Mathematical analysis of a model describing solute trapping during solidification of binary alloys
DOI10.1080/00036811.2021.1947495zbMath1512.35370OpenAlexW3183460690MaRDI QIDQ6038953
André Ferreira e Pereira, Gabriela Planas
Publication date: 3 May 2023
Published in: Applicable Analysis (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/00036811.2021.1947495
Stefan problems, phase changes, etc. (80A22) Phase transitions (general) in equilibrium statistical mechanics (82B26) Existence problems for PDEs: global existence, local existence, non-existence (35A01) Quasilinear parabolic equations (35K59) Initial-boundary value problems for higher-order parabolic systems (35K52)
Cites Work
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- Compact sets in the space \(L^ p(0,T;B)\)
- Introduction à la théorie des points critiques et applications aux problèmes elliptiques
- Finite-dimensional exponential attractor for a model for order-disorder and phase separation
- Nonlinear elliptic partial differential equations. An introduction
- Evolution equations for phase separation and ordering in binary alloys
- Existence for an Allen-Cahn/Cahn-Hilliard system with degenerate mobility
- Analysis of a three-dimensional phase-field model for solidification under a magnetic field effect
- Phase-field study of solute trapping effect in rapid solidification
- On the Cahn-Hilliard/Allen-Cahn equations with singular potentials
- Global solutions to a degenerate solutal phase-field model for the solidification of a binary alloy
- Existence of solutions and separation from singularities for a class of fourth order degenerate parabolic equations
- Finite element approximation of the Cahn-Hilliard equation with concentration dependent mobility
- Asymptotic behavior of a model for order-disorder and phase separation
- On the Cahn–Hilliard Equation with Degenerate Mobility
- Global attractors for Cahn–Hilliard equations with nonconstant mobility
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