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首页> 外文期刊>The Journal of the Acoustical Society of America >Particle separation using acoustic radiation force and elecrostatic force
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Particle separation using acoustic radiation force and elecrostatic force

机译:利用声辐射力和静电力分离颗粒

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摘要

A method for separating particles in liquid by exploiting the competition between acoustic radiation force and electrostatic force is investigated. The displacement of particles from the pressure node of an ultrasound standing wave varies according to the effective charges, radii, and stiffness of the particles, and the particles of different radii can thus be separated even when they consist of the same material. When the particles are of different materials, they can also be separated in relations to their effective electric charges or their stiffness. In this study, the efficacy of this method was theoretically estimated and demonstrated by an experiment, with a mixture of polystyrene spheres of different radii in water, using 500-kHz ultrasound and a 3.3-V/mm electric field. The measured ratio of the displacements of polystyrene spheres 10 and 20 μm in diameter from the pressure node was 2:3, which is consistent with the value predicted theoretically. Radiation forces on the polystyrene spheres were also measured by using this technique.
机译:研究了利用声辐射力和静电力之间的竞争分离液体中颗粒的方法。粒子从超声驻波的压力节点的位移根据粒子的有效电荷,半径和刚度而变化,因此即使半径相同的粒子由相同的材料组成,也可以将它们分开。当颗粒是不同的材料时,它们也可以根据其有效电荷或刚度来分离。在这项研究中,使用500 kHz超声波和3.3 V / mm电场,通过在水中混合不同半径的聚苯乙烯球体的实验,从理论上评估并证明了该方法的有效性。测得的直径为10和20μm的聚苯乙烯球从压力节点的位移比率为2:3,这与理论上预测的值一致。通过使用该技术也测量了在聚苯乙烯球上的辐射力。

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