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Three-dimensional matrixlike focusing of microparticles in flow through minichannel using acoustic standing waves: An experimental and modeling study

机译:使用声驻波的微型通道中流动的微粒的三维矩阵状聚焦:实验和模型研究

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摘要

In this work, we demonstrate the possibility of focusing a stream of microparticles to generate a matrixlike distribution using bulk acoustic standing waves. To achieve this goal, an axial acoustic excitation was performed on a suspension of spherical quasi-monodisperse microparticles in a flow through minichannel with a square cross section of 2 mm × 2 mm. The pair of transducer elements was also used for stimulation at several frequencies corresponding to its theoretical eigenmodes. The generation of the matrixlike tree-dimensional (3D) structures of focused particles was achieved by reflections of the acoustic radiation force associated with the square geometry. Particle positions were recorded by interferometric digital holographic microscopy, and the corresponding normalized distribution in the cross section was calculated for each experimental setting. The focusing efficiency was investigated through the variation of the acoustic energy density induced by the voltage applied to the piezo part and the injected flow rate. The acoustic field was numerically computed and compared with the experimental positions of particles in the cross section of the channel.
机译:在这项工作中,我们展示了使用体声驻波将微粒流聚焦以生成矩阵状分布的可能性。为了实现此目标,在通过正方形横截面为2 mm×2 mm的微型通道中的球形准单分散微粒悬浮液上进行了轴向声激发。该对换能器元件还用于对应于其理论本征模式的几个频率的刺激。聚焦粒子的矩阵状树状(3D)结构的生成是通过反射与正方形几何形状相关的声辐射力实现的。通过干涉式数字全息显微镜记录颗粒位置,并针对每个实验设置计算横截面中的相应归一化分布。通过改变施加到压电部件上的电压和注入流速引起的声能密度变化,研究了聚焦效率。对声场进行数值计算,并将其与通道横截面中粒子的实验位置进行比较。

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