We propose a thermodynamic model to describe the thermoelastic behavior of Functionally Graded Materials. Specifically, the thermoelastic response of these materials to coupled thermal and elastic perturbations is studied in view of a nonlinear heat-transport equation. The necessary and sufficient conditions ensuring the compatibility of the model with second law of thermodynamics are carried out. Propagation of thermoelastic waves, both in equilibrium and nonequilibrium states, is analyzed. The influence of the stoichiometry on the speed of propagation of coupled first-and second-sound waves is pointed out
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
A theoretical model to describe heat transport in functionally graded nanomaterials is developed in ...
We propose a thermodynamic model to describe the thermoelastic behavior of Functionally Graded Mater...
We propose a thermodynamic model to describe the thermoelastic behavior of Functionally Graded Mater...
We propose a thermodynamic model to describe the thermoelastic behavior of Functionally Graded Mater...
We propose a thermodynamic model to describe the thermoelastic behavior of Functionally Graded Mater...
We propose a thermodynamic model to describe the thermoelastic behavior of Functionally Graded Mater...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
A theoretical model to describe heat transport in functionally graded nanomaterials is developed in ...
We propose a thermodynamic model to describe the thermoelastic behavior of Functionally Graded Mater...
We propose a thermodynamic model to describe the thermoelastic behavior of Functionally Graded Mater...
We propose a thermodynamic model to describe the thermoelastic behavior of Functionally Graded Mater...
We propose a thermodynamic model to describe the thermoelastic behavior of Functionally Graded Mater...
We propose a thermodynamic model to describe the thermoelastic behavior of Functionally Graded Mater...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
We study coupled nonlinear first- and second-sound propagation along equilibrium and nonequilibrium ...
A theoretical model to describe heat transport in functionally graded nanomaterials is developed in ...