Phase Transformations in Metals and Alloys¶
Porter, D. A., Easterling, K. E., & Easterling, K. E. (2009). Phase Transformations in Metals and Alloys. CRC Press.
Cited by¶
2 citations across 2 artifacts.
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Primes¶
- Nucleation
- Chemistry and materials science: crystallisation from supersaturated solution (sugar crystals, freezing water, seeded cloud droplets), bubble nucleation in boiling and cavitation, precipitation, polymer crystallisation, vapor-deposition film growth.
This sourceStandard materials-science text treating homogeneous and heterogeneous nucleation in crystallization, solidification, and precipitation — the chemistry/materials survey of the nucleation structure.
- Chemistry and materials science: crystallisation from supersaturated solution (sugar crystals, freezing water, seeded cloud droplets), bubble nucleation in boiling and cavitation, precipitation, polymer crystallisation, vapor-deposition film growth.
- Phase Separation
- The free energy of mixing is \(\Delta G = \Omega x(1-x) + RT[x\ln x + (1-x)\ln(1-x)]\), where \(x\) is composition and \(T\) temperature: the entropy term (\(\propto T\)) favours mixing, the enthalpy term favours demixing.
This sourceStandard reference for the regular-solution free energy, the critical temperature T_c = Ω/2R, the spinodal/binodal, and the common-tangent construction.
- The free energy of mixing is \(\Delta G = \Omega x(1-x) + RT[x\ln x + (1-x)\ln(1-x)]\), where \(x\) is composition and \(T\) temperature: the entropy term (\(\propto T\)) favours mixing, the enthalpy term favours demixing.
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