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VIBROACOUSTIC BEHAVIOUR OF CLAMPED DOUBLE-WALL PANELS LINED WITH POROELASTIC MATERIALS

机译:夹紧双壁板夹带孔弹性材料的纵传行为

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This paper addresses analytically the vibroacoustic problem of sound transmission across a rectangular double-wall sandwich panel clamp mounted on an infinite acoustic rigid baffle and lined with poroelastic material. Biot's theory is employed to describe wave propagation in elastic porous media and various configurations based on the coupling method of the poroelastic material to the facing plate are considered. With the clamped boundary accounted for by using the modal superposition theory, a double series solution for the sound transmission loss of the structure is obtained by employing the weighted residual (Galerkin) method. The analytical model is validated against previous theoretical results of a single sound wave under normal incidence. The numerical results suggest that the poroelastic material and the clamped boundary have significant effects on the sound transmission loss and the panel deflection mode shapes. The configuration with two air gaps separating the porous layer from the facing plates exhibits the best overall performance on sound insulation.
机译:本文通过分析地址矩形双壁夹芯板夹具的分析地址,安装在无限声学刚性挡板上,衬砌搭配孔弹性材料。 Biot理论用于描述弹性多孔介质中的波传播,并且考虑了基于孔弹性材料的耦合方法的各种配置被认为是对面板的。利用夹紧边界通过使用模态叠加理论占,通过采用加权残留(Galerkin)方法,获得了对结构的声音传输损失的双串联解决方案。分析模型在正常发病率下验证了单一声波的先前理论结果。数值结果表明,多孔塑料和夹紧边界对声音传输损耗和面板偏转模式形状具有显着影响。具有两个空气间隙的配置,将多孔层与朝向板分离出现最佳整体性能在隔音上。

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