Title: Solidification Processing
1Solidification Processing
- Lecture 25 Phase field models
2Sharp interface model
3Phase-field model
No need to chase interface location One set of
governing equations for everywhere
4Phase field model
- Construct Ginzburg-Landau free energy
- Deriving governing equations
- Determination of parameters
- Numerical calculation of governing equations
- Interpreter numerical results
5Free energy
6Free energy density
7Free energy density
8Interface anisotropy
FCC
9Free energy density
10Free energy density
11Governing equation
12Governing equation
13Governing equation
14Governing equation
At equilibrium
15Driving force
16Parameters determination
The parameters ???, ??? and M??? in the
phase-field equation are to be matched with the
interface energy ???, interface thickness 2???
and interface propagation rate v???. ??? and ???
are determined at equilibrium condition and M???
is determined at dynamic steady condition. From
the knowledge of alloy thermodynamics, an
equilibrium state implies that the amount of each
individual phase is not changed and the common
tangent law is satisfied. For a planar interface
at equilibrium condition, the equilibrium
phase-field parameter ??e obeys the following
equation according to equation (25.16) after
taking account the relationship of ??1-??
17Parameters determination
18Parameters determination
19Parameters determination
20Parameters determination
21Parameters determination
22Numerical solution