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The precise and accurate production of millimetric water droplets using a superhydrophobic generating apparatus

机译:使用超疏水产生装置的毫米水滴的精确和准确的生产

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The production of millimetric liquid droplets has importance in a wide range of applications both in the laboratory and industrially. As such, much effort has been put forth to devise methods to generate these droplets on command in a manner which results in high diameter accuracy and precision, well-defined trajectories followed by successive droplets and low oscillations in droplet shape throughout their descents. None of the currently employed methods of millimetric droplet generation described in the literature adequately addresses all of these desired droplet characteristics. The reported methods invariably involve the cohesive separation of the desired volume of liquid from the bulk supply in the same step that separates the single droplet from the solid generator. We have devised a droplet generation device which separates the desired volume of liquid within a tee-apparatus in a step prior to the generation of the droplet which has yielded both high accuracy and precision of the diameters of the final droplets produced. Further, we have engineered a generating tip with extreme antiwetting properties which has resulted in reduced adhesion forces between the liquid droplet and the solid tip. This has yielded the ability to produce droplets of low mass without necessitating different diameter generating tips or the addition of surfactants to the liquid, well-defined droplet trajectories, and low oscillations in droplet volume. The trajectories and oscillations of the droplets produced have been assessed and presented quantitatively in a manner that has been lacking in the current literature. Published by AIP Publishing.
机译:毫米液滴的生产在实验室和工业上的各种应用中具有重要性。因此,已经提出了大量的努力,以便以一种方式设计在命令上产生这些液滴的方法,这导致高直径精度和精密,定义明确的轨迹,然后在整个后面的液滴中的液滴形状中的速度和低振荡。文献中描述的目前使用的毫米液滴产生的方法没有充分地解决所有这些所需的液滴特性。报告的方法总是涉及在与将单液滴与固体发生器分离的相同步骤中,从散装供应中携带所需体积的液体的内聚分离。我们已经设计了一种液滴产生装置,其在发球装置内将所需体积的液体分离在产生液滴之前的步骤中,该液滴产生了高精度和最终液滴的直径的高精度和精度。此外,我们已经设计了一种具有极端抗雨刷性能的产生尖端,其导致液滴和固体尖端之间的粘附力降低。这使得能够产生低质量液滴的能力,而不需要不同的直径产生尖端或向液体,明确限定的液滴轨迹中添加表面活性剂,以及液滴体积的低振荡。所产生的液滴的轨迹和振动已经以缺乏当前文献的方式进行评估和呈现。通过AIP发布发布。

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