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Cross-Sectional Tracking of Particle Motion in Evaporating Drops: Flow Fields and Interfacial Accumulation

机译:蒸发液滴中颗粒运动的横断面跟踪:流场和界面积累

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摘要

The lack of an effective technique for three-dimensional flow visualization has limited experimental exploration of the “coffee ring effect” to the two-dimensional, top-down viewpoint. In this report, high-speed, cross-sectional imaging of the flow fields was obtained using optical coherence tomography to track particle motion in an evaporating colloidal water drop. This approach enables z-dimensional mapping of primary and secondary flow fields and changes in these fields over time. These sectional images show that 1 μm diameter polystyrene particles have a highly nonuniform vertical distribution with particles accumulating at both the air–water interface and the water–glass interface during drop evaporation. Particle density and relative humidity are shown to influence interfacial entrapment, which suggests that both sedimentation rate and evaporation rate affect the dynamic changes in the cross-sectional distribution of particles. Furthermore, entrapment at the air–water interface delays the time at which particles reach the ring structure. These results suggest that the organization of the ring structure can be controlled based on the ratio of different density particles in a colloidal solution.
机译:缺乏有效的三维流动可视化技术,使得对“咖啡环效应”的实验探索仅限于二维,自上而下的观点。在此报告中,使用光学相干层析成像技术来跟踪流场的高速横截面成像,以追踪蒸发的胶体水滴中的粒子运动。这种方法可以对主要和次要流场进行z维映射,并可以随时间变化这些流场。这些截面图显示,直径为1μm的聚苯乙烯颗粒在垂直方向上的分布非常不均匀,在液滴蒸发过程中,颗粒在空气-水界面和水-玻璃界面处均聚集。结果表明,颗粒密度和相对湿度会影响界面截留,这表明沉降速率和蒸发速率均会影响颗粒横截面分布的动态变化。此外,空气-水界面的截留会延迟颗粒到达环状结构的时间。这些结果表明,可以基于胶体溶液中不同密度颗粒的比例来控制环结构的组织。

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