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In-depth study of the influence of electrolyte composition on coatings prepared by plasma electrolytic oxidation of TA6V alloy

机译:通过对Ta6V合金等血浆电解氧化制备的电解质组合物对涂层涂层影响的深入研究

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Coatings were prepared on TA6V alloy by plasma electrolytic oxidation (PEO) using a standard electrical signal. Influence of electrolyte composition on coating characteristics was then extensively studied using four electrolytes of increasing complexity, containing KOH, Na2SiO3 and NaAlO2. The combination of SEM, GDOES, XRD characterizations on the one hand and of thermodynamic calculations on the other hand, deeply clarified coating compositions, showing in particular that they include both amorphous and crystalline phases. Amorphous phase resulted directly from the presence of silicate in solution, and was made of complex Si-based oxides difficult to clearly identify. Depending on electrolyte composition, crystalline phases in coatings included simple oxide (i.e. anatase and rutile TiO2) and/or mixed oxide (Al2TiO3), resulting from both substrate oxidation and deposition from electrolyte. Therefore, this study successfully offered an innovative approach, combining both experimental characterizations and thermodynamic calculations, to study and tune chemical characteristics of PEO coatings on TA6V.
机译:使用标准电信号通过等离子体电解氧化(PEO)对Ta6V合金制备涂层。然后使用含有KOH,NA2SIO3和NAALO2的含量增加的四个电解质进行电解质组合物对涂布特性对涂布特性的影响。另一方面,SEM,GDOE,XRD表征的组合和热力学计算均匀澄清的涂料组合物,特别是它们包括非晶态和结晶相。无定形相直接从溶液中存在硅酸盐,并且由难以清楚地识别的复杂的Si基氧化物制成。取决于电解质组合物,涂层中的结晶相包括简单的氧化物(即锐钛矿和金红石TiO 2)和/或混合氧化物(Al2TiO3),由底物氧化和沉积来自电解质。因此,该研究成功地提供了一种创新方法,结合了实验性格和热力学计算,研究了TA6V上PEO涂层的化学特性。

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