基于波数有限元和边界元的型材板结构隔声特性研究

Sound insulation characteristics of truss-cored flat panels based on wavenumber finite elements and boundary integral equations

  • 摘要: 列车型材板结构是车体结构的主要组成部分,距离轮轨噪声源较近、噪声辐射面积大,其声学性能直接影响列车乘坐的舒适性。本文基于波数有限元和边界积分方程建立某列车地板铝型材结构的波数有限元模型和隔声预测模型,计算型材板结构的波数、传声损失和特征向量,研究铝型材的频散特性、隔声特性及截面弹性波波动形态,并将计算结果与参考文献中结果进行对比,验证了模型的正确性;在此基础上,研究型材板结构夹芯层拓扑几何形状对铝型材隔声特性的影响。结果表明:改变夹芯层拓扑形状会显著改变弹性波频散曲线的变化规律,影响铝型材的隔声性能;对比几种常见型材拓扑结构发现:“人”字型筋板结构具有较高的隔声量和较低的质量。本研究可为型材板结构的低噪声和轻量化设计提供参考。

     

    Abstract: As the main component of the train body structure, the truss-cored flat panel is situated close to the wheel-track noise source and has a large area for noise radiation, and its acoustic performance directly influences the riding comfort of trains. This paper first establishes the wavenumber finite-element model and a sound-insulation prediction model for an aluminum truss-cored train floor using wavenumber finite elements and boundary integral equations. The wavenumber, transmission loss, and eigenvectors of the structure are calculated. The dispersion characteristics, sound-insulation performance and cross-sectional wave-modes of elastic waves are studied. The calculated results are compared with the prediction given in the references to verify the proposed model. Furthermore, this paper investigates the effects of the core layer's topological geometry of the extruded panel on the sound-insulation characteristics of aluminum extruded panels. The results show that varying the topological configuration of the core layer significantly changes the variation pattern of dispersion curves of elastic waves, which affects the sound-insulation properties of aluminum extruded panels. By comparing the topologies of classic extruded structures, it is found that the ‘herringbone’ ribbed plate structure has a relatively higher sound-insulation level and lower mass. This study can provide a reference for designing quiet and lightweight extruded panels.

     

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