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Dynamics of piezoceramics-based mass and force actuators for rotating machines

机译:基于压电陶瓷的旋转机械质量和力执行器的动力学

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摘要

In the past decade, it has become more and more common to install active vibration control devices on rotating systems like grinding machines, tooling centers, industrial fans and drive shafts. In the present research, two innovative actuation concepts for such devices are evaluated. The first device is a force actuator based on piezoceramic fibers, which has a low power consumption and high dynamic range. The second device is a mass redistribution actuator based on two piezoelectric ultrasonic motors, which is smaller and faster than conventional electromagnetic devices. At the basis of the analysis are rotor dynamic finite element models including actuators, sensors and feedback controllers. In simulations and experiments with device one, feedback control and scheduled feedforward control are considered. It is shown experimentally that the unbalance response at a critical speed can be reduced by some 97%. In experiments with device two, the positioning speed is determined.
机译:在过去的十年中,在振动系统(如磨床,工装中心,工业风扇和驱动轴)上安装主动振动控制设备已变得越来越普遍。在本研究中,评估了这种设备的两个创新的驱动概念。第一装置是基于压电陶瓷纤维的力致动器,其具有低功耗和高动态范围。第二装置是基于两个压电超声马达的质量重新分配致动器,其比常规电磁装置更小且更快。分析的基础是转子动态有限元模型,包括执行器,传感器和反馈控制器。在设备一的仿真和实验中,考虑了反馈控制和计划的前馈控制。实验表明,临界速度下的不平衡响应可以减少约97%。在设备二的实验中,确定了定位速度。

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