nyquist admittance plot is inversely proportional to the porosity of HPEOs. It was revealed that the first peak at high-frequency range of electrolyte resistance corrected Bode-Phase plots can be considered as the upper limit of frequency for the proposed graphical method. The results of estimations of graphical method show good compatibility with image analysis method.
机译:将Ti6-Al-4V和纯钛基材进行两步等离子体电解氧化(杂交PEO涂层)和碱处理。在SBF溶液中研究了杂化PEO涂层的电化学性质,揭示了样品的电化学行为与第二步的排出行为及其对第一层紧凑性的影响相关。如果放电是强化的腐蚀性能,则现有层的劣化,同时降低第二步的放电强度将导致现有层的修改,从而提高腐蚀性能。在碱处理后进行电化学和微观结构试验,发现在碱处理后,表面变为纳米片,未改变氧化物层的相组成,由于NaOH溶液溶解,化学组成略有变化。浸泡2周后,样品表面被HA完全覆盖。 XPS和FTIR研究证实,在氧化物膜的表面上形成羟基,该氧化膜发现负责增强样品的生物活性。与金红石相比,CP-Ti样品上的PEO氧化物膜对CP-Ti样品的存在和其较低点的存在性。还透露,表层孔隙有利于HA核的形成,从而提高生物活性。开发了一种新颖的图形方法,用于估计PEO氧化膜的孔隙率,这有助于预测氧化膜的生物活性行为。结果发现,奈奎斯特导纳图下图的区域与HPEOS的孔隙率成反比。揭示了电解质电阻校正凸致型图的高频范围内的第一峰可以被认为是所提出的图形方法的频率的上限。图形方法估计结果表现出与图像分析方法的良好兼容性。

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