Two Temperature Magneto-Thermoelasticity with Initial Stress: State Space Formulation

S. Deswal, K. K. Kalkal
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引用次数: 11

Abstract

Magneto-thermoelastic interactions in an initially stressed isotropic homogeneous elastic half-space with two temperatures are studied using mathematical methods under the purview of the L-S model of linear theory of generalized thermoelasticity. The formalism deals with the state space approach with the purpose of counteracting the difficulties of handling the displacement potential functions. Of specific concern here is the propagation of waves owing to ramp type increase in temperature and load. The medium is considered to be permeated by a uniform magnetic field. The expressions for different field parameters such as displacement, temperature, strain, and stress in the physical domain are obtained by applying a numerical inversion technique. Results of some earlier workers have been deduced from the present formulation. Numerical work is also performed for a suitable material with the aim of illustrating the results.
具有初始应力的二温磁热弹性:状态空间公式
在广义热弹性线性理论的L-S模型的范围内,利用数学方法研究了具有两种温度的初始应力各向同性均匀弹性半空间中的磁-热弹性相互作用。形式主义处理状态空间方法,目的是克服处理位移势函数的困难。这里特别关注的是由于温度和载荷的斜坡型增加而引起的波的传播。介质被认为被均匀的磁场所渗透。应用数值反演技术,得到了不同场参数如位移、温度、应变和应力在物理域中的表达式。一些早期工作者的结果是从这个公式推导出来的。为了说明结果,还对一种合适的材料进行了数值计算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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