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Application of the Restricting Flow of Solid Edges in Fabricating Superhydrophobic Surfaces

机译:固体边缘限制流在超疏水表面制备中的应用

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In this article, a simple method of pressing a conical frustum into liquid was adopted to explore the ability to restrict flow around their edges. On the basis of experiments and theoretical analyses, the restricting force Delta f and the pressing work Delta E-w were used to characterize the ability to restrict flow around the edge for water or formamide, which were found to be closely related to the geometric morphologies of edges and the liquid and material characteristics. The ability to restrict flow around the edge may be enhanced by increasing the rise angle omega and the size of edge circles and using a high-surface-energy liquid. Inspired by this, the superhydrophobicity of the materials with lower hydrophobicity has been successfully obtained by constructing close microedges on their flat surfaces. We believe that these findings would help to widen several novel applications to high-adhesion superhydrophobic surfaces.
机译:在本文中,采用了一种简单的方法将圆锥形截头圆锥体压入液体中,以探索限制其边缘流动的能力。在实验和理论分析的基础上,利用限制力Δf和压制功ΔEw表征了水或甲酰胺对边缘流动的限制能力,这与边缘的几何形态密切相关。以及液体和材料特性。通过增加上升角ω和边缘圆的大小并使用高表面能液体,可以增强限制边缘流动的能力。受此启发,具有较低疏水性的材料的超疏水性已通过在其平坦表面上构建紧密的微边缘而成功获得。我们相信这些发现将有助于拓宽对高粘附力超疏水表面的几种新颖应用。

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