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A Friction-Inertial-Based Rotary Motor: Design Modelling and Experiments

机译:基于惯性的旋转电动机:设计建模和实验

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摘要

A friction–inertial-based rotary motor driven by shear piezoelectric actuators (SPAs) is proposed in this paper, which possesses many superior features, including high resolution, compact size, large load-capacity, and low cost. In order to eliminate the step loss and increase the step size when an external load is applied, the power-function-shape driving signal was used to actuate the rotary motor. According to the step characteristics under this driving signal, two motion modes were observed and defined, namely the stick-shoot motion mode and the stick-slip-shoot motion mode. The former motion mode can realize a large step size while the later one cannot due to the slipping during the rising phase. After analyzing the results from the numerical simulation and the experiment study, it was found that the motion performance of the motor is closely related to the preload and the base number of the driving signal rather than the size of SPAs, which means the motor can be further downsized according to its actual requirements.
机译:本文提出了一种由剪切压电致动器(SPA)驱动的基于惯性的旋转电动机,该电动机具有许多优越的特性,包括高分辨率,紧凑的尺寸,大的承载能力和低成本。为了消除阶跃损耗并增加施加外部负载时的阶跃大小,使用了功率函数形状的驱动信号来驱动旋转电机。根据该驱动信号下的阶跃特性,观察并定义了两种运动模式,即粘拍运动模式和粘拍运动模式。前一种运动模式可以实现较大的步长,而后一种运动模式则不能由于上升阶段的打滑而实现。在对数值模拟和实验研究的结果进行分析后,发现电动机的运动性能与驱动信号的预载和基数密切相关,而与SPA的大小密切相关,这意味着电动机可以根据实际需要进一步缩小尺寸。

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