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Pancake bouncing on superhydrophobic surfaces

机译:煎饼在超疏水表面上弹跳

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摘要

Engineering surfaces that promote rapid drop detachment, is of importance to a wide range of applications including anti-icing, dropwise condensation, and self-cleaning. Here we show how superhydrophobic surfaces patterned with lattices of submillimetre-scale posts decorated with nano-textures can generate a counter-intuitive bouncing regime: drops spread on impact and then leave the surface in a flattened, pancake shape without retracting. This allows for a four-fold reduction in contact time compared to conventional complete rebound,. We demonstrate that the pancake bouncing results from the rectification of capillary energy stored in the penetrated liquid into upward motion adequate to lift the drop. Moreover, the timescales for lateral drop spreading over the surface and for vertical motion must be comparable. In particular, by designing surfaces with tapered microanotextures which behave as harmonic springs, the timescales become independent of the impact velocity, allowing the occurrence of pancake bouncing and rapid drop detachment over a wide range of impact velocities.
机译:促进快速液滴脱落的工程表面 对于包括防冰 < sup> – ,逐滴冷凝 和自清洁 。在这里,我们显示了用纳米纹理装饰的亚毫米级职位的格子构图的超疏水表面如何产生与直觉相反的弹跳状态:水滴在撞击时散布开,然后以扁平,薄煎饼的形状离开而不回缩。与传统的完全回弹 < / sup>。我们证明了薄煎饼的弹跳是由于将渗透的液体中存储的毛细管能量校正为足以举起液滴的向上运动而产生的。此外,横向液滴在表面上扩散和垂直运动的时标必须具有可比性。尤其是,通过设计具有锥形微/纳米纹理(充当谐波弹簧)的表面,时间标度变得与冲击速度无关,从而允许在很大的冲击速度范围内发生薄饼弹跳和快速掉落。

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