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The study of thermoelasticity examines the mutual interaction between thermal and mechanical responses in materials, where temperature variations induce elastic deformations and stress fields, and ...
This field examines the intricate coupling between thermal effects and elastic deformation in materials containing pores or voids. The study of thermoelasticity in porous media involves ...
The Cauchy problem in nonlinear thermoelasticity with second sound in one space dimension is considered. Due to Cattaneo's law, replacing Fourier's law for heat conduction, the system is hyperbolic.
Actuators working on the principle of thermoelasticity exhibit specific properties (particularly very high forces at small shifts) and may be used, for example, as prospective fixing elements in ...
The study is on nonlocal dual phase lag model and its effect on initial stress, gravity, and micropolar with two temperatures in thermodynamic interactions that satisfy the prerequisite periphery ...
Dedicated to innovative and consequential research in applied mechanics, including newly emerging areas such as biomechanics, electromechanics, the mechanical behavior of advanced materials, ...
To investigate the boundary value problems of the theory of elasticity and thermoelasticity by potential method, it is necessary to construct a fundamental solution of systems of partial differential ...
The finite element method (FEM) is a numerical method for solving problems of engineering and mathematical physics. Typical problem areas of interest include structural analysis, heat transfer, fluid ...