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Phononic band gaps of elastic periodic structures: a homogenization theory study

机译:弹性周期结构的声子带隙:均质化理论研究

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In this study, we investigate band structures of phononic crystals with particular emphasis on the effects of the mass density ratio and of the contrast of elastic constants. The phononic crystals consist of arrays of different media embedded in a rubber or epoxy. It is shown that the density ratio rather than the contrast of elastic constants is the dominant factor that opens up phononic band gaps. The physical background of this observation is explained by applying the theory of homogenization to investigate the group velocities of the low-frequency bands at the center of symmetry Γ.
机译:在这项研究中,我们研究了声子晶体的能带结构,特别着重于质量密度比和弹性常数对比的影响。声子晶体由嵌入在橡胶或环氧树脂中的不同介质的阵列组成。结果表明,密度比而不是弹性常数的对比是打开声子带隙的主要因素。该观察的物理背景是通过应用均质化理论研究对称Γ中心的低频带的群速度来解释的。

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