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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Noncontact ultrasonic transportation of small objects in a circular trajectory in air by flexural vibrations of a circular disc
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Noncontact ultrasonic transportation of small objects in a circular trajectory in air by flexural vibrations of a circular disc

机译:圆盘弯曲振动在空气中以圆形轨迹非接触式超声传输小物体

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摘要

We have developed a noncontact ultrasonic technique for transporting small objects with a linear trajectory over long distances using a bending vibrating plate and a reflector. In this paper, noncontact transportation of small particles around a circular trajectory was investigated. A circular aluminum plate with a piezoelectric ring was employed as a vibrating plate. On the basis of finite element analysis (FEA) calculations, the electrodes of the piezoelectric ring were divided into 24 pieces to generate a flexural vibration mode with one nodal circle and four nodal lines at the resonance frequency of 47.8 kHz. A circular plate having the same dimensions as the vibrating plate was installed parallel to the vibrator. It was used as a reflector to generate an acoustic standing wave in the air between the two plates. The acoustic field between the vibrating plate and reflector was calculated by FEA and the distribution of the acoustic radiation force acting on a small rigid particle was calculated to predict the position of the trapped particle. Using a prototype of the vibrating plate, polystyrene particles with diameters of several millimeters could be trapped at regular intervals along the horizontal nodal line of the standing wave. The sound pressure distribution between the vibrating plate and reflector was measured by a fiber optic probe and the experimental and calculated results showed good agreement. By switching the driving conditions of the divided electrodes in the circumferential direction, the nodal lines of the vibrating plate could be rotated and the trapped particle could be manipulated with a circular trajectory in air.
机译:我们已经开发出了一种非接触式超声技术,该技术可以使用弯曲的振动板和反射器在长距离内传输具有线性轨迹的小物体。在本文中,研究了围绕圆形轨迹的小颗粒的非接触传输。具有压电环的圆形铝板被用作振动板。在有限元分析(FEA)的基础上,将压电环的电极分为24个部分,以在共振频率47.8 kHz的情况下产生具有一个节点圆和四个节点线的弯曲振动模式。平行于振动器安装具有与振动板相同尺寸的圆形板。它被用作反射器,以在两个板之间的空气中产生声驻波。通过FEA计算振动板和反射器之间的声场,并计算作用在小的刚性粒子上的声辐射力的分布,以预测捕获粒子的位置。使用振动板的原型,直径为几毫米的聚苯乙烯颗粒可以沿着驻波的水平节线以规则的间隔被捕获。用光纤探头测量了振动板与反射器之间的声压分布,实验和计算结果吻合良好。通过沿周向切换分割电极的驱动条件,可以使振动板的节点线旋转,并且可以以在空气中的圆形轨迹来操纵捕获的粒子。

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