Toward Quantitative Modeling of Morphology Changes in Solids with Phase Field Theories: Atomistic Arguments for the Determination of Higher Gradient Coefficients

Author:

Dreyer Wolfgang1,Müller Wolfgang H.2

Affiliation:

1. Weierstraß Institute für Angewandte Analysis und Stochastik, WIAS

2. Technische Universität Berlin

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference20 articles.

1. R. Stevens: Zirconia and Zirconia Ceramics (Twickenham: Magnesium Elektron Publication 1986).

2. W. Dreyer, W.H. Müller: A Study of the Coarsening in Tin/Lead Solders, Int. J. Sol. Struct, 37 28 (2000), pp.3841-3871.

3. W. Dreyer, W.H. Müller: Modeling Diffusional Coarsening in Eutectic Tin/Lead Solders: A Quantitative Approach, Int. J. Sol. Struct., 38 1 (2001), pp.1433-1458.

4. Dreyer, W., Müller, W.H.: Computer Modeling of Micromorphological Change by Phase Field Models: Applications to Metals and Ceramics. Journal of the Australasian Ceramic Society, 36 1 (2001), pp.83-94.

5. J.W. Cahn, J.E. Hilliard: Free energy of a non-uniform system. I. Interfacial free energy. The Journal of Chemical Physics, 28 1 (1958), pp.258-267.

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