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首页> 外文期刊>Applied Surface Science >Pulse electrodeposition of adherent nickel coatings onto anodized aluminium surfaces
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Pulse electrodeposition of adherent nickel coatings onto anodized aluminium surfaces

机译:将附着的镍涂层脉冲电沉积到阳极氧化铝表面上

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摘要

Aluminium is one of the mostly used elements in the industry because of its abundance and low weight. However, the deposition of a metallic coating requires performing the so-called zincate pre-treatment in order to allow the formation of inter-metallic bonds and thereby achieving sufficient adherence. In this work, porous anodic aluminium oxide (AAO) is used as an anchoring intermediate layer for nickel coatings. AAO is grown anodically in sulfuric acid and nickel coatings are deposited by potentiostatic reverse pulse electrodeposition onto as-anodized aluminium surfaces. The electrodeposition of nickel is initiated onto the electrochemically thinned barrier layer of AAO and pursued until the complete covering of the oxide. The electrochemical behavior of Watts and sulfamate baths is investigated by cyclic voltammetry for different barrier layer thickness, allowing to validate the thinning conditions and to determine the appropriate deposition potential of nickel. GD-OES measurements show that low duty cycles are necessary to achieve high filling ratio of the AAO. SEM micrographs show that a smooth uniform coating is obtained when nickel is deposited in presence of additives. (C) 2014 Elsevier B.V. All rights reserved.
机译:铝由于其丰富且重量轻而成为该行业中最常用的元素之一。然而,金属涂层的沉积需要进行所谓的锌酸盐预处理,以便允许金属间键的形成并由此获得足够的粘附力。在这项工作中,多孔阳极氧化铝(AAO)被用作镍涂层的固定中间层。 AAO在硫酸中阳极生长,并且通过恒电位反向脉冲电沉积将镍涂层沉积到阳极氧化铝表面上。镍的电沉积被引发到AAO的电化学减薄的阻挡层上,并一直持续到氧化物被完全覆盖为止。通过循环伏安法研究了不同阻挡层厚度的瓦茨和氨基磺酸盐浴的电化学行为,从而可以验证减薄条件并确定合适的镍沉积电位。 GD-OES测量表明,低占空比是实现AAO高填充率所必需的。 SEM显微照片表明,当在添加剂存在下沉积镍时,可获得光滑均匀的涂层。 (C)2014 Elsevier B.V.保留所有权利。

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