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Standing wave acoustic levitation on an annular plate

机译:环形板上的驻波声悬浮

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In standing wave acoustic levitation technique, a standing wave is formed between a source and a reflector. Particles can be attracted towards pressure nodes in standing waves owing to a spring action through which particles can be suspended in air. This operation can be performed on continuous structures as well as in several numbers of axes. In this study an annular acoustic levitation arrangement is introduced. Design features of the arrangement are discussed in detail. Bending modes of the annular plate, known as the most efficient sound generation mechanism in such structures, are focused on. Several types of bending modes of the plate are simulated and evaluated by computer simulations. Waveguides are designed to amplify waves coming from sources of excitation, that are, transducers. With the right positioning of the reflector plate, standing waves are formed in the space between the annular vibrating plate and the reflector plate. Radiation forces are also predicted. It is demonstrated that small particles can be suspended in air at pressure nodes of the standing wave corresponding to a particular bending mode. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在驻波声悬浮技术中,在源和反射器之间形成驻波。由于弹簧作用,颗粒可以悬浮在空气中,从而可以将颗粒吸引到驻波中的压力节点。可以在连续结构以及多个轴上执行此操作。在这项研究中,介绍了一种环形声悬浮装置。详细讨论了该装置的设计特征。环形板的弯曲模式被称为这种结构中最有效的声音产生机构。通过计算机模拟来模拟和评估板的几种弯曲模式。波导旨在放大来自激励源(即换能器)的波。通过正确放置反射板,在环形振动板和反射板之间的空间中会形成驻波。还可以预测辐射力。已经证明,小颗粒可以在对应于特定弯曲模式的驻波的压力节点处悬浮在空气中。 (C)2016 Elsevier Ltd.保留所有权利。

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