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声悬浮中固体颗粒相互作用动力学中的声偶极子和单极子效应。

Acoustic dipole and monopole effects in solid particle interaction dynamics during acoustophoresis.

机构信息

Department of Mechanical Engineering, Isfahan University of Technology, Isfahan, Iran.

Applied Physiology Research Center, Cardiovascular Research Institute, Department of Physiology, Isfahan University of Medical Sciences, Isfahan, Iran.

出版信息

J Acoust Soc Am. 2019 Jun;145(6):3311. doi: 10.1121/1.5110303.

Abstract

A method is presented for measurements of secondary acoustic radiation forces acting on solid particles in a plain ultrasonic standing wave. The method allows for measurements of acoustic interaction forces between particles located in arbitrary positions such as in between a pressure node and a pressure antinode. By utilizing a model that considers both density- and compressibility-dependent effects, the observed particle-particle interaction dynamics can be well understood. Two differently sized polystyrene micro-particles (4.8 and 25 μm, respectively) were used in order to achieve pronounced interaction effects. The particulate was subjected to a 2-MHz ultrasonic standing wave in a microfluidic channel, such as commonly used for acoustophoresis. Observation of deflections in the particle pathways shows that the particle interaction force is not negligible under this circumstance and has to be considered in accurate particle manipulation applications. The effect is primarily pronounced when the distance between two particles is small, the sizes of the particles are different, and the acoustic properties of the particles are different relative to the media. As predicted by theory, the authors also observe that the interaction forces are affected by the angle between the inter-particle centerline and the axis of the standing wave propagation direction.

摘要

本文提出了一种测量平面超声驻波中固体颗粒次级声辐射力的方法。该方法允许测量位于任意位置(如压力节点和压力腹点之间)的颗粒之间的声相互作用力。通过利用考虑密度和压缩性相关效应的模型,可以很好地理解观察到的颗粒-颗粒相互作用动力学。使用了两种不同尺寸的聚苯乙烯微球(分别为 4.8 和 25μm)以实现明显的相互作用效果。将颗粒置于微流道中的 2MHz 超声驻波中,如常用于声泳的情况。观察到颗粒路径的偏移表明,在这种情况下,颗粒相互作用力不可忽略,在精确的颗粒操纵应用中必须考虑到该力。当两个颗粒之间的距离较小时、颗粒的尺寸不同且颗粒的声学性质相对于介质不同时,这种效应尤为显著。正如理论所预测的,作者还观察到相互作用力受到颗粒中心线与驻波传播方向之间夹角的影响。

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