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Effects of Interface Velocity, Diffusion Rate, and Radial Velocity on Colloidal Deposition Patterns Left by Evaporating Droplets

机译:界面速度,扩散速率和径向速度对液滴蒸发留下的胶体沉积模式的影响

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摘要

This investigation experimentally examines the role of interface capture on the transport and deposition of colloidal material in evaporating droplets. It finds that deposition patterns cannot be characterized by the ratio of interface velocity to particle diffusion rate alone when the two effects are of the same order. Instead, the ratio of radial velocity to particle diffusion rate should also be considered. Ring depositions are formed when the ratio of radial velocity to the particle diffusion rate is greater than the ratio of interface velocity to diffusion. Conversely, uniform depositions occur when the ratio of radial velocity to diffusion is smaller than the ratio of interface velocity to diffusion. Transitional depositions with a ring structure and nonuniform central deposition are observed when these ratios are similar in magnitude. Since both ratios are scaled by diffusion rate, it is possible to characterize the depositions here using a ratio of interface velocity to radial velocity. Uniform patterns form when interface velocity is greater than radial velocity and ring patterns form when radial velocity is larger. However, Marangoni effects are small and Derjaguin, Landau, Verwey, and Overbeek (DLVO) forces repel particles from the surface in these cases. Further research is required to determine if these conclusions can be extended or modified to describe deposition patterns when particles are subjected to appreciable Marangoni recirculation and attractive DLVO forces.
机译:这项研究实验检验了界面捕获在蒸发液滴中胶体材料的运输和沉积中的作用。研究发现,当两种作用的阶数相同时,仅靠界面速度与颗粒扩散速率之比不能表征沉积模式。相反,还应考虑径向速度与颗粒扩散速率的比率。当径向速度与颗粒扩散速率之比大于界面速度与扩散之比时,就会形成环状沉积。相反,当径向速度与扩散之比小于界面速度与扩散之比时,发生均匀沉积。当这些比率的大小相似时,观察到具有环形结构的过渡沉积和不均匀的中心沉积。由于这两个比率均由扩散速率定标,因此可以在此处使用界面速度与径向速度之比来表征沉积。当界面速度大于径向速度时,会形成均匀的图案;而当径向速度较大时,会形成环形的图案。但是,Marangoni效应很小,在这些情况下,Derjaguin,Landau,Verwey和Overbeek(DLVO)力会从表面排斥颗粒。需要进一步的研究以确定这些结论是否可以扩展或修改以描述当颗粒受到明显的Marangoni再循环和有吸引力的DLVO力时的沉积模式。

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  • 来源
    《Journal of Heat Transfer》 |2017年第11期|111505.1-111505.9|共9页
  • 作者单位

    Mem. ASME Mechanical Engineering, Rochester Institute of Technology, 76 Lomb Memorial Drive, Rochester, NY, United States;

    School of Mathematical Sciences, Rochester Institute of Technology, 85 Lomb Memorial Drive, Rochester, NY, United States;

    Mem. ASME Mechanical Engineering, Rochester Institute of Technology, 76 Lomb Memorial Drive, Rochester, NY, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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