平面波在两个旋转微电极压电固体半空间界面上的反射和透射

IF 0.6 4区 物理与天体物理 Q4 ACOUSTICS Archives of Acoustics Pub Date : 2023-07-20 DOI:10.24425/aoa.2021.138155
Baljeet Singh, A. Sangwan, J. Singh
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引用次数: 1

摘要

本文研究了横观各向同性微极压电材料在两个不同半空间界面上平面波的反射和透射问题。假设整个模型以匀速角速度旋转。旋转微极压电介质和横向各向同性微极压电介质的控制方程在一个平面上进行了专一化。二维耦合控制方程的平面波解显示了三个耦合平面波可能的传播。对于入射平面波在两个不同半空间之间的界面,三个反射波和三个透射波以不同的速度传播。得到了反射波和透射波振幅比之间的关系。得到了反射波和透射波能量比的表达式。本文考虑了该模型的一个数值例子来图解地说明旋转对速度和能量比的影响。
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Reflection and Transmission of Plane Wave at an Interface Between Two Rotating Micropolar Piezoelectric Solid Half-Spaces
In this paper, we investigate a problem on reflection and transmission of plane-waves at an interface between two dissimilar half-spaces of a transversely isotropic micropolar piezoelectric material. The entire model is assumed to rotate with a uniform angular velocity. The governing equations of rotating and transversely isotropic micropolar piezoelectric medium are specialized in a plane. Plane-wave solutions of two-dimensional coupled governing equations show the possible propagation of three coupled plane-waves. For an incident plane-wave at an interface between two dissimilar half-spaces, three reflected and three transmitted waves propagate with distinct speeds. The connections between the amplitude ratios of reflected and transmitted waves are obtained. The expressions for the energy ratios of reflected and transmitted waves are also obtained. A numerical example of the present model is considered to illustrate the effects of rotation on the speeds and energy ratios graphically.
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来源期刊
Archives of Acoustics
Archives of Acoustics 物理-声学
CiteScore
1.80
自引率
11.10%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Archives of Acoustics, the peer-reviewed quarterly journal publishes original research papers from all areas of acoustics like: acoustical measurements and instrumentation, acoustics of musics, acousto-optics, architectural, building and environmental acoustics, bioacoustics, electroacoustics, linear and nonlinear acoustics, noise and vibration, physical and chemical effects of sound, physiological acoustics, psychoacoustics, quantum acoustics, speech processing and communication systems, speech production and perception, transducers, ultrasonics, underwater acoustics.
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