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Bouncing Dynamics of Impact Droplets on the Biomimetic Plane and Convex Superhydrophobic Surfaces with Dual-Level and Three-Level Structures

机译:具有双层和三层结构的仿生平面和凸超疏水表面上冲击液滴的弹跳动力学

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摘要

Reducing the contact time of a water droplet on non-wetting surfaces has great potential in the areas of self-cleaning and anti-icing, and gradually develops into a hot issue in the field of wettability surfaces. However, the existing literature on dynamic behavior of water drops impacting on superhydrophobic surfaces with various structural shapes is insufficient. Inspired by the microstructure of lotus leaf and rice leaf, dual-level and three-level structures on plane and convex surfaces were successfully fabricated by wire electrical discharge machining on aluminum alloy. After spraying hydrophobic nanoparticles on the surfaces, the plane and convex surfaces with dual-level and three-level structures showed good superhydrophobic property. Bouncing dynamics of impact droplets on the superhydrophobic surfaces wereinvestigated, and the results indicated that the contact time of plane superhydrophobic surface with a three-level structure was minimal, which is 60.4% less than the plane superhydrophobic surface with dual-level structure. The effect of the interval , width , and height of the structure on the plane superhydrophobic surface with three-level structure on contact time was evaluated to obtain the best structural parameters for reducing contact time. This research is believed to guide the direction of the structural design of the droplet impinging on solid surfaces.
机译:减少水滴在非润湿表面上的接触时间在自清洁和防冰方面具有巨大的潜力,并逐渐发展成为在润湿性表面领域的热门问题。然而,关于水滴撞击具有各种结构形状的超疏水表面的动态行为的现有文献是不足的。受荷叶和稻叶的微观结构的启发,通过在铝合金上进行电火花加工,成功地在平面和凸面上形成了双层和三层结构。在表面喷涂疏水性纳米粒子后,具有双级和三级结构的平面和凸面均具有良好的超疏水性。研究了超疏水表面上冲击液滴的弹跳动力学,结果表明,三层结构的平面超疏水表面的接触时间最短,比双层结构的平面超疏水表面的接触时间短60.4%。评估了具有三层结构的平面超疏水表面上结构的间距,宽度和高度对接触时间的影响,以获得减少接触时间的最佳结构参数。相信该研究指导了液滴撞击固体表面的结构设计方向。

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