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Computational analysis of the influence of the perforated plate on sandwich transducer in sound radiation performance

机译:夹层换能器在声辐射性能下夹层传感器的影响计算分析

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摘要

To improve the acoustic radiation performance of the sandwich transducer, a perforated plate is added to the radiation end of the transducer. The improved effect of the addition of a perforated plate on acoustic radiation performance of the transducer is studied. First, based on electromechanical equivalence principle, when a perforated plate is attached to a piston vibrator, the expressions of the vibration velocity of radiation surfaces, directivity index (DI) and radiated sound power are derived. Thus, the influences of the perforated plate on the sound radiation performance of the piston vibrator are analyzed. Then, the perforated plate is attached to the radiation surface of a sandwich transducer, and the electromechanical equivalent circuit of the transducer is established. Thus, the input impedance at the radiation end, vibration velocity and sound pressure level (SPL) of the transducer are derived. Further, the SPL of the transducer is calculated and the influences of the perforated plate on the transducer acoustic radiation performance with or without a matching layer are studied. And, the influences of the perforated plate on acoustic radiation performance of different operating frequency transducers are analyzed. Finally, the influences of the perforated plate structural parameters on the SPL of transducer are studied. The results show that the perforated plate with appropriate parameters could further improve the impedance matching between the input impedance and the radiation impedance at the radiation end of the transducer, thus the radiated SPL could be improved maximally. The research method is expected to applied in high-power transducer design. (C) 2021 Elsevier Ltd. All rights reserved.
机译:为了改善夹层换能器的声辐射性能,将多孔板添加到换能器的辐射端。研究了在换能器的声学辐射性能上加入穿孔板的改进效果。首先,基于机电等效原理,当穿孔板附接到活塞振动器时,推导出辐射表面,方向性指数(DI)和辐射声功率的振动速度的表达。因此,分析了多孔板对活塞振动器的声辐射性能的影响。然后,穿孔板附接到夹层换能器的辐射表面,并且建立了换能器的机电等效电路。因此,衍生换能器的辐射端,振动速度和声压级(SPL)的输入阻抗。此外,研究了换能器的SEC,并且研究了穿孔板对换能器声辐射性能的影响,或没有匹配层。并且,分析了多孔板对不同工作频率换能器声学辐射性能的影响。最后,研究了研究了穿孔板结构参数对换能器SEC的影响。结果表明,具有适当参数的穿孔板可以进一步改善换能器的辐射端的输入阻抗和辐射阻抗之间的阻抗匹配,因此辐射的SPL可以最大化。预计研究方法将应用于高功率换能器设计。 (c)2021 elestvier有限公司保留所有权利。

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