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Wave propagation in transversely isotropic porous piezoelectric materials

机译:横观各向同性多孔压电材料中的波传播

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摘要

Wave propagation in porous piezoelectric material (PPM), having crystal symmetry 6 mm, is studied analytically. Christoffel equation is derived for the propagation of plane harmonic waves in such a medium. The roots of this equation give four complex wave velocities which can propagate in such materials. The phase velocities of propagation and the attenuation quality factors of all these waves are described in terms of complex wave velocities. Phase velocities and attenuation of the waves in PPM depend on the phase direction. Numerical results are computed for the PPM BaTiO3. The variation of phase velocity and attenuation quality factor with phase direction, porosity and the wave frequency is studied. The effects of anisotropy and piezoelectric coupling are also studied. The phase velocities of two quasi dilatational waves and one quasi shear waves get affected due to piezoelectric coupling while that of type 2 quasi shear wave remain unaffected. The phase velocities of all the four waves show non-dispersive behavior after certain critical high frequency. The phase velocity of all waves decreases with porosity while attenuation of respective waves increases with porosity of the medium. The characteristic curves, including slowness curves, velocity curves, and the attenuation curves, are also studied in this paper.
机译:分析地研究了晶体对称性为6 mm的多孔压电材料(PPM)中的波传播。推导Christoffel方程用于在这种介质中传播平面谐波。该方程的根给出了可以在这种材料中传播的四个复波速度。所有这些波的传播相位速度和衰减品质因数均以复波速度来描述。 PPM中波的相速度和衰减取决于相方向。计算出PPM BaTiO3的数值结果。研究了相速度和衰减品质因数随相方向,孔隙率和波频率的变化。还研究了各向异性和压电耦合的影响。压电耦合会影响两个准膨胀波和一个准剪切波的相速度,而类型2的准剪切波的相速度则保持不变。在特定的临界高频之后,所有四个波的相速度都表现出非色散行为。所有波的相速度随孔隙度而减小,而各波的衰减随介质的孔隙率而增大。本文还研究了特性曲线,包括慢度曲线,速度曲线和衰减曲线。

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