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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Scalable Generation of Strictly Monodisperse Droplets by Transverse Electrohydrodynamic Excitations
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Scalable Generation of Strictly Monodisperse Droplets by Transverse Electrohydrodynamic Excitations

机译:横向电流体动力可扩展生成严格单分散的液滴

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We report a scalable approach to generate strictly monodisperse microdroplets by introducing transverse periodic perturbations on microliquid jets. The fringe field of a thin capacitor, driven by sinusoidal signals, induces periodic electrohydrodynamic (EHD) stress and "chops" the liquid jet at precise and adjustable intervals. When the driving signal is near the 50% of the Rayleigh frequency, liquid jets exhibit highly ordered breakup. We have shown that for the same jet diameter, the monodispersed droplet diameter can be changed by a factor of 1.75, corresponding to more than five times in change of droplet volume. Further, we demonstrate the scale-up of this approach by chopping multiple jets using a single set of EHD exciters.
机译:我们报告了一种可扩展的方法,通过在微液体射流上引入横向周期性扰动来生成严格的单分散微滴。由正弦信号驱动的薄电容器的边缘场会引起周期性的电液动力学(EHD)应力,并以精确且可调节的间隔“切断”液体射流。当驱动信号接近瑞利频率的50%时,液体射流会表现出高度有序的破裂。我们已经表明,对于相同的喷嘴直径,单分散液滴直径可以改变1.75倍,相当于液滴体积变化的5倍以上。此外,我们通过使用一组EHD激励器切碎多个喷嘴来证明这种方法的规模化。

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