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Control of position of a particle using a standing wave field generated by crossing sound beams

机译:使用声束交叉产生的驻波场控制粒子的位置

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Non-contact control of position of a particle using an ultrasonic standing wave field in water has been studied experimentally. Although a standing wave field generated between a transducer and a reflector makes it possible to trap particles at nodes of the sound pressure distribution and to transport them by changing frequency, the method has several problems such as resonance of the sound field. The present paper describes a method to generate a standing wave field by two transducers whose sound beam axes are crossing to each other without using a reflector. Since the sound field does not resonate, it is stable for any frequency changes. When a particle was put in the region of the crossing sound beams, it was trapped at nodes of the sound pressure. By changing the phase difference between the transducers, the trapped position shifted. By assigning slightly different frequency to each transducer, transportation at constant speed was realized. It is possible to extend this scheme into two or three-dimensional manipulation by adding more transducers.
机译:已经通过实验研究了使用超声波驻波场在水中进行粒子位置的非接触控制。尽管在换能器和反射器之间产生的驻波场使得可以将粒子捕获在声压分布的节点处并通过改变频率来传输它们,但是该方法具有一些问题,例如声场的共振。本文描述了一种通过两个换能器产生驻波场的方法,该换能器的声束轴彼此交叉而不使用反射器。由于声场不会共振,因此对于任何频率变化它都是稳定的。当粒子被放置在交叉声束的区域中时,它被困在声压的节点处。通过改变换能器之间的相位差,陷获位置移动。通过为每个换能器分配稍有不同的频率,可以实现恒定速度的运输。通过添加更多的换能器,可以将该方案扩展为二维或三维操作。

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