4.6 Article

Generalized thermoelastic interaction in functional graded material with fractional order three-phase lag heat transfer

Journal

JOURNAL OF CENTRAL SOUTH UNIVERSITY
Volume 22, Issue 5, Pages 1606-1613

Publisher

JOURNAL OF CENTRAL SOUTH UNIV
DOI: 10.1007/s11771-015-2677-5

Keywords

three-phase lag model; functionally graded materials; fractional calculus; generalized thermoelasticity

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The present work is concerned with the solution of a problem on thermoelastic interactions in a functional graded material due to thermal shock in the context of the fractional order three-phase lag model. The governing equations of fractional order generalized thermoelasticity with three-phase lag model for functionally graded materials (FGM) (i.e., material with spatially varying material properties) are established. The analytical solution in the transform domain is obtained by using the eigenvalue approach. The inversion of Laplace transform is done numerically. The graphical results indicate that the fractional parameter has significant effects on all the physical quantities. Thus, we can consider the theory of fractional order generalized thermoelasticity an improvement on studying elastic materials.

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