Diffusion
Basics of Diffusion
Fick’s Law
- Diffusion flux (unit: atoms cm-2 s-1)
- Mass diffusivity, or diffusion coefficient (unit: cm2 s-1)
First law
Also compare electricity:
Second law
Because , we have
and when
which means
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Diffusion and thermodynamics
Diffusion & chemical potential
The thermodynamic correction term: .
Proof: […]
Mechanisms
Atomic mechanisms
The random walk derivation of Fick’s first law
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Therefore we have the atomic diffusion factor
And the following discussions of mechanisms will focus on the expression of jump frequency .
Examples: diffusion in different systems
Diffusion in elemental crystals
Also see the point defect chapter. The interstitial and vacancy are two main defects in elemental crystals (especially pure metal).
Interstitial mechanism
This could also be, carbon particles move in iron.
- Jump frequency
- : jumpable sites
- : intrinsic frequency
- Diffusivity
Vacancy mechanism
- The vacancy mechanism is also called self-diffusion in pure metal.
- Jump frequency .
- - equilibrium vacancy concentration
- Diffusivity
- For the equilibrium concentration of vacancies , derivation see the point defect chapter. Also can be derived from configruational entropy.
- The self-diffusion can be see as the reverse process of vacancy diffusion
Biased-random walk, drift velocity: Fick’s first law with chemical potential
Diffusion in substitution alloys
Kirkendall effect
The move of boundaries (marked by Mo markers) is the result of the creation and destruction of atomic planes due to inequalities in diffusivities ().
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Darken analysis
Interdiffusion coefficient
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Extended darken analysis
Include thermodynamic correction into the darken analysis.
This is also the source of up-hill diffusion, which causes spinodal decomposition (automatic separation of phases).
Proof: […]
Diffusion in polycrystalline materials: short circuit diffusion
Grain boundary and dislocations have a lower activation energy.
Temperature effect
Easy to see that jump frequency , and ,
Other process Relates to Diffusion
- Nucleation