On the propagation of maximally dissipative phase boundaries in solids

Author:

Abeyaratne Rohan,Knowles James K.

Abstract

This paper is concerned with the kinetics of propagating phase boundaries in a bar made of a special nonlinearly elastic material. First, it is shown that there is a kinetic law of the form f = φ ( s ˙ ) f = \varphi \left ( {\dot s} \right ) relating the driving traction f f at a phase boundary to the phase boundary velocity s ˙ \dot s that corresponds to a notion of maximum dissipation analogous to the concept of maximum plastic work. Second, it is shown that a modified version of the entropy rate admissibility criterion can be described by a kinetic relation of the above form, but with a different φ \varphi . Both kinetic relations are applied to the Riemann problem for longitudinal waves in the bar.

Publisher

American Mathematical Society (AMS)

Subject

Applied Mathematics

Reference23 articles.

1. Kinetic relations and the propagation of phase boundaries in solids;Abeyaratne, Rohan;Arch. Rational Mech. Anal.,1991

2. On the uniqueness of the generalized solution of the Cauchy problem for a non-linear system of equations occurring in mechanics;Oleĭnik, O. A.;Uspehi Mat. Nauk (N.S.),1957

3. Uniqueness of weak solutions of the Cauchy problem for general 2×2 conservation laws;Liu, Tai Ping;J. Differential Equations,1976

4. C. M. Dafermos, Discontinuous thermokinetic processes, Appendix 4B of Rational Thermodynamics (C. Truesdell, ed.), Springer-Verlag, New York, 1984

5. J. W. Christian, The Theory of Transformations in Metals and Alloys, Part I, Pergamon Press, Oxford, 1975

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