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Effect of ultrasonic frequency on size distributions of nanosized mist generated by ultrasonic atomization

机译:超声波频率对超声雾化产生的纳米雾尺寸分布的影响

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Ultrasonic atomization is used to produce fine liquid mists with diameter ranges below 100 nm. We investigated the effect of the frequency on the size distribution of ultrasonic mist. A bimodal distribution was obtained for the mist generated by ultrasonic atomization with a wide-range particle spectrometer. The peak diameter decreased with increasing frequency, and the number concentration of the mist increased in the smaller range. We determined the relation between the size distribution of the mist and the ultrasonic frequency, and we proposed a generation mechanism for the ultrasonic nanosized mist based on the amount of water vapor around the liquid column. Increasing the power intensity and density by changing the surface diameter of the ultrasonic oscillator affected the number concentration and size distribution of the nanosized mist. Using this technique, the diameter of the mist can be controlled by changing the frequency of the ultrasonic transducer. (C) 2016 Elsevier B.V. All rights reserved.
机译:超声雾化用于生产直径范围以下100nm的细液体雾。我们调查了频率对超声波雾尺寸分布的影响。获得通过宽范围粒子光谱仪产生的超声雾化产生的雾体的双峰分布。峰值直径随着频率的增加而降低,并且雾的数量浓度在较小的范围内增加。我们确定了雾尺寸分布与超声波频率之间的关系,并且我们基于液柱周围的水蒸气量提出了超声纳米雾的产生机制。通过改变超声波振荡器的表面直径来增加功率强度和密度影响纳米雾的数量浓度和尺寸分布。使用该技术,可以通过改变超声换能器的频率来控制雾的直径。 (c)2016年Elsevier B.v.保留所有权利。

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