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首页> 外文期刊>Japanese journal of applied physics >Analysis of propagation characteristics of flexural wave in honeycomb sandwich panel and design of loudspeaker for radiating inclined sound
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Analysis of propagation characteristics of flexural wave in honeycomb sandwich panel and design of loudspeaker for radiating inclined sound

机译:蜂窝夹芯板弯曲波传播特性分析及辐射倾斜声音的扬声器设计

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摘要

A loudspeaker for an auditory guiding system is proposed. This loudspeaker utilizes inclined sound transformed from a flexural wave in a honeycomb sandwich panel. We focused on the fact that the inclined sound propagates extensively with uniform level and direction. Furthermore, sound can be generated without group delay dispersion because the phase velocity of the flexural wave in the sandwich panel becomes constant with increasing frequency. These characteristics can be useful for an auditory guiding system in public spaces since voice-guiding navigation indicates the right direction regardless of position on a pathway. To design the proposed loudspeaker, the behavior of the sandwich panel is predicted using a theoretical equation in which the honeycomb core is assumed as an orthotropic continuum. We calculated the phase velocity dispersion of the flexural wave in the sandwich panel and compared the results obtained using the equation with those of a simulation based on the finite element method and an experiment in order to confirm the applicability of the theoretical equation. It was confirmed that the phase velocities obtained using the theoretical equation and by the simulation were in good agreement with that obtained experimentally. The obtained results suggest that the behavior of the sandwich panel can be predicted using the parameters of the panel. In addition, we designed an optimized honeycomb sandwich panel for radiating inclined sound by calculating the phase velocity characteristics of various panels that have different parameters of core height and cell size using the theoretical equation. Sound radiation from the optimized panel was simulated and compared with that of a homogeneous plate. It was clear that the variance of the radiation angle with varying frequency of the optimized panel was smaller than that of the homogeneous plate. This characteristic of sound radiation with a uniform angle is useful for indicating the destination direction. On the basis of this fact, we established a design method of the flat-panel loudspeaker for generating inclined sound using a honeycomb sandwich panel. (C) 2015 The Japan Society of Applied Physics
机译:提出了一种用于听觉引导系统的扬声器。该扬声器利用蜂窝夹层板中弯曲波产生的倾斜声音。我们关注的事实是,倾斜的声音以均匀的水平和方向广泛传播。此外,由于夹层板中的弯曲波的相速度随着频率增加而恒定,因此可以产生声音而没有群延迟分散。这些特征对于公共场所的听觉引导系统很有用,因为语音导航可以指示正确的方向,而与路径的位置无关。为了设计所提出的扬声器,使用理论方程式来预测夹层板的性能,其中将蜂窝芯假定为正交各向异性连续体。我们计算了挠曲波在夹层板上的相速度色散,并将使用该方程式获得的结果与基于有限元方法的模拟结果和实验进行了比较,以确认该理论方程式的适用性。可以肯定的是,使用理论方程和通过仿真获得的相速度与通过实验获得的相速度非常吻合。获得的结果表明,可以使用面板的参数来预测夹芯板的行为。此外,我们通过使用理论方程计算具有不同芯高和单元尺寸参数的各种面板的相速度特性,设计了一种优化的蜂窝夹层板,用于辐射倾斜声音。模拟了来自优化面板的声音辐射,并将其与均质板的声音辐射进行了比较。显然,优化面板的辐射角随频率变化的变化要小于均质板的变化。具有均匀角度的声音辐射的这一特性可用于指示目标方向。基于这一事实,我们建立了一种利用蜂窝夹层板产生倾斜声音的平板扬声器的设计方法。 (C)2015年日本应用物理学会

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  • 来源
    《Japanese journal of applied physics》 |2015年第7s1期|07HB08.1-07HB08.8|共8页
  • 作者单位

    Univ Tsukuba, Grad Sch Syst & Informat Engn, Tsukuba, Ibaraki 3058573, Japan.;

    Univ Tsukuba, Fac Engn Informat & Syst, Tsukuba, Ibaraki 3058573, Japan.;

    Univ Tsukuba, Fac Engn Informat & Syst, Tsukuba, Ibaraki 3058573, Japan.;

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