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Improvement of low-frequency characteristics of piezoelectric speakers based on acoustic diaphragms

机译:基于声膜的压电扬声器低频特性的改善

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The vibrational characteristics of 3 types of the acoustic diaphragms are investigated to enhance the output acoustic performance of the piezoelectric ceramic speaker in a low-frequency range. In other to achieve both a higher output sound pressure level and wider frequency range of the piezoelectric speaker, we have proposed a rubber/resin bi-layer acoustic diaphragm. The theoretical square-root dependence of the fundamental resonant frequency on the thickness and Young??s modulus of the acoustic diaphragm was verified by finite-element analysis simulation and laser scanning vibrometer measurement. The simulated resonant frequencies for each diaphragm correspond well to the measured results. From the simulated and measured resonant frequency results, it is found that the fundamental resonant frequency of the piezoelectric ceramic speaker can be designed by adjusting the thickness ratio of the rubber/resin bi-layer acoustic diaphragm. Compared with a commercial piezoelectric speaker, the fabricated piezoelectric ceramic speaker with the rubber/resin bi-layer diaphragm has at least 10 dB higher sound pressures in the low-frequency range of less than 1 kHz.
机译:为了提高压电陶瓷扬声器在低频范围内的输出声学性能,研究了三种类型的振动膜的振动特性。为了实现压电扬声器更高的输出声压级和更宽的频率范围,我们提出了一种橡胶/树脂双层声膜。通过有限元分析模拟和激光扫描振动计测量,验证了基本谐振频率对声膜厚度和杨氏模量的理论平方根依赖性。每个振膜的模拟谐振频率与测量结果非常吻合。从仿真和测量的谐振频率结果可以发现,可以通过调节橡胶/树脂双层声膜的厚度比来设计压电陶瓷扬声器的基本谐振频率。与商用压电扬声器相比,带有橡胶/树脂双层振动膜的压电陶瓷扬声器在小于1 kHz的低频范围内具有至少10 dB的高声压。

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