A degenerating Cahn-Hilliard system coupled with complete damage processes

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Date
2012
Volume
1759
Issue
Journal
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Publisher
Berlin : Weierstraß-Institut für Angewandte Analysis und Stochastik
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Abstract

Complete damage in elastic solids appears when the material looses all its integrity due to high exposure. In the case of alloys, the situation is quite involved since spinodal decomposition and coarsening also occur at sufficiently low temperatures which may lead locally to high stress peaks. Experimental observations on solder alloys reveal void and crack growth especially at phase boundaries. In this work, we investigate analytically a degenerating PDE system with a time-depending domain for phase separation and complete damage processes under time-varying Dirichlet boundary conditions. The evolution of the system is described by a degenerating parabolic differential equation of fourth order for the concentration, a doubly nonlinear differential inclusion for the damage process and a degenerating quasi-static balance equation for the displacement field. All these equations are strongly nonlinearly coupled....

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Keywords
Cahn-Hilliard system, phase separation, complete damage, elliptic-parabolic Systems, elliptic degenerate operators, linear elasticity, energetic solution, weak solution, doubly nonlinear differential inclusions, existence results, rate-dependent systems
Citation
Heinemann, C., & Kraus, C. (2012). A degenerating Cahn-Hilliard system coupled with complete damage processes (Vol. 1759). Berlin : Weierstraß-Institut für Angewandte Analysis und Stochastik.
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