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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Plate equations for piezoelectrically actuated flexural mode ultrasound transducers
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Plate equations for piezoelectrically actuated flexural mode ultrasound transducers

机译:压电驱动弯曲模式超声换能器的板方程

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This paper considers variational methods to derive two-dimensional plate equations for piezoelectrically actuated flexural mode ultrasound transducers. In the absence of analytical expressions for the equivalent circuit parameters of a flexural mode transducer, it is difficult to calculate its optimal parameters and dimensions, and to choose suitable materials. The influence of coupling between flexural and extensional deformation, and coupling between the structure and the acoustic volume on the dynamic response of piezoelectrically actuated flexural mode transducer is analyzed using variational methods. Variational methods are applied to derive two-dimensional plate equations for the transducer, and to calculate the coupled electromechanical field variables. In these methods, the variations across the thickness direction vanish by using the stress resultants. Thus, two-dimensional plate equations for a stepwise laminated circular plate are obtained.
机译:本文考虑了变分方法来推导压电致动弯曲模式超声换能器的二维板方程。在没有针对弯曲模式换能器的等效电路参数的解析表达式的情况下,难以计算其最佳参数和尺寸以及选择合适的材料。使用变分方法分析了挠曲与拉伸变形之间的耦合以及结构与声量之间的耦合对压电驱动挠曲模式换能器动态响应的影响。应用变分方法来导出换能器的二维平板方程,并计算耦合的机电场变量。在这些方法中,通过使用应力合力,厚度方向的变化将消失。因此,获得了用于逐步层叠的圆板的二维板方程。

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