半空间等温边界反射P-和SV-磁热弹性波的双相位滞后模型

IF 0.6 4区 工程技术 Q4 MECHANICS
S. M. Abo-Dahab, A. E. Abouelregal, Maha M. Helmi, A. M. Abd-Alla, Mnahil M. Bashier
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引用次数: 0

摘要

本文采用理论双相滞后模型,研究了在等温和无应力条件下均匀各向同性广义磁热弹性半空间中sv波和p波的反射。在具有双相位滞后(DPL)的Tzou模型框架中采用了基本控制方程。结果表明:平面波为p波、热波和sv波。本研究考虑反射一个等温无应力表面来得到这些波的振幅比,从而得到p波和sv波。用图形给出了广义热弹性理论的振幅比。最后,将所得结果与文献结果进行比较。把目前的结果与别人以前提出的结果作了比较。数值和图形结果强调了相位滞后和磁场对纵波和sv波反射现象的显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dual-Phase-Lag Model on Reflection of P- and SV- Magneto-Thermoelastic Waves from Isothermal Boundary of a Half-Space

Dual-Phase-Lag Model on Reflection of P- and SV- Magneto-Thermoelastic Waves from Isothermal Boundary of a Half-Space

This study investigates reflection of SV-wave as well as p-wave within a homogeneous and isotropic generalized magneto-thermoelastic half-space subjected to isothermal and stress-free, employing the theoretical dual-phase-lag model. The fundamental governing equations are employed in the framework of Tzou model with dual-phase-lag (DPL). The results showed three plane waves, i.e. p-, thermal, as well as SV-waves. The study considered reflecting an isothermal stressed-free surface to get the amplitude ratios of these waves for getting p- and SV-waves. The amplitude ratios were given graphically for the generalized theories of thermoelasticity. Finally, the obtained results were compared with the findings of the literature. A comparison has been made between the present results and the previous results presented by others. The numerical and graphical results underscore the significant influence of phase lag and magnetic field on the phenomenon of reflection of p-wave and SV-wave.

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来源期刊
Mechanics of Solids
Mechanics of Solids 医学-力学
CiteScore
1.20
自引率
42.90%
发文量
112
审稿时长
6-12 weeks
期刊介绍: Mechanics of Solids publishes articles in the general areas of dynamics of particles and rigid bodies and the mechanics of deformable solids. The journal has a goal of being a comprehensive record of up-to-the-minute research results. The journal coverage is vibration of discrete and continuous systems; stability and optimization of mechanical systems; automatic control theory; dynamics of multiple body systems; elasticity, viscoelasticity and plasticity; mechanics of composite materials; theory of structures and structural stability; wave propagation and impact of solids; fracture mechanics; micromechanics of solids; mechanics of granular and geological materials; structure-fluid interaction; mechanical behavior of materials; gyroscopes and navigation systems; and nanomechanics. Most of the articles in the journal are theoretical and analytical. They present a blend of basic mechanics theory with analysis of contemporary technological problems.
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