Morphological stability of spherical particles - Extension of the Mullins-Sekerka criteria to multi-component alloys under a non-stationary diffusive regime
Author:
Publisher
Elsevier BV
Subject
Metals and Alloys,Polymers and Plastics,Ceramics and Composites,Electronic, Optical and Magnetic Materials
Reference20 articles.
1. Analytical model for equiaxed globular solidification in multicomponent alloys;Guillemot;Acta Materialia,2015
2. An analytical model with interaction between species for growth and dissolution of precipitates;Guillemot;Acta Materialia,2017
3. Corrigendum to ’analytical model for equiaxed globular solidification in multicomponent alloys’ [acta mater. 97 (2015) 419-434];Guillemot;Acta Materialia,2017
4. Solidification, 2nd Edition;Dantzig,2016
5. Morphological stability of a particle growing by diffusion or heat flow;Mullins;Journal of Applied Physics,1963
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1. Growing particle in a solid matrix in presence of composition stress;Journal of Crystal Growth;2024-11
2. Formation of the gradient of structural-phase states of high-speed steel during surfacing. Part 2. The role of the Mullins–Sekerka instability in formation of crystallization structures;Izvestiya. Ferrous Metallurgy;2024-04-20
3. The growth and morphological stability of a precipitate in a multi-component solution;Journal of Crystal Growth;2024-02
4. The evolution and morphological stability of a particle in a binary alloy melt;Journal of Crystal Growth;2023-04
5. The Growth and Morphological Stability of a Precipitate in a Multi-Component Solution;2023
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