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A coupled-mode theory for periodic piezoelectric composites

机译:周期压电复合材料的耦合模式理论

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摘要

A coupled oscillator model to calculate the resonance spectrum of a one-dimensional piezoelectric composite plate, used in ultrasonic transducers, is proposed. Two resonant modes, one produced by the elastic wave reflection on the plate boundaries (thickness resonance) and the other by the reflection on the periodic discontinuities (lateral resonance) are considered. A Kronig-Penney model is used to calculate the lateral resonances. The thickness resonance is obtained with an effective medium model. The coupling of these two modes is described by a biquadratic equation whose solutions are the resonant frequencies of the piezoelectric composite plate. A criterion for a distribution of phases to keep the spurious lateral resonances away from the thickness resonance vicinity is obtained.
机译:提出了一种用于超声换能器的耦合振荡器模型,用于计算一维压电复合板的共振谱。考虑了两种共振模式,一种是通过弹性波在板边界上的反射(厚度共振)产生的,另一种是通过周期性不连续处的反射(横向共振)产生的。 Kronig-Penney模型用于计算横向共振。厚度共振是通过有效的介质模型获得的。这两个模式的耦合由一个二次方程式描述,其解为压电复合板的共振频率。获得用于使杂散横向共振保持远离厚度共振附近的相位分布的标准。

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