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The influence of surface roughness and high pressure torsion on the growth of anodic titania nanotubes on pure titanium

机译:表面粗糙度和高压扭转对纯钛阳极二氧化钛纳米管生长的影响

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摘要

Anodic titanium dioxide nanotube (TNT) arrays have wide applications in photocatalytic, catalysis, electronics, solar cells and biomedical implants. When TNT coatings are combined with severe plastic deformation (SPD), metal processing techniques which efficiently improve the strength of metals, a new generation of biomedical implant is made possible with both improved bulk and surface properties. This work investigated the effect of processing by high pressure torsion (HPT) and different mechanical preparations on the substrate and subsequently on the morphology of TNT layers. HPT processing was applied to refine the grain size of commercially pure titanium samples and substantially improved their strength and hardness. Subsequent anodization at 30V in 0.25 wt.% NH4F for 2 h to form TNT layers on sample surfaces prepared with different mechanical preparation methods was carried out. It appeared that the local roughness of the titanium surface on a microscopic level affected the TNT morphology more than the macroscopic surface roughness. For HPT-processed sample, the substrate has to be pretreated by a mechanical preparation finer than 4000 grit for HPT to have a significant influence on TNTs. During the formation of TNT layers the oxide dissolution rate was increased for the ultrafine-grained microstructure formed due to HPT processing. Crown Copyright (C) 2016 Published by Elsevier B.V. All rights reserved.
机译:阳极二氧化钛纳米管(TNT)阵列在光催化,催化,电子,太阳能电池和生物医学植入物中具有广泛的应用。当TNT涂层与严重的塑性变形(SPD),有效提高金属强度的金属加工技术结合使用时,新一代的生物医学植入物将成为可能,同时具有改善的体积和表面性能。这项工作研究了高压扭转(HPT)和不同的机械制备方法对基材以及随后对TNT层形态的影响。 HPT加工用于精炼商业纯钛样品的晶粒尺寸,并显着提高了其强度和硬度。随后在0.25 wt。%NH4F中于30V进行阳极氧化2小时,以在用不同机械制备方法制备的样品表面上形成TNT层。看来,在微观水平上钛表面的局部粗糙度比宏观表面粗糙度对TNT形态的影响更大。对于HPT处理过的样品,必须使用比4000粒度细的机械制备物对HPT进行预处理,以对TNT产生重大影响。在TNT层的形成过程中,由于HPT处理而形成的超细晶粒组织的氧化物溶解速率增加。官方版权(C)2016,由Elsevier B.V.保留所有权利。

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