论文标题

用电场控制流体粘附力

Controlling fluid adhesion force with electric fields

论文作者

Anjos, Pedro H. A., Rocha, Francisco M., Dias, Eduardo O.

论文摘要

开发粘合力可以在外部操纵的粘合剂是实用和科学目的引起人们极大兴趣的话题。在这项工作中,我们提出了一种通过施加外部电场限制在两个平行板之间的常规流体(例如水和/或甘油)的粘附力的方法。我们的结果表明,通过适当调整施加电场产生的电流的强度和方向来增强或降低液体样品的键强度的可能性。此外,我们验证,对于电流的给定方向,可以减小粘附力,以使流体失去其粘合性能,并开始施加力以将其移动以将隔板移动。在这种情况下,我们获得了不需要外力作用的最小电流所需的最小电流的分析表达。

Developing adhesives whose bond strength can be externally manipulated is a topic of considerable interest for practical and scientific purposes. In this work, we propose a method of controlling the adhesion force of a regular fluid, such as water and/or glycerol, confined between two parallel plates by applying an external electric field. Our results show the possibility of enhancing or diminishing the bond strength of the liquid sample by appropriately tuning the intensity and direction of the electric current generated by the applied electric field. Furthermore, we verify that, for a given direction of the electric current, the adhesion force can be reduced enough for the fluid to lose its adhesive properties and begin exerting a force to move apart the confining plates. In these circumstances, we obtain an analytical expression for the minimum electric current required to detach the plates without requiring the action of an external force.

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