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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Excitation of acoustic waves from cylindrical polyvinylidene fluoride (PVDF) film confined in a concentric wall
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Excitation of acoustic waves from cylindrical polyvinylidene fluoride (PVDF) film confined in a concentric wall

机译:局限在同心壁上的圆柱形聚偏二氟乙烯(PVDF)膜对声波的激励

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摘要

This paper investigates acoustic wave radiation from cylindrical polyvinylidene fluoride (PVDF) film mounted inside a concentric wall with a small air gap. In such a structure, propagation is allowed only in the gap between the film and the wall surface, and the wave propagates in the axial direction of the cylinder. The radiation impedance of the cylindrical transducer inside the concentric wall has been calculated using a one-dimensional propagation model. After calculating the mechanical impedance of the cylindrical PVDF film, the generated acoustic wave has been calculated as a function of frequency with various air gaps between the PVDF film and the wall. It has been found that the excited acoustic wave becomes stronger for a narrower air gap and shows a maximum at a specific air gap. This phenomenon has been explained as the match between the transducer impedance and the radiation impedance of the air gap. When the gap is too small, the radiation impedance exceeds the transducer''s mechanical impedance, the acoustic wave radiation decreases with the decreasing gap, and the resonance frequency increases due to loading by the imaginary part of the excessive radiation impedance. All these theoretical results have been experimentally confirmed.
机译:本文研究了安装在同心壁内且气隙较小的圆柱形聚偏二氟乙烯(PVDF)膜的声波辐射。在这种结构中,仅在膜与壁表面之间的间隙中允许传播,并且波在圆柱体的轴向上传播。已使用一维传播模型计算了同心壁内的圆柱形换能器的辐射阻抗。在计算出圆柱形PVDF膜的机械阻抗之后,已计算出所产生的声波是频率的函数,且PVDF膜与壁之间存在各种气隙。已经发现,对于较窄的气隙,激发的声波变得更强,并且在特定的气隙处显示出最大值。这种现象已被解释为换能器阻抗和气隙辐射阻抗之间的匹配。当间隙太小时,辐射阻抗会超过换能器的机械阻抗,声波辐射会随着间隙的减小而减小,并且谐振频率会由于过度辐射阻抗的虚部所引起的负载而增加。所有这些理论结果均已通过实验证实。

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