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Disturbance due to thermomechanical sources in a thermoviscoelastic medium with rotation

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Języki publikacji
EN
Abstrakty
EN
A dynamic problem in a thermoviscoelastic material with rotation is investigated for the disturbance due to thermomechanical sources. To solve the problem the Laplace and Fourier transform techniques are applied. Concentrated and uniformly distributed sources are taken as an application of the approach. A numerical inversion technique is used to invert the integral transform and to obtain the components of displacement, stress and temperature distribution in the physical domain. The effect of rotation and viscosity is examined on the resulting quantities and depicted graphically for a specific model .Some special case are also deduced from the present investigation.
Rocznik
Strony
127--141
Opis fizyczny
Bibliogr. 19 poz., wykr.
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autor
autor
autor
Bibliografia
  • El-Karamany A.S. and Ezzat M.A. (2002): On the boundary integral formulation of thermoviscoelasticity theory. - In. J. Engg. Sc, vol.40, pp.1943-1956.
  • Baksi A., Bera R.K. and Debnath L. (2004): Eigen value approach to study the effect of rotation and relaxation time in two dimensiona problems of generalized thermoelasticity. - Int. J. of Engg. Sc., vol.42, pp.1573-1585.
  • Baksi A. and Bera R.K. (2006): Relaxation effects on plane wave propagation in a rotating magneto-thermo-viscoelastic medium. - J. Thermal Stresses, vol.29, pp.753-769.
  • Caviglia G., Morro A. and Straughan B. (1992): Thermoelasticity at cryogenic temperatures. - In. Non-Linear Mech, vol.27, pp.251-263.
  • Chandrasekharaiah D.S. (1998): Hyperbolic thermoelasticity: A review of recent literature. - Appl. Mech. Rev, vol.51, pp.705-729.
  • Ezzat M.A. and El-Karamany A.S. (2003): The relaxation effects of the volume properties of viscoelastic material in generalized thermoelasticity. - In. J. Engg. Sc, vol.41, pp.2281-2298.
  • El-Karamany (2003): Boundary integral equation formulation in a generalized linear thermoviscoelasticity with rheological volume. - J. of Appl. Mech, vol.70, pp.661-667.
  • El-Karamany A.S. and Ezzat M.A. (2004): Discontinuities in generalized thermo-viscoelasticity under four theories. - J. Thermal Stresses, vol.27, pp.1187-1212.
  • Hetnarski R.B. and Ignaczak J. (1999): Generalized thermoelasticity. - J. of Thermal Stresses, vol.22, pp.451-470.
  • Hetnarski R.B. and Ignaczak J. (2000): Non classical dynamical thermoelasticity. - In. J. Solid Structures, vol.37, pp.215-224.
  • Kundu M. Rakshit and Mukhopadhyay B. (2005): A thermoviscoelastic problem of an infinite medium with a spherical cavity using generalized theory of thermoelasticiy. - J. Mathematical and Computer Modelling, vol.41, pp.25-32.
  • Kundu M. Rakshit and Mukhopadhyay B. (2007): A two dimensional thermoviscoelastic problem due to instantaneous point heat source. - J. Mathematical and Computer Modeling, vol.46, pp.1388-1397.
  • Metrinkine (2004): Steady state response of an infinite string on a non-linear viscoelastic foundation to moving point loads. - J. Sound and Vibration, vol.272, pp.1030-1040.
  • Mukhopadhyay S. (2000): Effects of thermal relaxations on thermoviscoelastic interactions in an unbounded body with a spherical cavity subjected to a periodic loading on the boundary. - J. of Thermal Stresses, vol.23, pp.675-684.
  • Othman M.I.A., Ezzat M.A., Zaki S.A. and El-Karamany A.S. (2002): Generalized thermoviscoelastic plane waves with two relaxation times. - In. J. Engg. Sc, vol.40, pp.1329-1347.
  • Othman I.A. and Singh B. (2008): The effect of rotation on generalized micropolar thermoelasticity for a half-space under five theories. - Int. J. of Solids and Structures, vol.44, pp.2748-2762.
  • Othman I.A. and Song Y. (2008): Effect of rotation on plane waves of generalized electro-magneto-thermoviscoelasticity with two relaxation times. - Appl. Math. Modelling, vol.32, pp.811-825.
  • Samanta S.C. and Maishal R.K. (2008): A study on magneto-thermoviscoelastic interactions in an elastic half space subjected to a temperature pulse, using state space approach. - J. of Thermal Stresses, vol.31, pp.1149-1169.
  • Sharma J.N. and Kumar V. (1997): Plain strain problems of transversely isotropic thermoelastic media. - J. Thermal Stresses, vol.20, pp.463-476.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ5-0026-0010
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