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首页> 外文期刊>Surface & Coatings Technology >Fabrication of a hierarchical aluminum oxide surface with microanostructures via a single process and its application as a superhydrophobic surface: Simple sintering method with an aluminum microsized powder
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Fabrication of a hierarchical aluminum oxide surface with microanostructures via a single process and its application as a superhydrophobic surface: Simple sintering method with an aluminum microsized powder

机译:通过单一工艺制备具有微米/纳米结构的分层氧化铝表面并将其用作超疏水表面:使用铝微粉的简单烧结方法

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In this study, a hierarchical aluminum oxide surface with microanostructures was fabricated via a single pressureless sintering method. About 70-mu m-thickness pile of aluminum powder (i.e., sub-10-mu m) was laid on a sapphire substrate with an area of 10 x 10 mm(2), and the substrate was placed in the middle of the furnace. Using a working temperature of 900 degrees C, 1-, 2-, 4-, 6-, and 8-h sintering processes were performed. After this process, a plate with a micro-spherical shape similar to the initial morphology of the laid aluminum powder was formed via adhesion between the aluminum powders. In addition, needle-like nanorods were formed at the surface of the plate. Therefore, an aluminum oxide surface with hierarchical microanostructures was fabricated. In addition, a mechanism was proposed to explain the fabrication process. Several types of experiments with varying temperatures, atmospheres, purging times, and substrates were performed to confirm the proposed mechanism. Finally, with the aid of a simple hydrophobic surface treatment, a superhydrophobic surface with low hysteresis was fabricated. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,通过单一的无压烧结方法制造了具有微观/纳米结构的分层氧化铝表面。将约70微米厚的铝粉堆(即10微米以下)放在面积为10 x 10毫米的蓝宝石衬底上(2),并将该衬底放置在炉子的中间。使用900摄氏度的工作温度,进行了1、2、4、6和8小时的烧结过程。在该过程之后,通过铝粉之间的粘附形成具有类似于所铺设的铝粉的初始形态的微球形的板。另外,在板的表面形成针状的纳米棒。因此,制造了具有分级的微观/纳米结构的氧化铝表面。另外,提出了一种机制来解释制造过程。进行了几种类型的实验,这些实验在不同的温度,气氛,吹扫时间和基材下进行,以确认所提出的机理。最后,借助于简单的疏水性表面处理,制造了具有低滞后性的超疏水性表面。 (C)2015 Elsevier B.V.保留所有权利。

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