首页> 外文期刊>Journal of Vibration and Acoustics >Optimal Profile Design for the Resonator Beam of an Ultrasonic Motor via Finite Element Modeling and Taguchi Methodology
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Optimal Profile Design for the Resonator Beam of an Ultrasonic Motor via Finite Element Modeling and Taguchi Methodology

机译:基于有限元建模和田口方法的超声波电机谐振梁最佳轮廓设计

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摘要

This study presents the optimal design for the resonator beam profile of a bimodal ultrasonic motor via finite element modeling and Taguchi experimental design method. General design goals of an ultrasonic motor are to maximize the output power while restraining the contact force in order to extend component lives. To achieve the aforementioned goals, based on recent studies, beam profile design could play an important role because geometric variants of profile lead to substantial changes in the output power of the motor and simultaneously affect the contact force significantly. To investigate the effect of various profiles on the performance of the ultrasonic motor, the dynamic equations of motion are first formulated by utilizing an extended Hamilton's principle and the method of the Lagrange multiplier. The method of finite element modeling is meanwhile used to approximate the governing partial differential equations by a discrete, finite degree-of-freedom system. With the beam outer profile parametrized by cubic splines in terms of locations of two intercepts, the Taguchi experimental design method is finally applied based on the simulated dynamics of the derived finite system to distill generic design guidelines for beam profile of the ultrasonic motor. It is found that a general paraboliclike profile for beam outer shape is best suited for maximizing output power, while a vaselike profile leads to the worst performance.
机译:本研究通过有限元建模和田口实验设计方法提出了一种双峰超声电机谐振腔轮廓的优化设计。超声波马达的一般设计目标是在限制接触力的同时最大化输出功率,以延长组件寿命。为了实现上述目标,基于最近的研究,光束轮廓设计可能会发挥重要作用,因为轮廓的几何变化会导致电机输出功率的显着变化,同时会显着影响接触力。为了研究各种轮廓对超声波马达性能的影响,首先利用扩展的汉密尔顿原理和拉格朗日乘数法来制定运动的动态方程。同时,有限元建模方法被用于通过离散的有限自由度系统近似控制偏微分方程。利用三次样条在两个截距的位置对梁的外部轮廓进行参数化,最终基于导出的有限系统的模拟动力学,采用Taguchi实验设计方法来提炼超声电机束轮廓的通用设计准则。发现用于光束外形的一般抛物线形轮廓最适合于最大化输出功率,而类似花瓶的轮廓则导致最差的性能。

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