弯曲换能器圆柱形超声电机的设计与分析

Weishan Chen, Yingxiang Liu, Jun-kao Liu, S. Shi
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引用次数: 1

摘要

提出了一种采用弯曲换能器的圆柱形超声电机。所述电机定子组件包括一个气缸和四个弯曲换能器,四个均匀弯曲换能器设置在气缸的外表面。压电陶瓷的纵向振动激发了换能器的弯曲。用两组不同的信号激励四个换能器,在气缸上产生两次弯曲振动。当两个弯曲振动的振幅相等,且它们在时间和空间上的相位差为pi/2时,在圆柱体上形成行波。因此,在牙齿上的粒子处实现了椭圆运动。转子与定子之间的摩擦力是实现转子旋转运动的驱动力。PZT陶瓷工作在d33模式下,具有较高的机电耦合效率,可以改善输出特性。分析了该电机的工作原理。采用有限元法对气缸和换能器进行了设计。通过模态分析,获得了换能器和气缸谐振频率的敏感参数。对换能器和圆柱的弯曲共振频率进行退化,并对齿上节点的运动轨迹进行分析。瞬态分析结果表明,节点在齿上的轨迹近似为椭圆。本文的研究结果对这种新型电机的研制有一定的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and analysis of a cylindrical ultrasonic motor using bending transducer
A cylindrical ultrasonic motor using bending transducer was proposed in this paper. The stator components of proposed motor contain a cylinder and four bending transducers, and the four uniform bending transducers are set on the exterior surface of cylinder. The bending of transducers is excited by the longitudinal vibration of PZT ceramics. The four transducers are excited with two different groups of signal, and two bending vibrations are generated on the cylinder. When the amplitude of two bending vibrations is equal, and their phase difference on time and space is pi/2, a traveling wave is formed on the cylinder. Thus, an elliptical motion is achieved at the particle on the tooth. And the frictional force between rotor and stator is the driving force to realize the rotation motion of rotor. The PZT ceramics work with d33 mode, which have high electromechanical coupling efficiency and could improve the output characteristics. The working principle of proposed motor was analyzed. The cylinder and transducers were designed with FEM. The sensitive parameters of resonance frequency of transducer and cylinder were gained with modal analysis. The bending resonance frequency of transducers and cylinder were degenerated, and the motion trajectories of nodes on the teeth were analyzed. The result of transient analysis shows that the trajectory of node on the tooth is nearly an ellipse. The results of this paper could be useful in the development of this new type of motor.
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