Elastodynamic Response of a Three-Phase-Lag Model of Orthorhombic Thermoviscoelastic Material with Reference Temperature Dependent Properties

IF 2.4 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Molecular and Engineering Materials Pub Date : 2020-03-01 DOI:10.1142/s2251237320500021
L. Rani
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引用次数: 1

Abstract

A three-phase-lag model of a homogeneous thermally conducting orthorhombic thermoviscoelastic material under the effect of the dependence of reference temperature on all elastic and thermal parameters is investigated. The Laplace and Fourier transform and eigenvalue approach techniques are used to solve the resulting nondimensional coupled equations. As an application of the problem, harmonically varying and sinusoidal pulse functions are considered. Numerical results for the field quantities are given in the physical domain and illustrated graphically. Comparisons are made for thermoviscoelastic temperature dependent, thermoviscoelastic and thermoelastic materials, respectively, for different values of time, for temperature gradient boundary.
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具有参考温度相关特性的正交热粘弹性材料三相滞后模型的弹动力响应
研究了参考温度与所有弹性和热参数依赖关系下均质导热正交热粘弹性材料的三相滞后模型。利用拉普拉斯变换、傅立叶变换和特征值逼近技术求解得到的无量纲耦合方程。作为该问题的应用,考虑了变谐脉冲函数和正弦脉冲函数。给出了物理域的场量的数值结果,并用图形说明。在温度梯度边界下,分别对热粘弹性、热粘弹性和热弹性材料在不同的时间值下进行了比较。
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Journal of Molecular and Engineering Materials
Journal of Molecular and Engineering Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-
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