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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Mobility of Aqueous and Binary Mixture Drops on Lubricating Fluid-Coated Slippery Surfaces
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Mobility of Aqueous and Binary Mixture Drops on Lubricating Fluid-Coated Slippery Surfaces

机译:水性和二元混合物的迁移率滴在润滑流体涂层的滑动表面上

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摘要

The mobility of liquid drops on lubricant-infused slippery surfaces depends strongly on various system parameters, for example, surface energy and roughness of the underlying solid surface and surface tension and viscosity of the test and the lubricating fluids. Here, we investigate lubricant-coated slippery surfaces fabricated on smooth hydrophobic solid surfaces and examine the influence of thickness and viscosity of the lubricating oil on the velocity of aqueous drops. We also investigate the effect of surface tension of the test liquid using a binary mixture of water and ethanol, on the apparent contact angle, which further affects their slip velocity. A theoretical model, based on various dissipative forces acting in different regions of the lubricating oil and a test drop, is also presented, which elucidates the dependence of drop velocity on lubricating oil viscosity and base radius of drops of test liquids.
机译:液体滴落在润滑剂注入的光滑表面上的迁移率在各种系统参数上强烈依赖于各种系统参数,例如底层固体表面的表面能和粗糙度以及测试的表面张力和粘度和润滑流体。 在这里,我们研究了在光滑的疏水性固体表面上制造的润滑剂涂层的滑动表面,并检查润滑油厚度和粘度对水滴速度的影响。 我们还使用水和乙醇的二元混合物在表观接触角上研究了测试液的表面张力的影响,这进一步影响了它们的滑移速度。 还提出了一种理论模型,基于作用于润滑油的不同区域和试验下降的各种耗散力,其阐明了下降速度对润滑油粘度的依赖性和基础的试验液滴。

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