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Motion and mixing of a viscous droplet located on a super-hydrophobic surface using resonant vibration under the vertical and horizontal Ac field

机译:在垂直和水平Ac场下使用共振振动对位于超疏水表面的粘性液滴进行运动和混合

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To develop an electrostatic stirrer or mixer for a small amount of liquid, resonant vibrating motion of a water droplet located on a super-hydrophobic surface was investigated experimentally. A water droplet under an ac electric field with resonant frequency changes drastically its shape, repeating extension and shrinkage state alternatively. To enhance liquid flow in a droplet, both the horizontal and vertical electric fields were applied to the droplet. From the images of the droplet taken by high-speed video camera, the degree of droplet deformation was evaluated by deformation rate for a width and a height. Viscosity of a droplet was adjusted by concentration of polyethylene glycol. With a resonant frequency, the deformation ratio was increased significantly even for a viscous droplet. Moreover, the droplet height at a shrinkage state during a vibration varied periodically with a longer period. The mixing of an ionized water droplet and a viscous droplet were demonstrated.
机译:为了开发用于少量液体的静电搅拌器或混合器,实验研究了位于超疏水表面上的水滴的共振振动运动。在具有共振频率的交流电场下,水滴的形状急剧变化,交替重复伸展和收缩状态。为了增强液滴中的液体流动,将水平和垂直电场都施加到液滴上。从高速摄像机拍摄的液滴的图像中,通过宽度和高度的变形率来评价液滴的变形程度。通过聚乙二醇的浓度调节液滴的粘度。在共振频率下,即使对于粘性液滴,变形率也显着增加。另外,振动时的收缩状态下的液滴高度以较长的周期周期性地变化。证实了电离水滴和粘性水滴的混合。

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