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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Evolution of entrapped air under bouncing droplets on viscoelastic surfaces
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Evolution of entrapped air under bouncing droplets on viscoelastic surfaces

机译:粘弹性表面弹跳液滴下夹带空气的演化

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We developed a technique based on total internal reflection to observe the entrapped air under an impacting droplet and provided experimental evidence of the formation of air film under the rebounded droplet on soft PDMS surfaces. Within a range of impact velocities, it was observed that the air trapped between the droplet and surface formed a thin film during the impact due to the shear-thinning property of the surface. The thin film reduced the surface energy and led to the rebound of the droplet. For sufficiently high impact velocities, the high kinetic energy of the droplet generated an air cavity and a bubble was entrapped inside the droplet. The bubble then coalesced with and released the air film underneath the droplet such that the surface energy became high and the rebound of the droplet was prohibited.
机译:我们开发了一种基于全内反射的技术,以观察撞击液滴下的夹带空气,并提供了在软PDMS表面回弹液滴下形成气膜的实验证据。在冲击速度的范围内,观察到由于表面的剪切稀化特性,在冲击过程中截留在液滴和表面之间的空气形成了薄膜。薄膜降低了表面能并导致液滴的回弹。对于足够高的冲击速度,液滴的高动能会产生气腔,并且气泡会留在液滴内部。然后气泡与液滴聚结并释放出液滴下方的气膜,从而使表面能变高并且阻止了液滴的回弹。

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