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Thickness regimes of power law liquids dip coated onto permeable substrates

机译:电力法的厚度制度浸涂到可渗透的基材上

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Coating thin liquid films with complex rheological behaviour on permeable substrates is often an important requirement in several applications such as contact lenses, textiles, and paper-based electronics. Here, we extend the classical Landau-Levich problem of dip coating of Newtonian liquids on rigid substrates to liquids of power-law rheology on permeable substrates. Our results suggest distinct deviation from the classical Landau-Levich relation through exhibition of different regimes of varying dependence of coating film thickness on withdrawal speed. A process map is presented depicting these coating thickness regimes for a wide range of operating parameters such as the substrate permeability factor, power-law exponent of the liquid, and a rescaled capillary number.
机译:在可渗透基板上具有复杂流变行为的薄膜薄膜通常是在若干应用中的重要要求,例如隐形眼镜,纺织品和纸质电子。在这里,我们将刚性基板上的牛顿液体浸涂的经典Landau-Levich问题延长到渗透性基材上的电力法流变液中的液体。我们的研究结果表明,通过展览涂层薄膜厚度的不同依赖性的不同制度展示了古典Landau-Levich关系的独特偏离。提出了一种过程图,其描绘了这些涂层厚度方案,用于广泛的操作参数,例如衬底渗透因子,液体的动力律指数,以及重新甲状毛细数。

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