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Dynamic response of dielectric liquid microlens

机译:介电液体微透镜的动态响应

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A dynamic response of liquid microlens using dielectric force was demonstrated using comparison between experimental and simulation results. The theoretical results of the simulation match fairly well with the experiment in liquid microlens with a diameter of 500 μm. An high speed motion camera with a speed of 3000 fps was used to capture the images of dynamic response for 500μm, 2mm and 5mm droplets in diameter, respectively. Results indicate that a viscosity strongly affects dynamic response time for 2mm droplet in diameter, but only weakly impacts on final contact angle. A propagation of wave on the droplet surface was found when 100Vrms voltage applied on microlens with a diameter of 5mm. The study may provide the basis for development of optical liquid microlens.
机译:通过实验和仿真结果之间的比较,证明了使用介电力的液体微透镜的动态响应。模拟的理论结果与直径为500μm的液体微透镜的实验相当吻合。使用速度为3000 fps的高速运动相机来捕获直径分别为500μm,2mm和5mm的液滴的动态响应图像。结果表明,粘度对直径为2mm的液滴的动态响应时间有很大影响,但对最终接触角的影响很小。当在直径为5mm的微透镜上施加100V rms 电压时,在液滴表面发现了波的传播。该研究可为开发光学液体微透镜提供基础。

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