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首页> 外文期刊>The Open Acoustics Journal >Finite-Element Electroacoustic Analysis and Taguchi Design of Piezoelectric Buzzers Based on the Vibration Absorber Model
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Finite-Element Electroacoustic Analysis and Taguchi Design of Piezoelectric Buzzers Based on the Vibration Absorber Model

机译:基于减振器模型的压电蜂鸣器有限元电声分析与田口设计

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摘要

Lumped parameter models of piezoelectric buzzers are established with finite element-based electroacoustic parameter identification procedures. The analysis starts with modeling the diaphragm structure by using finite element method (FEM). The FEM model is then converted into electro-mechanical two-ports to fit into the electro-mechano-acoustical (EMA) analogous circuit. Electrical impedance of the piezoelectric diaphragm is simulated using the model. An ‘added-mass’ method is developed to identify the lumped parameters. Electrical impedance and on-axis sound pressure level (SPL) of a piezoelectric buzzer (containing the diaphragm and case) can be simulated by solving the loop equations of the analogous circuits. On the basis of the model, optimal structural parameters and configurations for the buzzer can be found to maximize the sound pressure output, using the Taguchi method and constrained optimization. Simulation and experimental results showed that the performance has been significantly improved using the optimal design. Design guidelines for the piezoelectric buzzers are summarized.
机译:压电蜂鸣器的集总参数模型是基于有限元的电声参数识别程序建立的。分析开始于通过使用有限元方法(FEM)对膜片结构建模。然后,将FEM模型转换为机电两端口,以适合机电声(EMA)模拟电路。使用该模型模拟压电隔膜的电阻抗。开发了一种“附加质量”方法来识别集总参数。压电蜂鸣器(包含膜片和外壳)的电阻抗和轴上声压级(SPL)可以通过求解类似电路的环路方程来模拟。在此模型的基础上,可以使用Taguchi方法和受约束的优化方法,为蜂鸣器找到最佳的结构参数和配置,以使声压输出最大化。仿真和实验结果表明,使用最佳设计可以显着提高性能。总结了压电蜂鸣器的设计指南。

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