Study of vibrations in smart materials semiconductor under differential imperfect contact mechanism and nanoscale effect with electromechanical coupling effect

IF 2.9 3区 工程技术 Q2 MECHANICS Acta Mechanica Pub Date : 2025-03-12 DOI:10.1007/s00707-025-04279-9
Benjamin Lalrinhlua, Abdulkafi Mohammed Saeed, Abdul Hamid Ganie,  Seema, Rakhi Tiwari, Soumik Das, Fatemah Mofarreh, Abhinav Singhal
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Abstract

The work focuses on the transference of Love-type waves which are surface seismic waves that cause horizontal displacement perpendicular to the direction of propagation, in a multiferroic solid cylindrical structure, where the interface is assumed to be imperfect and made of a magneto-electro-elastic (MEE) structure. The analytical solution for the layer is obtained using the spatially variable quasi-classical technique which approximates complicated differential equations while maintaining their key physical properties. The coefficients of wave’s phase velocities and attenuation are greatly affected by different parameters as shown in the numerical example. In addition, a graphical comparison of electrical, magnetic, mechanical, magneto-mechanical, electromechanical, and magneto-electrical imperfections in electrically and magnetically open and short cases is presented. The phase velocity is higher in the electrically and magnetically open case as compared to the short case as shown in the results. Some major outcomes are summarized here: the bonding parameter is highly proportional to the phase velocity and inversely proportional to the attenuation coefficient, and imperfection parameters have a serious influence on the curve of phase velocity and attenuation coefficient. This theoretical study leads to the understanding of piezoelectric and piezomagnetic coupling and its potential application and design to sensors, actuators, energy harvesters, and nano-electronics. The novelty lies in the adoption of the quasi-classical method to approach solving differential equations using a polar coordinate system for the first time.

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机电耦合效应下差分不完全接触机制和纳米效应下智能材料半导体的振动研究
这项工作的重点是洛夫型波的转移,这是一种表面地震波,它在多铁固体圆柱形结构中引起垂直于传播方向的水平位移,其中界面被认为是不完美的,由磁电弹性(MEE)结构组成。采用空间变准经典技术,在保持复杂微分方程关键物理性质的前提下逼近复杂微分方程,得到了该层的解析解。数值算例表明,不同的参数对波的相速度系数和衰减系数有很大的影响。此外,还提供了电气、磁性、机械、磁机械、机电和磁电缺陷在电气和磁性开合和短路情况下的图形比较。与结果所示的短情况相比,在电和磁打开情况下相速度更高。总结了一些主要结果:键合参数与相速度成高度正比,与衰减系数成反比,缺陷参数对相速度和衰减系数曲线影响严重。这一理论研究有助于理解压电和压磁耦合及其在传感器、致动器、能量采集器和纳米电子领域的潜在应用和设计。新颖之处在于首次采用准经典方法在极坐标系下求解微分方程。
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来源期刊
Acta Mechanica
Acta Mechanica 物理-力学
CiteScore
4.30
自引率
14.80%
发文量
292
审稿时长
6.9 months
期刊介绍: Since 1965, the international journal Acta Mechanica has been among the leading journals in the field of theoretical and applied mechanics. In addition to the classical fields such as elasticity, plasticity, vibrations, rigid body dynamics, hydrodynamics, and gasdynamics, it also gives special attention to recently developed areas such as non-Newtonian fluid dynamics, micro/nano mechanics, smart materials and structures, and issues at the interface of mechanics and materials. The journal further publishes papers in such related fields as rheology, thermodynamics, and electromagnetic interactions with fluids and solids. In addition, articles in applied mathematics dealing with significant mechanics problems are also welcome.
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