四种理论下具有空隙、重力、初始应力和旋转的磁热弹表面波现象

IF 6.2 2区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY
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引用次数: 0

摘要

本文解决了表面波在非均质、高阶磁热弹性材料、初始应力、旋转、重力效应和空隙中传播研究中的一个重大研究空白。本研究提供了在旋转、电磁场、重力场和初始应力作用下,面波在由带有空隙的磁热弹性材料组成的介质中传播的解析解。考虑到外部参数的影响,通过数值计算得出了斯通利波和瑞利波的位移分量、体积分数、温度的解析解,并以图形方式展示。此外,还研究了磁场、空隙、重力、初始应力和纤维增强参数对这些波现象的影响。这项研究为了解电成分、空隙、斯通里波和瑞利波传播之间的协同动态提供了宝贵的见解,从而推动了传感器技术的进步、增强型能量采集方法的发展,并开创了地震监测方法。对于某些材料,还提供了数值模拟并以图形显示。这项研究的结果揭示了几种独特的情况,极大地促进了人们对雷利波和斯通利波在这种错综复杂的材料系统中传播的理解,尤其是在存在空隙的情况下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magneto-thermoelastic surface waves phenomenon with voids, gravity, initial stress, and rotation under four theories

This paper addresses a significant research gap in the study of surface waves propagation in a nonhomogeneous, within a magneto-thermoviscoelastic material of higher order, initial stress, rotation, gravity effects and voids. This study provides analytical solutions for surface waves propagating through a medium consisting of a magneto-thermoelastic material with voids under the rotation, electro-magnetic field, gravity field and initial stress. The analytical solutions are derived for the displacement components, volume fraction, temperature to Stoneley and Rayleigh waves are computed numerically and presented graphically considering the external parameters impact. Furthermore, this investigates how magnetic field, voids, gravity, initial stress and fiber-reinforced parameters influence these wave phenomena. This investigation provides valuable insights into the synergistic dynamics among electric constituents, voids, Stoneley and Rayleigh waves propagation, enabling advancements in sensor technology, augmented energy harvesting methodologies, and pioneering seismic monitoring approaches. For certain materials, numerical simulations are provided and graphically displayed. The results of this study reveal several unique cases that significantly contribute to the understanding of Rayleigh and Stoneley waves propagation within this intricate material system, particularly in the presence of voids.

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来源期刊
alexandria engineering journal
alexandria engineering journal Engineering-General Engineering
CiteScore
11.20
自引率
4.40%
发文量
1015
审稿时长
43 days
期刊介绍: Alexandria Engineering Journal is an international journal devoted to publishing high quality papers in the field of engineering and applied science. Alexandria Engineering Journal is cited in the Engineering Information Services (EIS) and the Chemical Abstracts (CA). The papers published in Alexandria Engineering Journal are grouped into five sections, according to the following classification: • Mechanical, Production, Marine and Textile Engineering • Electrical Engineering, Computer Science and Nuclear Engineering • Civil and Architecture Engineering • Chemical Engineering and Applied Sciences • Environmental Engineering
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