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BRIEF NOTES

On Characteristic Times in Generalized Thermoelasticity

[+] Author and Article Information
D. V. Strunin

Department of Mathematics and Computing, University of Southern Queensland, Toowoomba, QLD 4350, Australia

J. Appl. Mech 68(5), 816-817 (May 01, 2001) (2 pages) doi:10.1115/1.1386696 History: Received September 07, 2000; Revised May 01, 2001
Copyright © 2001 by ASME
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References

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Prevost,  J. H., and Tao,  D., 1983, “Finite Element Analysis of Dynamic Coupled Thermoelasticity Problems With Relaxation Times,” J. Appl. Mech., 50, pp. 817–822.
Müller,  I., 1971, “The Coldness, A Universal Function in Thermoelastic Bodies,” Arch. Ration. Mech. Anal., 41, pp. 319–332.
Green,  A. E., and Laws,  N., 1972, “On The Entropy Production Inequality,” Arch. Ration. Mech. Anal., 45, pp. 47–53.
Suh,  C. S., and Burger,  C. P., 1998, “Effects of Thermomechanical Coupling and Relaxation Times on Wave Spectrum in Dynamic Theory of Generalized Thermoelasticity,” J. Appl. Mech., 65, pp. 605–613.
Nowacki, W., 1962, Thermoelasticity, Pergamon, Oxford, UK.
Strunin,  D. V., Melnik,  R. V. N., and Roberts,  A. J., 2001, “Coupled Thermomechanical Waves in Hyperbolic Thermoelasticity,” J. Therm. Stresses, 24, pp. 121–140.
Lord,  H. W., and Schulman,  Y., 1967, “A Generalized Dynamic Theory of Thermoelasticity,” J. Mech. Phys. Solids, 15, pp. 299–309.

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