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3D-Printed Surface Architecture Enhancing Superhydrophobicity and Viscous Droplet Repellency

机译:3D印刷表面建筑,增强超疏水性和粘性液滴驱虫

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Macrotextured superhydrophobic surfaces can reduce droplet-substrate contact times of impacting water droplets; however, surface designs with similar performance for significantly more viscous liquids are missing, despite their importance in nature and technology such as for chemical shielding, food-staining repellency, and supercooled (viscous) water droplet removal in anti-icing applications. Here, we introduce a deterministic, controllable, and upscalable method to fabricate superhydrophobic surfaces with a 3D-printed architecture, combining arrays of alternating surface protrusions and indentations. We show a more than threefold contact time reduction of impacting viscous droplets up to a fluid viscosity of 3.7 mPa.s, which equals 3.7 times the viscosity of water at room temperature, covering the viscosity of many chemicals and supercooled water. On the basis of the combined consideration of the fluid flow within and the simultaneous droplet dynamics above the texture, we recommend future pathways to rationally architecture such surfaces, all realizable with the methodology presented here.
机译:宏观纹理的超疏水表面可以减少冲击水滴的液滴 - 基板接触时间;然而,尽管其在性质和技术方面重要性,但缺少具有相似性能的表面设计,例如用于化学屏蔽,食品染色排斥性和过冷(粘性)水滴去除防冰应用中的粘性应用。这里,我们介绍一种具有3D印刷架构的超疏水表面的确定性,可控和上升的方法,将交替表面突起和凹口的阵列组合。我们展示了粘性粘性液体的三倍以上的接触时间减小了3.7MPa的液体粘度,其等于室温下水粘度的3.7倍,覆盖了许多化学品和过冷水的粘度。在基于纹理上方的流体流动和同时液滴动力学的综合考虑,我们建议将来的途径合理建立这种表面,所有这些都可实现与此处呈现的方法。

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