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Piezoelectric ceramic rectangular transducers in flexural vibration

机译:压电陶瓷矩形换能器的弯曲振动

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摘要

Based on the equivalent elastic method and coupled vibration theory, an analytic method is presented to study the flexural vibration of rectangular transducers consisting of piezoelectric ceramic thin plates. By introducing a mechanical coupling coefficient, the flexural vibration of the piezoelectric ceramic rectangular thin plate is reduced to two simple, one-dimensional flexural vibrations of narrow piezoelectric ceramic strips. The resonance frequency equations for the piezoelectric ceramic rectangular thin-plate transducers in flexural vibration are derived under the free and simply supported boundary conditions analytically. The relationship between the resonance frequency and the flexural vibrational order, the geometrical shape, and the dimensions of the piezoelectric ceramic rectangular thin-plate transducer is analyzed. It is demonstrated that the one-dimensional vibrational theory for the flexural vibration of a narrow piezoelectric ceramic strip and the stripe-mode flexural vibrational theory for the piezoelectric ceramic rectangular thin plate can be derived directly from the theory obtained in this paper. Experimental results show that the measured resonance frequencies of the piezoelectric ceramic rectangular thin-plate transducers in flexural vibration under free-boundary conditions are in good agreement with the calculated results. The method presented in this paper can be used in the resonance frequency analysis of vibrating systems in coupled vibration.
机译:基于等效弹性法和耦合振动理论,提出了一种解析方法来研究由压电陶瓷薄板组成的矩形换能器的弯曲振动。通过引入机械耦合系数,压电陶瓷矩形薄板的弯曲振动减小为窄压电陶瓷条的两个简单的一维弯曲振动。分析了自由和简单支撑边界条件下压电陶瓷矩形薄板换能器在弯曲振动中的共振频率方程。分析了压电陶瓷矩形薄板换能器的共振频率与弯曲振动阶数,几何形状和尺寸之间的关系。结果表明,压电陶瓷窄带弯曲振动的一维振动理论和矩形压电陶瓷薄板的条纹模态弯曲振动理论可以直接从本文获得的理论中得到。实验结果表明,在自由边界条件下,压电陶瓷矩形薄板换能器在挠曲振动中的共振频率与计算结果吻合良好。本文提出的方法可用于耦合振动中振动系统的共振频率分析。

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