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      KCI등재 SCIE SCOPUS

      Generalized coupled non-Fickian/non-Fourierian diffusion- thermoelasticity analysis subjected to shock loading using analytical method

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      https://www.riss.kr/link?id=A103565120

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      다국어 초록 (Multilingual Abstract)

      In this article, the generalized coupled non-Fickian diffusion-thermoelasticity analysis is carried out using an analytical method. The transient behaviors of field variables, including mass concentration, temperature and displacement are studied in a...

      In this article, the generalized coupled non-Fickian diffusion-thermoelasticity analysis is carried out using an analytical method. The transient behaviors of field variables, including mass concentration, temperature and displacement are studied in a strip, which is subjected to shock loading. The governing equations are derived using generalized coupled non-Fickian diffusion-thermoelasticity theory, which is based on Lord-Shulman theory of coupled thermoelasticity. The governing equations are transferred to the frequency domain using Laplace transform technique and then the field variables are obtained in analytical forms using the presented method. The field variables are eventually determined in time domain by employing the Talbot technique. The dynamic behaviors of mass concentration, temperature and displacement are studied in details. It is concluded that the presented analytical method has a high capability for simulating the wave propagation with finite speed in mass concentration field as well as for tracking thermoelastic waves. Furthermore, the obtained results are more realistic than that of others.

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      참고문헌 (Reference)

      1 Kuang, Z.B., "Variational principles of generalized dynamical theory of thermopiezoelectricity" 203 : 1-11, 2009

      2 Hosseini, S.M., "Two dimensional transient analysis of coupled non-Fick diffusion-thermoelasticity based on Green-Naghdi theory using the meshless local Petrov-Galerkin (MLPG) method" 82 : 74-80, 2014

      3 Green, A.E., "Thermoelasticity without energy dissipation" 31 : 189-208, 1993

      4 Biot, M., "Thermoelasticity and irreversible thermodynamics" 27 : 240-253, 1956

      5 Green, A.E., "Thermoelasticity" 2 : 1-7, 1972

      6 Sherief, H.H., "The theory of generalized thermoelastic diffusion" 42 : 591-608, 2004

      7 Seyed Mahmoud Hosseini, "Stochastic analysis of elastic wave and second sound propagation in media with Gaussian uncertainty in mechanical properties using a stochastic hybrid mesh-free method" 국제구조공학회 49 (49): 41-64, 2014

      8 Hosseini, S.M., "Shock’-induced thermoelastic wave propagation analysis in a thick hollow cylinder without energy dissipation using mesh-free generalized finite difference (GFD) method" 224 : 465-478, 2013

      9 Hosseini, S.A., "Shock induced molar concentration wave propagation and coupled non-Fick diffusion-elasticity analysis using an analytical method" 225 : 3591-3599, 2014

      10 Levine Ira, N., "Physical Chemistry" McGraw Hill 2009

      1 Kuang, Z.B., "Variational principles of generalized dynamical theory of thermopiezoelectricity" 203 : 1-11, 2009

      2 Hosseini, S.M., "Two dimensional transient analysis of coupled non-Fick diffusion-thermoelasticity based on Green-Naghdi theory using the meshless local Petrov-Galerkin (MLPG) method" 82 : 74-80, 2014

      3 Green, A.E., "Thermoelasticity without energy dissipation" 31 : 189-208, 1993

      4 Biot, M., "Thermoelasticity and irreversible thermodynamics" 27 : 240-253, 1956

      5 Green, A.E., "Thermoelasticity" 2 : 1-7, 1972

      6 Sherief, H.H., "The theory of generalized thermoelastic diffusion" 42 : 591-608, 2004

      7 Seyed Mahmoud Hosseini, "Stochastic analysis of elastic wave and second sound propagation in media with Gaussian uncertainty in mechanical properties using a stochastic hybrid mesh-free method" 국제구조공학회 49 (49): 41-64, 2014

      8 Hosseini, S.M., "Shock’-induced thermoelastic wave propagation analysis in a thick hollow cylinder without energy dissipation using mesh-free generalized finite difference (GFD) method" 224 : 465-478, 2013

      9 Hosseini, S.A., "Shock induced molar concentration wave propagation and coupled non-Fick diffusion-elasticity analysis using an analytical method" 225 : 3591-3599, 2014

      10 Levine Ira, N., "Physical Chemistry" McGraw Hill 2009

      11 Cohen, A.M., "Numerical methods for Laplace transform inversion" Springer USA 2007

      12 Shariyat, M., "Nonlinear transient thermal stress and elastic wave propagation analyses of thick temperature-dependent FGM cylinders using a second-order pointcollocation method" 34 : 898-918, 2010

      13 Shariyat, M., "Nonlinear transient stress and wave propagation analyses of the FGM thick cylinders, employing a unified generalized thermoelasticity theory" 65 : 24-37, 2012

      14 Shariyat, M., "Nonlinear thermoelasticity, vibration, and stress wave propagation analyses of thick FGM cylinders with temperature-dependent material properties" 29 : 378-391, 2010

      15 Liu, Y., "Models of thermodiffusion in 1D" 37 : 817-837, 2014

      16 Deswal, S., "Impulsive effect on an elastic solid with generalized Thermodiffusion" 63 : 79-94, 2009

      17 Lee, Z.Y., "Generalized coupled transient thermoelastic problem of multilayered spheres by the hybrid numerical method" 217 (217): 1315-1323, 2003

      18 Suo, Y., "Dynamical theoretical model and variational principles for coupled temperature’-diffusion’-mechanics" 223 : 29-41, 2012

      19 Rajneesh Kumar, "Dynamic problem of generalized thermoelastic diffusive medium" 대한기계학회 24 (24): 337-342, 2010

      20 Hosseini, S.M., "Coupled thermoelasticity and second sound in finite length functionally graded thick hollow cylinders (without energy dissipation)" 30 : 2011-2023, 2009

      21 Hosseini, S.M., "Application of meshless local integral equations to two dimensional analysis of coupled non-Fick diffusion-elasticity" 37 : 603-615, 2013

      22 Hosseini, S.M., "Analytical solution in transient thermo-elasticity of functionally graded thick hollow cylinders (Pseudo-dynamic analysis)" 32 : 2019-2034, 2009

      23 Hosseini, S.M., "Analytical solution for thermoelastic waves propagation analysis in thick hollow cylinder based on Green-Naghdi model of coupled thermoelasticity" 35 : 363-376, 2012

      24 Suo, Y., "Analytical solution for one-dimensional coupled non-Fick diffusion and mechanics" 83 : 397-411, 2013

      25 Yang, Q.S., "A theoretical model and finite element formulation for coupled thermo-electro-chemo-mechanical media" 42 : 148-156, 2010

      26 Sherief, H.H., "A half-space problem in the theory of generalized thermoelastic diffusion" 42 : 4484-4493, 2005

      27 Lord, H.W., "A generalized dynamical theory of thermoelasticity" 15 : 299-309, 1967

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