重力和静水初始应力对三相滞后热弹性波传播的影响

IF 0.6 4区 工程技术 Q4 MECHANICS
Sangeeta Kumari, Mandeep Singh, Surbhi Sharma
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引用次数: 0

摘要

本文的主要目的是研究磁热弹性介质在三相滞后(TPL)双温模型下重力、静水初始应力和磁场对波传播的影响。采用正态分析方法求解了三相滞后模型的控制方程,推导出位移和应力变量的精确表达式。在存在和不存在重力场的情况下,钴材料的物理量被用于图形表示。在三相滞后(TPL)模型和Lord-Shulman (L-S)理论的背景下,用不同的磁场和静水初始应力值对结果进行了比较。研究发现,在三相滞后(TPL)模型和Lord-Shulman (L-S)理论下,场量的影响是显著的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Influence of Gravity and Hydrostatic Initial Stress on Wave Propagation in Context of Three Phase Lag Thermoelasticity

Influence of Gravity and Hydrostatic Initial Stress on Wave Propagation in Context of Three Phase Lag Thermoelasticity

The prime objective of this research paper is to study the impact of gravity, hydrostatic initial stress and magnetic field on the wave propagation in the context of three phase lag (TPL) model with two temperature for magneto-thermoelastic medium. The governing equations of three phase lag (TPL) model have been solved by normal mode analysis to deduce the exact expression of displacement and stress variables. The physical quantities for Cobalt material have been used for the graphical representation in the presence and absence of gravity field. The results have been compared in the context of three phase lag (TPL) model and Lord–Shulman (L–S) theory with distinct values of both magnetic field and hydrostatic initial stress. It has been observed that there is significant effect of field quantities under the three phase lag (TPL) model and Lord–Shulman (L–S) theory.

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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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