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Self-healing dynamics of surfactant coatings on thin viscous films

机译:粘性薄膜上表面活性剂涂层的自修复动力学

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摘要

We investigate the dynamics of an insoluble surfactant on the surface of a thin viscous fluid spreading inward to fill a surfactant-free region. During the initial stages of surfactant self-healing, Marangoni forces drive an axisymmetric ridge inward to coalesce into a growing central distension; this is unlike outward spreading, in which the ridge only decays. In later dynamics, the distension slowly decays and the surfactant concentration equilibrates. We present results from experiments in which we simultaneously measure the surfactant concentration (using fluorescently tagged lipids) and the fluid height profile (via laser profilometry). We compare the results to simulations of a mathematical model using parameters from our experiments. For surfactant concentrations close to but below the critical monolayer concentration, we observe agreement between the height profiles in the numerical simulations and the experiment, but disagreement in the surfactant distribution. In experiments at lower concentrations, the surfactant spreading and formation of a Marangoni ridge are no longer present, and a persistent lipid-free region remains. This observation, which is not captured by the simulations, has undesirable implications for applications where uniform coverage is advantageous. Finally, we probe the generality of the effect, and find that distensions of similar size are produced independent of initial fluid thickness, size of initial clean region, and surfactant type.
机译:我们研究了稀薄的粘性流体表面上向内扩散以填充无表面活性剂区域的不溶性表面活性剂的动力学。在表面活性剂自我修复的初始阶段,Marangoni力将轴对称的脊向内驱动,以聚结成不断增长的中央膨胀。这与向外扩散不同,在向外扩散中,脊仅衰减。在以后的动力学中,膨胀缓慢衰减,表面活性剂浓度达到平衡。我们提供了来自实验的结果,在这些实验中,我们同时测量了表面活性剂浓度(使用荧光标记的脂质)和流体高度分布(通过激光轮廓测定法)。我们使用实验中的参数将结果与数学模型的仿真进行比较。对于接近但低于临界单分子层浓度的表面活性剂浓度,我们在数值模拟和实验中观察到高度分布之间的一致性,但在表面活性剂分布方面存在分歧。在较低浓度的实验中,不再存在表面活性剂的扩散和Marangoni脊的形成,并且保留了持久的无脂质区域。这种未被仿真捕获的观察结果对于均匀覆盖有利的应用具有不良影响。最后,我们探讨了效果的普遍性,发现产生的类似大小的膨胀与初始流体厚度,初始清洁区域的大小和表面活性剂类型无关。

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