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Sound transmission through triple-panel structures lined with poroelastic materials

机译:通过衬有多孔弹性材料的三面板结构进行声音传输

摘要

In this paper, previous theories on the prediction of sound transmission loss for a double-panel structure lined with poroelastic materials are extended to address the problem of a triple-panel structure. Six typical configurations are considered for a triple-panel structure based on the method of coupling the porous layers to the facing panels which determines critically the sound insulation performance of the system. The transfer matrix method is employed to solve the system by applying appropriate types of boundary conditions for these configurations. The transmission loss of the triple-panel structures in a diffuse sound field is calculated as a function of frequency and compared with that of corresponding double-panel structures. Generally, the triple-panel structure with poroelastic linings has superior acoustic performance to the double-panel counterpart, remarkably in the mid-high frequency range and possibly at low frequencies, by selecting appropriate configurations in which those with two air gaps in the structure exhibit the best overall performance over the entire frequency range. The poroelastic lining significantly lowers the cut-on frequency above which the triple-panel structure exhibits noticeably higher transmission loss. Compared with a double-panel structure, the wider range of system parameters for a triple-panel structure due to the additional partition provides more design space for tuning the sound insulation performance. Despite the increased structural complexity, the triple-panel structure lined with poroelastic materials has the obvious advantages over its double-panel counterpart while without the penalties in weight and volume, and is hence a promising replacement for the widely used double-panel sandwich structure.
机译:在本文中,关于多孔弹性材料衬里的双面板结构的传声损失预测的先前理论得到了扩展,以解决三面板结构的问题。基于将多孔层耦合到面板的方法,考虑了三块面板结构的六个典型配置,这决定了系统的隔音性能。通过对这些配置应用适当类型的边界条件,采用转移矩阵方法来求解系统。根据频率计算三层面板结构在声场中的传输损耗,并将其与相应的双面板结构的传输损耗进行比较。通常,通过选择合适的配置,使具有多孔结构衬里的三面板结构在结构上具有两个气隙的结构表现出比双面板结构更好的声学性能,特别是在中高频范围,甚至在低频范围在整个频率范围内具有最佳的整体性能。多孔弹性衬里显着降低了接通频率,在该频率以上,三层面板结构表现出明显更高的传输损耗。与双面板结构相比,由于增加了隔板,三面板结构的系统参数范围更广,为调节隔音性能提供了更多的设计空间。尽管增加了结构复杂性,但衬有多孔弹性材料的三层板结构相对于其双层板结构具有明显的优势,而没有重量和体积上的损失,因此,有望成为广泛使用的双层板夹心结构的替代品。

著录项

  • 作者

    Liu Y;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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