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Fabrication of Porous Anodic Alumina Using Normal Anodization and Pulse Anodization

机译:采用正常阳极氧化和脉冲阳极氧化的多孔阳极氧化铝的制造

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This article reports on the fabrication of porous anodic alumina (PAA) by two-step anodizing the low purity commercial aluminum sheets at room temperature. Different variations of the second-step anodization were conducted: normal anodization (NA) with direct current potential difference; pulse anodization (PA) alternate between potential differences of 10 V and 0 V; hybrid pulse anodization (HPA) alternate between potential differences of 10 V and -2 V. The method influenced the film homogeneity of the PAA and the most homogeneous structure was obtained via PA. The morphological properties are further elucidated using measured current-transient profiles. The absent of current rise profile in PA indicates the anodization temperature and dissolution of the PAA structure were greatly reduced by alternating potential differences.
机译:本文通过在室温下通过两步阳极氧化低纯度商业铝板制备多孔阳极氧化铝(PAA)的制备。进行了第二步阳极化的不同变化:具有直流电位差的正常阳极氧化(NA);脉冲阳极化(PA)在10 V和0 V的潜在差异之间交替;杂化脉冲阳极氧化(HPA)在10V和-2V的电位差之间交替。该方法影响PAA的膜均匀性,并且通过PA获得最均匀的结构。使用测量的电流瞬态曲线进一步阐明形态学性质。 PA中的当前上升轮廓的不存在表示通过交替潜在的差异大大降低了PAA结构的阳极氧化温度和Paa结构的溶解。

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