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A simple method for simulating the coffee stain effect

机译:一种模拟咖啡渍效果的简单方法

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摘要

Inkjet printing of structures like microscopic electronic circuit paths on thin substrates includes drop wise application and drying of particulate suspensions. The drying of these drops can leave behind a multiplicity of structures of sediment deposit, which to control is a major subject of investigation in the design of the process. In this work we present a simple and efficient simulation method for predicting the three dimensional structure of sediment deposits based on a one way coupled scheme of Brownian dynamics and analytic modeling of the fluid flow inside a drying colloidal drop under presence of Marangoni flow. Aiming for micrometer sized drops with high particle concentrations (up to 20 vol.%), our method takes into account particle diffusion and convection, particle collisions as well as particle staggering at the contact line. The method is validated by experimental results and applied to predict the behavior of a new setup. We find from our simulations that DLVO forces may be neglected for a well stabilized suspension and that the model works well in predicting coffee stain formation.
机译:在薄基板上进行诸如微观电子电路路径之类的结构的喷墨打印包括逐滴施加和干燥颗粒悬浮液。这些液滴的干燥会留下沉积物沉积物的多种结构,控制沉积物是工艺设计中的主要研究课题。在这项工作中,我们提出了一种简单有效的模拟方法,该方法基于布朗动力学的单向耦合方案和存在Marangoni流的干燥胶体液滴内部流体流的解析模型,来预测沉积物的三维结构。针对具有高微粒浓度(最高20%(体积))的微米级液滴,我们的方法考虑了微粒的扩散和对流,微粒的碰撞以及在接触线上的微粒错位。实验方法验证了该方法的有效性,并将其用于预测新设置的行为。从仿真中我们发现,对于稳定良好的悬架,可以忽略DLVO力,并且该模型在预测咖啡渍形成时效果很好。

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