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Flow‐Induced Long‐Term Stable Slippery Surfaces

机译:流动引起的长期稳定的光滑表面

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摘要

Slippery lubricant‐infused surfaces allow easy removal of liquid droplets on surfaces. They consist of textured or porous substrates infiltrated with a chemically compatible lubricant. Capillary forces help to keep the lubricant in place. Slippery surfaces hold promising prospects in applications including drag reduction in pipes or food packages, anticorrosion, anti‐biofouling, or anti‐icing. However, a critical drawback is that shear forces induced by flow lead to depletion of the lubricant. In this work, a way to overcome the shear‐induced lubricant depletion by replenishing the lubricant from the flow of emulsions is presented. The addition of small amounts of positively charged surfactant reduces the charge repulsion between the negatively charged oil droplets contained in the emulsion. Attachment and coalescence of oil droplets from the oil‐in‐water emulsion at the substrate surface fills the structure with the lubricant. Flow‐induced lubrication of textured surfaces can be generalized to a broad range of lubricant–solid combinations using minimal amounts of oil.
机译:光滑的注有润滑剂的表面可轻松去除表面上的液滴。它们由渗透有化学相容性润滑剂的网状或多孔基材组成。毛细作用力有助于将润滑剂保持在适当的位置。光滑的表面在包括管道或食品包装的减阻,防腐,防生物污垢或防冰的应用中具有广阔的前景。然而,一个关键的缺点是由流动引起的剪切力导致润滑剂的消耗。在这项工作中,提出了一种通过从乳液流中补充润滑剂来克服剪切引起的润滑剂消耗的方法。少量带正电荷的表面活性剂的加入减少了乳液中所含带负电荷的油滴之间的电荷排斥。基质表面的水包油乳液中的油滴附着并聚结,使润滑剂充满结构。流动诱导的带纹理表面的润滑可以推广到使用最少的油量的多种润滑剂-固体组合。

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