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Piezoelectric actuator for machining on macro-to-micro cylindrical components by a precision rotary motion control

机译:压电致动器,用于通过精密旋转运动控制在宏观到微观的圆柱形零件上加工

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摘要

A powerful piezoelectric actuator has been developed for precisely controlling the rotational motion of cylindrical components from macroscale to microscale. The actuator is supported at the nodal point and works at an elliptical vibration mode under anti-resonant frequency. The workpiece's rotational speed can be controlled accurately via the contact frictional force and has a linear relationship with the actuator's vibration. An application on machining operation has confirmed the fabricable dimension of the developed actuator. The dimension of to-be-machined workpiece can be smaller than the diameter of a human hair. Compared with the traditional methods, it provides a more effective approach to fabricate macro-to-micro cylindrical components in high-aspect ratio for micromachining, biomedicine and electrochemistry. (C) 2018 Elsevier Ltd. All rights reserved.
机译:已经开发出一种功能强大的压电致动器,用于精确地控制圆柱组件从宏观到微观的旋转运动。该执行器被支撑在节点上,并在反共振频率下以椭圆振动模式工作。工件的转速可以通过接触摩擦力精确控制,并且与执行器的振动呈线性关系。在机加工操作上的应用已经确认了开发的执行器的可制造尺寸。待加工工件的尺寸可以小于人发的直径。与传统方法相比,它提供了一种更有效的方法来以高纵横比制造宏观到微观的圆柱形零件,用于微加工,生物医学和电化学。 (C)2018 Elsevier Ltd.保留所有权利。

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