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DYNAMIC MASS DENSITY AND ACOUSTIC METAMATERIALS

机译:动态质量密度和声学材料

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摘要

Mass density of a composite is generally taken as the volume-averaged value of components' densities. Moreover, the same volume-averaged mass density is usually used to calculate the wave speed in the long wavelength limit, i.e., where the wavelength is much larger than the size of the inhomogeneities. In this work we show via rigorous derivation that the dynamic mass density used in the calculation of (long wavelength) wave speed can differ significantly from the static volume averaged value. This recognition is shown to yield an excellent account of some recent experimental data, as well as to make possible the realization of acoustic metamaterials. Physical reason for the difference between two mass densities is attributed to the relative motion between the components. That is, the implicit assumption - that all components in a composite must move uniformly in the long wavelength limit - can be violated in the limit of large acoustic impedance contrast between the components. The dynamic mass density can even be negative for the locally resonant sonic materials as demonstrated both experimentally and theoretically. The implications of this finding, in the context of acoustic metamaterials, are discussed.
机译:通常将复合材料的质量密度作为组件密度的体积平均值。此外,通常使用相同的体积平均质量密度来计算长波长范围内的波速,即波长远大于不均匀度的大小。在这项工作中,我们通过严格的推导表明,在(长波长)波速计算中使用的动态质量密度可能与静态体积平均值有很大差异。事实证明,这种认可可以很好地说明一些最新的实验数据,并使声学超材料的实现成为可能。两个质量密度之间差异的物理原因归因于组件之间的相对运动。也就是说,隐含的假设(复合材料中的所有组件必须在长波长范围内均匀移动)可能会受到组件之间较大的声阻抗对比的限制。如在实验和理论上所证实的,动态质量密度甚至对于局部共振的声波材料而言是负的。在声学超材料的背景下,讨论了这一发现的含义。

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