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Effects of poisson's ratio on the band gaps of three-dimensional solid/solid phononic crystals

机译:泊松比对三维固体/固体声子晶体带隙的影响

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摘要

Phononic crystals (PCs) are a kind of acoustic composite materials which have periodic structures and exhibit elastic wave (EW) band gaps. Due to their unique properties the phononic crystals have potential applications in acoustic devices and noise control, etc. The effects of both positive and negative Poisson's ratios on the phononic band gaps (PBGs) due to either Bragg scattering or locally resonance in three-dimensional (3D) solid/solid phononic crystals with a simple-cubic (SC) lattice are studied. The band structures are obtained by the finite difference time domain (FDTD) method combined with the fast Fourier transform- (FFT-) based postprocessing method. The numerical results show that Poisson's ratio of the scatterer plays an important role in tuning the PBGs.
机译:声子晶体(PCs)是一种具有周期结构并表现出弹性波(EW)带隙的声学复合材料。由于其独特的性质,声子晶体在声学设备和噪声控制等方面具有潜在的应用。正弦和负泊松比对声带隙(PBG)的影响是由于布拉格散射或三维共振引起的( 3D)研究了具有简单立方(SC)晶格的固体/固体声子晶体。通过有限差分时域(FDTD)方法与基于快速傅里叶变换(FFT)的后处理方法相结合来获得能带结构。数值结果表明,散射体的泊松比在调整PBG中起着重要作用。

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