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Development of an Acoustic Levitation Linear Transportation System Based on a Ring-Type Structure

机译:基于环形结构的声悬浮线性运输系统的开发

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摘要

A linear acoustic levitation transportation system based on a ring-type vibrator is presented. The system is composed by two 21-kHz Langevin transducers connected to a ring-shaped structure formed by two semicircular sections and two flat plates. In this system, a flexural standing wave is generated along the ring structure, producing an acoustic standing wave between the vibrating ring and a plane reflector located at a distance of approximately a half wavelength from the ring. The acoustic standing wave in air has a series of pressure nodes, where small particles can be levitated and transported. The ring-type transportation system was designed and analyzed by using the finite element method. Additionally, a prototype was built and the acoustic levitation and transport of a small polystyrene particle was demonstrated.
机译:提出了一种基于环形振子的线性声悬浮运输系统。该系统由两个21 kHz Langevin换能器组成,这些换能器连接到由两个半圆形部分和两个平板形成的环形结构。在该系统中,沿环形结构产生弯曲驻波,从而在振动环和位于距环形约一半波长的平面反射器之间产生声驻波。空气中的声驻波具有一系列压力节点,在其中可以悬浮和运输小颗粒。利用有限元方法设计并分析了环形运输系统。此外,还制作了一个原型,并演示了悬浮聚苯乙烯颗粒的声悬浮和传输。

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