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The effects of cathodic and anodic voltages on the characteristics of porous nanocrystalline titania coatings fabricated by microarc oxidation

机译:阴极和阳极电压对微弧氧化制备纳米多孔二氧化钛涂层性能的影响

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摘要

Porous nanocrystalline titania films were prepared by microarc oxidation (MAO) of a titanium alloy keeping anodic voltage at 23 0-410 V and cathodic voltage at 20 V in a Na_2CO_3 and Na_2SiO_3 electrolytic solutions using an asymmetric pulse alternating current power supply. XRD, EDS and SEM were employed to characterize the phase, composition and microstructure of the films. It is found that the films consist of dominant rutile and little anatase phases. The phase, pore size and thickness of the coatings strongly depend on the applied voltage, consistent with the previous reports, and the cathodic voltage has an intense effect on the films' pitting corrosion performance in sodium chloride solution. The films prepared by keeping the anodic and cathodic voltages at 320 and 45 V, respectively, for 30 min were porous, with 200 nm to 4 (am pores and the pore walls composed of 100-300 nm rutile crystallites.
机译:在不对称脉冲交流电源下,在Na_2CO_3和Na_2SiO_3电解液中,通过将阳极电压保持在23 0-410 V,阴极电压保持在20 V的钛合金微弧氧化(MAO)制备多孔纳米晶二氧化钛薄膜。用XRD,EDS和SEM表征了薄膜的相,组成和微观结构。发现该膜由主要金红石相和几乎没有锐钛矿相组成。涂层的相,孔径和厚度在很大程度上取决于所施加的电压,与先前的报道一致,并且阴极电压对膜在氯化钠溶液中的点蚀性能具有强烈的影响。通过分别将阳极电压和阴极电压分别保持在320 V和45 V 30分钟而制得的膜是多孔的,具有200 nm至4(Am孔)和由100-300 nm金红石微晶组成的孔壁。

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