首页> 外文会议>Proceedings of the 2012 Symposium on Piezoelectricity, Acoustic Waves and Device Applications. >Structural dynamics design of axial/radial coupling non-contact piezoeletric ultrasonic motor with a spherical rotor
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Structural dynamics design of axial/radial coupling non-contact piezoeletric ultrasonic motor with a spherical rotor

机译:球形转子轴/径向耦合非接触压电超声电机的结构动力学设计

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摘要

In this paper, an axial/radial coupling spherical rotor non-contact piezoelectric actuator is presented, the actuator consists of an axial suspension device and a radial suspension device, and traveling waves can be formed under the incentive specific conditions, which apply suspension force and driving force for the spherical rotor. Improved the axial device structure and constraints in order to optimize its suspension and drive effect for the spherical rotor, the finite element model of the axial / radial suspension device is built and dynamics analysis and design are done on the two parts respectively. Established a sound and solid coupling model to acquire the kinetic mechanism of suspension and drive force, and acquired the relationship between sound pressure distribution and vibration amplitude as well as the relationship between the suspended mass and the gap. On this basis determined the structure and manufactured a prototype and tested the radial stator vibration parameters to provide a basis for further optimization.
机译:本文提出了一种轴向/径向耦合球形转子非接触式压电致动器,该致动器由轴向悬架装置和径向悬架装置组成,在激励特定条件下可以形成行波,并施加悬架力和球形转子的驱动力。改进了轴向装置的结构和约束条件,以优化其对球形转子的悬挂和驱动效果,建立了轴向/径向悬挂装置的有限元模型,并分别对这两部分进行了动力学分析和设计。建立了声固耦合模型,获得了悬架和驱动力的动力学机理,并获得了声压分布与振动幅值之间的关系,以及悬架质量与间隙之间的关系。在此基础上确定结构并制造了原型,并测试了径向定子振动参数,为进一步优化提供了基础。

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