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Modeling and experimental validation of a linear ultrasonic motor considering rough surface contact

机译:考虑粗糙表面接触的线性超声波电机的建模与实验验证

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摘要

Linear ultrasonic motor is driven by the interface friction between the stator and the slider. The performance of the motor is significantly affected by the contact state between the stator and slider which depends considerably on the morphology of the contact interface. A novel fiction model is developed to evaluate the output characteristics of a linear ultrasonic motor. The proposed model, where the roughness and plastic deformation of contact surfaces are considered, differs from the previous spring model. Based on the developed model, the effects of surface roughness parameters on motor performance are investigated. The behavior of the force transmission between the stator and the slider is studied to understand the driving mechanism. Furthermore, a comparison between the proposed model and the spring model is made. An experiment is designed to verify the feasibility and effectiveness of this proposed model by comparing the simulation results with the measured one. The results show that the proposed model is more accurate than the spring model. These discussions will be very useful for the improvement of control and the optimal design of linear ultrasonic motor.
机译:线性超声波电机由定子和滑块之间的界面摩擦驱动。电动机的性能受到定子和滑块之间的接触状态的显着影响,这取决于接触界面的形态。开发了一种新颖的小说模型来评估线性超声波电动机的输出特性。所提出的模型,其中考虑了接触表面的粗糙度和塑性变形,与先前的弹簧模型不同。基于开发的模型,研究了表面粗糙度参数对电机性能的影响。研究了定子与滑块之间的力传递的行为,以了解驱动机构。此外,制造所提出的模型和弹簧模型之间的比较。实验旨在通过将模拟结果与测量的验证的模型进行比较来验证这一提出的模型的可行性和有效性。结果表明,所提出的模型比弹簧模型更准确。这些讨论对于改进控制和线性超声波电动机的最优设计非常有用。

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