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The low frequency performance of metamaterial barriers based on cellular structures

机译:基于细胞结构的超材料屏障的低频性能

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摘要

The high sound transmission loss (STL) metamaterials that have been suggested to-date commonly require the introduction of relatively heavy resonating or constraining components which limit the applicability of these solutions in typical noise control applications where it is desirable to minimize the treatment mass at a given STL. Here it is proposed that a panel consisting of an array of cellular unit structures can possess a high STL within a specified low frequency range without an undue mass penalty. The cellular acoustical metamaterial considered comprises a periodic arrangement of unit cells consisting of plates held in a grid-like frame (which itself is unsupported). It is suggested here that such a cellular panel can yield enhanced STL if the unit cell mass is apportioned appropriately between the unit cell plate and the surrounding grid-like frame, the effect being similar to the high STL observed in the low frequency range for a plate clamped along its edges. A finite element-model of a single unit cell was used to predict the normal incidence transmission loss of the periodic array by imposing boundary conditions that enforce spatial periodicity. Two material designs were compared: one in which the densities of the materials used for the unit plate panel and the grid were changed relative to each other, and a second where the relative thicknesses of the unit plate panel and the grid frame were varied. The numerical simulations indicate that benefits can be achieved in either case. However, the design based on density variations appears to be more effective than the approach based on geometry alteration in creating a relatively broad range of low frequency transmission loss enhancement.
机译:迄今为止,已提出的高声传输损耗(STL)超常材料通常需要引入相对较重的谐振或约束组件,这限制了这些解决方案在典型的噪声控制应用中的适用性,在这些应用中,希望在最大程度上降低处理质量的前提下。给定STL。在此提出,由蜂窝单元结构的阵列组成的面板可以在指定的低频范围内具有高的STL,而不会造成不必要的质量损失。所考虑的蜂窝声学超材料包括单元格的周期性排列,该单元格由固定在网格状框架(本身不受支撑)中的板组成。在此建议,如果在晶胞板和周围的网格状框架之间适当地分配晶胞质量,则这种蜂窝板可以产生增强的STL,其效果类似于在低频范围内观察到的高STL。板沿其边缘夹紧。通过施加强制执行空间周期性的边界条件,使用单个单位单元的有限元模型来预测周期性阵列的法向入射透射损失。比较了两种材料设计:一种用于单位板面板和栅格的材料密度相对于彼此改变,另一种设计中单位板面板和栅格框架的相对厚度不同。数值模拟表明,在任何一种情况下都可以实现好处。但是,基于密度变化的设计似乎比基于几何形状更改的方法在创建相对广泛的低频传输损耗增强方面更为有效。

著录项

  • 来源
    《Applied Acoustics》 |2013年第4期|485-495|共11页
  • 作者单位

    School of Mechanical Engineering, 585 Purdue Mall, West Lafayette, IN 47907-2088, USA;

    Ray W. Herrick Laboratories, School of Mechanical Engineering, Purdue University, 140 S. Martin Jischke Drive, West Lafayette, IN 47907-2031, USA;

    School of Mechanical Engineering, 585 Purdue Mall, West Lafayette, IN 47907-2088, USA;

    School of Mechanical Engineering, 585 Purdue Mall, West Lafayette, IN 47907-2088, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    metamaterials; transmission loss; low frequency;

    机译:超材料传输损耗;低频率;
  • 入库时间 2022-08-17 13:30:08

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