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Influence of rectangular and parabolic irregularities on the propagation behavior of transverse wave in a piezoelectric layer: A comparative approach

机译:矩形和抛物线形不规则对横向波在压电层中传播行为的影响:一种比较方法

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Purpose - The purpose of this paper is to theoretically analyze the propagation of Love-type wave in an irregular piezoelectric layer superimposed on an isotropic elastic substrate. Design/methodology/approach - The perturbation technique and Fourier transform have been applied for the solution procedure of the problem. The closed-form expressions of the dispersion relation have been analytically established considering different type of irregularities, namely, rectangular and parabolic for both the cases of electrically open and short conditions. Findings - The study reveals that the phase velocity of Love-type wave is prominently influenced by wave number, size of irregularity, piezoelectric constant and dielectric constant of an irregular piezoelectric layer. Numerical simulation and graphical illustrations have been effectuated to depict the pronounced impact of aforementioned affecting parameters on the phase velocity of Love-type wave. The major highlight of the paper is the comparative study carried out for rectangular irregularity and parabolic irregularity in both electrically open and short conditions. Classical Love wave equation has been recovered for both the electrical conditions as the limiting case when both media are elastic and interface between them is regular. Practical implications - The consequences of the study can be utilized in the design of surface acoustic wave devices to enhance their efficiency, as the material properties and the type of irregularities present in the piezoelectric layer enable Love-type wave to propagate along the surface of the layer promoting the confinement of wave for a longer duration. Originality/value - Up to now, none of the authors have yet studied the propagation of Love waves in a piezoelectric layer overlying an isotropic substrate involving both parabolic and rectangular irregularities. Further, the comparative study of rectangular irregularity and parabolic irregularity for both the cases of electrically open and short conditions elucidating the latent characteristics is among the major highlights and reflects the novelty of the present study.
机译:目的-本文的目的是从理论上分析Love型波在叠加在各向同性弹性基板上的不规则压电层中的传播。设计/方法/方法-摄动技术和傅里叶变换已用于解决问题的过程。考虑到不同类型的不规则性,即在电断开和短路情况下,矩形和抛物线的形式,已经分析地建立了色散关系的闭合形式。研究结果表明,洛夫型波的相速度受波数,不规则尺寸,不规则压电层的压电常数和介电常数的显着影响。已经进行了数值模拟和图形说明以描绘上述影响参数对洛夫型波的相速度的显着影响。该论文的主要亮点是在电开放和短路条件下对矩形不规则和抛物线不规则进行的比较研究。当两种介质都是弹性的并且它们之间的界面是规则的时,作为极限情况的两种电气条件都已经恢复了经典的Love波方程。实际意义-该研究的结果可用于表面声波器件的设计中,以提高其效率,因为压电层中的材料特性和不规则类型使Love型波能够沿声表面传播。层在更长的时间内促进了波的约束。独创性/价值-到目前为止,还没有作者研究Love波在覆盖各向同性衬底的压电层中的传播,该压电层包括抛物线形和矩形不规则形。进一步,对矩形不规则性和抛物线形不规则性进行比较研究以阐明其潜在特性的电开放和短时情况都是主要亮点,并且反映了本研究的新颖性。

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