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From splashing to bouncing: The influence of viscosity on the impact of suspension droplets on a solid surface

机译:从飞溅到弹跳:粘度对悬浮液滴对固体表面影响的影响

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摘要

We experimentally investigated the splashing of dense suspension droplets impacting a solid surface, extending prior work to the regime where the viscosity of the suspending liquid becomes a significant parameter. The overall behavior can be described by a combination of two trends. The first one is that the splashing becomes favored when the kinetic energy of individual particles at the surface of a droplet overcomes the confinement produced by surface tension. This is expressed by a particle-based Weber number Wep. The second is that splashing is suppressed by increasing the viscosity of the solvent. This is expressed by the Stokes number St, which influences the effective coefficient of restitution of colliding particles. We developed a phase diagram where the splashing onset is delineated as a function of both Wep and St. A surprising result occurs at very small Stokes number, where not only splashing is suppressed but also plastic deformation of the droplet. This leads to a situation where droplets can bounce back after impact, an observation we are able to reproduce using discrete particle numerical simulations that take into account viscous interaction between particles and elastic energy.
机译:我们实验研究了致密的悬浮液滴飞溅到固体表面的情况,将先前的工作扩展到了悬浮液粘度成为重要参数的范围。总体行为可以通过两种趋势的组合来描述。第一个是,当液滴表面的单个粒子的动能克服了表面张力所产生的限制时,喷溅就会变得很容易。这由基于粒子的韦伯数Wep表示。第二个是通过增加溶剂的粘度来抑制飞溅。这由斯托克斯数St表示,斯托克斯数St影响碰撞粒子的有效复原系数。我们开发了一个相图,其中描绘了飞溅起点与Wep和St的关系。在很小的斯托克斯数下会出现令人惊讶的结果,不仅可以抑制飞溅,而且还可以抑制液滴的塑性变形。这会导致液滴在撞击后会弹回的情况,这是我们能够使用离散的颗粒数值模拟(考虑到颗粒之间的粘性相互作用和弹性能)重现的观察结果。

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