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Propagation of acoustic wave in one-dimensional phononic crystals with magnetorheological fluids

机译:声波在一维声晶与磁流变流体中的传播

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In this paper we present a kind of phononic crystals(PCs) with magnetorheological fluids(MRFs) and its band gaps can be tuned by the magnetic field for the reason that modulus of MRFs can be changed by means of the magnetic field. Finite element method and experimental method are applied to study the propagation of acoustic waves in the PC. Firstly, we obtain the variety of the shear storage modulus and the loss modulus of MRFs under different magnetic flux density. Secondly, relationships between the magnetic flux density and band gaps of the PC are achieved. We find that band gaps change in response to the magnetic field at first, but they keep constant when MRFs reach magnetic saturation state. The results demonstrate the feasibility of tuning band gaps by MRFs with changed magnetic field.
机译:在本文中,我们提出了一种具有磁流变流体(MRF)的声子晶体(PC),并且其带隙可以由磁场调节,因为MRFS的模量可以通过磁场改变。有限元方法和实验方法应用于研究PC中声波的传播。首先,我们在不同磁通密度下获得剪切储存模量和MRF的损耗模量。其次,实现了PC的磁通密度和带间隙之间的关系。我们发现频带间隙首先响应磁场而变化,但是当MRF达到磁饱和状态时它们保持恒定。结果证明了MRFS改变磁场调谐带间隙的可行性。

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