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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >An object transport system using flexural ultrasonic progressive waves generated by two-mode excitation
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An object transport system using flexural ultrasonic progressive waves generated by two-mode excitation

机译:使用由双模激发产生的弯曲超声渐进波的物体运输系统

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摘要

An object transport system using low amplitude and high frequency progressive waves generated by two-mode excitation is presented. A theoretical model for the system was developed using normal mode expansion and the modal participation factor. To identify the factors that affect the transport speed, the changes with the mass of objects on the beam, the input power, the phase difference, and the excitation frequency were experimentally investigated. With a power input of 40 W, a transport speed of 10 cm/s was obtained for an object weighing 30 g. The tests indicate that, not only the phase difference but also the excitation frequency, were the dominant factors in determining the transport speed and direction. Specifically, when the excitation frequency was chosen to be at the exact midpoint of the two modes, the object stopped moving. A slight change of frequency in either direction resulted in change of object transport direction. For actual factory application, a simple stop-go and tracking control using the General Purpose Interface Bus (GPIB) were implemented.
机译:提出了一种使用由双模激发产生的低振幅和高频渐进波的物体传输系统。使用正常模式展开和模式参与因子开发了系统的理论模型。为了确定影响传输速度的因素,通过实验研究了光束上物体质量,输入功率,相位差和激励频率的变化。在40 W的功率输入下,重量为30 g的物体的传输速度为10 cm / s。测试表明,不仅相位差而且激励频率都是决定传输速度和方向的主要因素。具体来说,当选择激发频率为两种模式的精确中点时,对象停止移动。频率在任一方向上的轻微变化都会导致物体传输方向的变化。对于实际工厂应用,使用通用接口总线(GPIB)实现了简单的走走停停和跟踪控制。

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