Thermodynamical deduction of constitutive equations of a plastic material with combined work-hardening

Author:

Tokuoka T.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Computational Mechanics

Reference11 articles.

1. Tokuoka, T.: Rate type plastic material with general work-hardening. Zschr. angew. Math. Mech.58, 1?7 (1978).

2. Tokuoka, T.: Prandtl-Reuss plastic material with scalar and tensor internal variables. Arch. Mech.30, 801?826 (1978).

3. Coleman, B. C., Noll, W.: The thermodynamics of elastic materials with heat conduction and viscosity. Arch. Rational Mech. Anal.13, 167?178 (1963).

4. Kratochvil, J., Dillon, O. W.: Thermodynamics of elastic-plastic materials as a theory with internal state variables. J. Appl. Phys.40, 3207?3218 (1969).

5. Perzyna, P.: Thermodynamic theory of viscoplasticity. Advances in Applied Mechanics, Vol. 11 (Yih, C.-S., ed.), pp. 313?354. New York-London: Academic Press. 1971.

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2. A stochastic model for the high-temperature plasticity of metals;International Journal of Plasticity;1985-01

3. Entwicklung von Stoffgesetzen für die Hochtemperaturplastizität;Berichte aus dem Institut für Umformtechnik der Universität Stuttgart;1983

4. A THERMODYNAMIC THEORY OF PLASTICITY DERIVED FROM THE CLAUSIUS-DUHEM INEQUALITY;Journal of Thermal Stresses;1982-04

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