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弹性质量对超薄压电微声致动器频率响应特性的影响。

Effects of an elastic mass on frequency response characteristics of an ultra-thin piezoelectric micro-acoustic actuator.

作者信息

Kim Hye Jin, Yang Woo Seok, No Kwangsoo

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2013 Aug;60(8):1587-94. doi: 10.1109/TUFFC.2013.2739.

Abstract

This paper presents an optimized method to improve the sound quality of ultra-thin piezoelectric micro-acoustic actuators. To achieve flat and smooth frequency response characteristics of the piezoelectric acoustic actuators, we have proposed an elastic mass attached to the acoustic diaphragm. The effects of the elastic mass on frequency response characteristics of the piezoelectric acoustic actuator were investigated by finite element analysis simulation and laser scanning vibrometer measurement. Based on the modal and vibrational characteristics, it was found that the fabricated piezoelectric acoustic actuator has a significant dip of 1.32 kHz and peak of 2.24 kHz, which correspond respectively to the (1,3) and (3,1) resonant modes of the acoustic diaphragm. However, by attaching an elastic mass to the acoustic diaphragm with a shape similar to the (3,1) mode, the resonant frequencies corresponding to the (1,3) and (3,1) modes shifted to higher frequencies and the vibrational displacements at each mode were dramatically reduced by about 40%. As a result, the dip at (1,3) mode was greatly improved by 13 dB and total harmonic distortion was dramatically reduced from 80.83% to 8.71%. This paper shows that the optimized elastic mass can allow flat and smooth frequency response characteristics by improving the significant peak and dip.

摘要

本文提出了一种优化方法,以提高超薄压电微声致动器的音质。为了实现压电声致动器平坦且平滑的频率响应特性,我们提出了一种附着在声膜上的弹性质量块。通过有限元分析模拟和激光扫描振动计测量,研究了弹性质量块对压电声致动器频率响应特性的影响。基于模态和振动特性,发现所制备的压电声致动器在1.32 kHz处有一个明显的凹陷,在2.24 kHz处有一个峰值,它们分别对应于声膜的(1,3)和(3,1)共振模式。然而,通过在声膜上附着一个形状类似于(3,1)模式的弹性质量块,(1,3)和(3,1)模式对应的共振频率向更高频率移动,并且每个模式下的振动位移显著降低了约40%。结果,(1,3)模式处的凹陷得到了极大改善,提高了13 dB,总谐波失真从80.83%大幅降低至8.71%。本文表明,优化后的弹性质量块可以通过改善显著的峰值和凹陷来实现平坦且平滑的频率响应特性。

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