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Spreading of Micrometer-Sized Droplets under the Influence of Insoluble and Soluble Surfactants: A Numerical Study

机译:在不溶性和可溶性表面活性剂的影响下,微米尺寸液滴的扩散:数值研究

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Wetting and spreading of surfactant solutions play an important role in many technical applications. In printing processes, the size of individual droplets is typically on the order of a few tens of microns. The purpose of this study is to develop a better understanding of the interaction between spreading and surfactant transport on these small length and related time scales. Therefore, numerical simulations based on the volume-of-fluid method including Marangoni stresses and transport of an insoluble or soluble surfactant are performed. The results for an insoluble surfactant show competing effects of Marangoni flow on the one hand, and a decreasing surfactant concentration as the droplet spreads on the other hand. Even in the case of a soluble surfactant, adsorption and desorption could only partly mitigate these effects, demonstrating the importance of the sorption kinetics for fast, small scale wetting processes.
机译:表面活性剂解决方案的润湿和传播在许多技术应用中发挥着重要作用。在印刷过程中,各个液滴的尺寸通常在几十微米的顺序上。本研究的目的是在这些小长度和相关时间尺度上更好地了解扩散和表面活性剂运输之间的相互作用。因此,进行基于包括Marangoni应力和不溶性或可溶性表面活性剂的传输的流体体积的数值模拟。不溶性表面活性剂的结果表明了一方面玛甘尼流动的竞争效果,并且随着液滴扩散的情况下,表面活性剂浓度降低。即使在可溶性表面活性剂的情况下,吸附和解吸也只能部分减轻这些效果,证明了吸附动力学对快速,小规模润湿过程的重要性。

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