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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Design of a junction for a noncontact ultrasonic transportation system
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Design of a junction for a noncontact ultrasonic transportation system

机译:非接触式超声传输系统的结点设计

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A junction for noncontact ultrasonic transportation paths in which small objects can be manipulated is proposed. The junction consists of a vibrating disc and a reflector. The reflector is installed parallel to the vibrator to generate an acoustic standing wave in the cavity between the vibrating disc and the reflector. The resonance modes of the acoustic field in the disc cavity between the two plates are calculated theoretically. The distributions of the sound pressure amplitude and the acoustic radiation force in air are calculated using finite element analysis. The flexural vibration modes with one nodal circle and four nodal lines at 45.4 kHz and two nodal circles and three nodal lines at 58.1 kHz are used to trap and eject small objects, respectively. The transportation velocity and the thrust force in the radial direction for a polystyrene particle with a diameter of 2 mm and a weight of 0.3 mg are 812 mm/s and 24 ;C;N, respectively. The ejection direction of the trapped object can be controlled by the driving condition of the vibrating disc.
机译:提出了一种用于非接触式超声传输路径的接头,在该接头中可以操纵小物体。连接处由振动盘和反射器组成。反射器平行于振动器安装,以在振动盘和反射器之间的空腔中产生声驻波。理论上计算了两个板之间的盘腔中的声场共振模式。使用有限元分析计算空气中的声压幅度和声辐射力的分布。具有一个在45.4 kHz处的一个节点圆和四个节点线以及在58.1 kHz处的两个节点圆和三个节点线的挠曲振动模式分别用于捕获和弹出小物体。直径为2 mm,重量为0.3 mg的聚苯乙烯颗粒的输送速度和径向推力分别为812 mm / s和24; C; N。被捕获物的弹出方向可以通过振动盘的驱动条件来控制。

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