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Mechanical optimization of a novel hollow traveling wave rotary ultrasonic motor

机译:新型空心行波旋转超声电机的机械优化

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摘要

A novel hollow type of traveling wave rotary ultrasonic motor is proposed, optimized, fabricated, and tested in this study. Unlike conventional ultrasonic motors, this novel ultrasonic motor adopts a bran-new preloading method that preload is applied from the bottom of the stator through a wave spring, which can not only enhance the anti-overload ability but also extend the working life of the motor. According to this motor, a three-dimensional finite element model has been built by the commercial finite element software ADINA. In terms of the friction material and the preload, a detailed further optimization procedure is given after the initial design. Finally, the appropriate size and location of the friction layer and a proper preload for this motor have been determined. Almost all of the motor's mechanical capacities, such as rotational speed, torque, and deformation, can be obtained by simulations in ADINA, which have good agreement with experimental results.
机译:在这项研究中,提出,优化,制造和测试了一种新颖的空心型行波旋转超声电动机。与传统的超声波马达不同,该新型超声波马达采用全新的预紧方法,即通过波形弹簧从定子底部施加预紧力,不仅可以增强抗过载能力,而且可以延长电动机的使用寿命。根据该电动机,已经通过商业有限元软件ADINA建立了三维有限元模型。在摩擦材料和预紧力方面,在初步设计之后给出了详细的进一步优化程序。最后,已经确定了摩擦层的适当尺寸和位置以及该电动机的适当预紧力。电机的几乎所有机械性能(例如转速,转矩和变形)都可以通过ADINA中的仿真获得,与实验结果吻合良好。

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