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Development of Superhydrophilic 6061 Aluminum Alloy by Stepwise Anodization According to Pore-Widening Time

机译:根据孔径阳极阳极阳极阳极阳极氧化,通过逐步阳极阳极阳性开发超硫酸6061铝合金

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摘要

This study created alumina structures with the highest hydrophilic properties on 6061 aluminum alloy. The anodization process was applied to make various aluminum oxide structures. To create uniform alumina structures on top of a 6061 aluminum alloy surface, after conducting the first anodization in 0.3 M oxalic acid at 40 V at 0 °C, the alumina was removed using a mixture of chromic acid and phosphoric acid. Then, secondary and tertiary anodization was performed using the same electrolyte conditions as the primary anodization for 30 minutes at 40 V, respectively. Pore-widening (PW) of oxide film formed after the secondary anodic oxidation was performed for 20, 30, and 40 minutes in 0.1 M phosphoric acid solution. The PW time control allowed various oxide structures to be created, and reduced the area of the outermost surface in contact with water droplets. The smaller the initial area of water droplets, the better the hydrophilic phenomenon. The surface area can be represented as a sohd fractional value. Surfaces with solid fraction values of less than or equal to 0.5 were superhydrophilic. This well-controlled anodization process with a pore-widening step can be used to create excellent superhydrophilicity on various metallic substrates, expanding their usefulness and efficacy.
机译:该研究在6061铝合金上产生了具有最高亲水性的氧化铝结构。施加阳极氧化过程以制备各种氧化铝结构。在6061铝合金表面上产生均匀的氧化铝结构,在0℃下在40V下在0.3M草酸中进行第一个阳极氧化,使用铬酸和磷酸的混合物除去氧化铝。然后,使用与初级阳极氧化相同的电解质条件分别在40V下以30分钟进行次级和三级阳极氧化。在次级阳极氧化后形成的氧化物膜的孔加宽(PW)在0.1M磷酸溶液中进行20,30和40分钟。 PW时间控制允许产生各种氧化物结构,并减少与水滴接触的最外表面的面积。初始水滴的初始区域越小,亲水现象越好。表面积可以表示为SOHD小数值。具有小于或等于0.5的固体级分值的表面是过性的。这种具有孔隙加宽步骤的良好控制的阳极氧化过程可用于在各种金属基材上产生优异的超级性激性,扩大其有用性和功效。

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