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Performance evaluation of a bimodal standing-wave ultrasonic motor considering nonlinear electroelasticity: Modeling and experimental validation

机译:考虑非线性电弹性的双峰驻波超声电动机的性能评估:建模和实验验证

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摘要

This paper proposes a nonlinear whole-machine dynamic model for a typical bimodal standing wave ultrasonic motor considering nonlinear electroelasticity of piezoelectric vibrator under high excitation voltage. To capture the inherent nonlinearities of the piezoelectric element, nonlinear constitutive relations of piezoelectric element are adopted to derive the nonlinear electromechanical coupling model of the stator. The contact mechanism between the stator and the mover including stick-slip-separation dynamics and asperity contact mechanics is modeled based on a physical-based equivalent spring model and a modified Coulomb friction model. The measured nonlinear relationships between the excitation voltage and the amplitude response of the stator near resonant frequency are used along with analytical approximations for the nonlinear vibration responses by harmonic balance method to identify the critical nonlinear parameters. Finally, experiments are conducted to validate the proposed model, and the results show that the simulations agree well with the experimental results. In particular, nonlinear speed saturation phenomenon and the resonant frequency drift of the motor can be predicted and analyzed by the developed model when the motor is driven at a higher voltage, which are useful for the performance evaluation and working range choice of such motors under high-power input conditions.
机译:针对高激励电压下压电振子的非线性电弹性,提出了一种典型的双峰驻波超声电动机的非线性全机动力学模型。为了捕获压电元件固有的非线性,采用压电元件的非线性本构关系来推导定子的非线性机电耦合模型。基于基于物理的等效弹簧模型和改进的库仑摩擦模型,对定子与动子之间的接触机构(包括粘滑分离动力学和粗糙接触力学)进行建模。通过谐波平衡法,将所测得的励磁电压与定子接近谐振频率的振幅响应之间的非线性关系与解析近似值用于非线性振动响应进行分析,以识别关键的非线性参数。最后,通过实验验证了所提模型的有效性,结果表明仿真结果与实验结果吻合良好。特别是,当电动机以较高的电压驱动时,通过开发的模型可以预测和分析电动机的非线性速度饱和现象和共振频率漂移,这对于在高电压下进行此类电动机的性能评估和工作范围选择非常有用。 -电源输入条件。

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