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首页> 外文期刊>CERAMICS INTERNATIONAL >The effect of titanium bead diameter of porous titanium on the formation of micro-arc oxidized TiO_2-based coatings containing Si and Ca
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The effect of titanium bead diameter of porous titanium on the formation of micro-arc oxidized TiO_2-based coatings containing Si and Ca

机译:多孔钛的钛珠直径对含Si和Ca的微弧氧化TiO_2基涂层形成的影响

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摘要

Porous titanium was prepared by vacuum sintering titanium beads with diameters of 100, 200, 400 and 600 μm on titanium plate at temperature 1723 K for 2 h. Then TiO_2-based coatings containing Si, Ca, Na (SCN) elements were fabricated by micro-arc oxidation (MAO) on the porous titanium. The results showed that the surface morphology, SCN concentrations and x-ray diffraction intensity of titania of the MAO coatings were significantly affected by titanium beads diameter. With increasing titanium beads diameter, the porosity of porous titanium raised gradually in a range of 26.5%-35% and the specific surface area of porous titanium decreased gradually in a range of 45%-5% mm~(-1). The oxidizing ability is positive correlated with bead diameter as porosity but negative correlated with bead diameter as specific surface area. In this paper, the porosity and specific surface area are two key factors to influence the formation and microstructures of MAO coatings.
机译:通过在直径1723 K的钛板上真空烧结直径分别为100、200、400和600μm的钛珠2小时来制备多孔钛。然后通过微弧氧化(MAO)在多孔钛上制备了含有Si,Ca,Na(SCN)元素的TiO_2基涂层。结果表明,钛珠直径对MAO涂层的表面形貌,SCN浓度和二氧化钛的X射线衍射强度有显着影响。随着钛珠直径的增加,多孔钛的孔隙率在26.5%-35%的范围内逐渐升高,而多孔钛的比表面积在45%-5%mm〜(-1)的范围内逐渐降低。氧化能力与作为孔隙率的珠直径正相关,而与作为比表面积的珠直径负相关。本文中,孔隙率和比表面积是影响MAO涂层的形成和微观结构的两个关键因素。

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