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Influence of viscosity on droplet size distribution and generation rate in ultrasonic atomization

机译:超声雾化中粘度对液滴尺寸分布和生成速率的影响

摘要

An experimental study has been performed to analyze the role of fluid viscosity in ultrasonic atomization when excited with waves in the megahertz range. In the present experiments, liquid mixtures of water and glycerin have been atomized with a piezoelectric disk, and the atomization rate has been evaluated as a function of kinematic viscosity. Although atomization has been observed for viscosities as high as 28x10-6m2/s, corresponding to a glycerin volume percentage of 80% at 35ºC, the atomization rate drops almost by a factor of 10 befores reaching 5x10-6m2/s. Measurements have been obtained for a range of excitation voltages. Droplet size distributions have also been determined and the have been found to be nearly independent of both voltage and viscosity.
机译:进行了一项实验研究,以分析兆赫范围内的波激发时,流体粘度在超声雾化中的作用。在本实验中,水和甘油的液体混合物已经用压电盘雾化,并且雾化速率已作为运动粘度的函数进行了评估。尽管已观察到雾化的粘度高达28x10-6m2 / s,相当于在35ºC时甘油的体积百分比为80%,但在达到5x10-6m2 / s之前,雾化率几乎下降了10倍。已经获得了一系列激励电压的测量值。还确定了液滴的大小分布,发现液滴的分布几乎与电压和粘度无关。

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