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Communication Dans Un Congrès Année : 2017

Analytical model with interaction between species for growth and dissolution of precipitates

Modèle analytique avec interaction entre espèces pour la croissance et la dissolution de précipités

Résumé

An analytical model for growth in a semi infinite matrix with cross-diffusion between species is presented. Application is given for precipitation of the gamma’ phase in the gamma matrix during isothermal holding at 600 °C in the Ni – 7.56 at.% Al – 8.56 at.% Cr alloy. The exact time dependent solutions for the solute profiles and the growth kinetics are validated with a numerical front-tracking simulation. The simulation of cross diffusion terms in a multicomponent alloy being demonstrated, extension of the analytical solution is given for growth in a matrix of finite size. The driving force is based on a mathematical estimation of the far-field composition. The Gibbs-Thomson effect is also accounted for to consider the effect of curvature on the equilibrium tie-lines. Comparison of analytical solution with the numerical front-tracking simulation shows excellent agreement. Results point out the detrimental approximation of using the average composition of the matrix for computing the driving force as well as the limitation of the solution found in the literature. A detailed discussion is given on the origin of oscillations observed for the time evolution of the precipitate radius which alternates between growth and dissolution regimes, pointing out the combined role of solute fluxes and tie-lines compositions at the precipitate/matrix interface illustrated hereafter by drawing the transformation paths in the phase diagram.

Domaines

Matériaux
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Dates et versions

hal-01683525 , version 1 (13-01-2018)

Identifiants

  • HAL Id : hal-01683525 , version 1

Citer

Gildas Guillemot, Charles-André Gandin. Analytical model with interaction between species for growth and dissolution of precipitates. CALPHAD XLVI International Conference, Jun 2017, saint malo, France. ⟨hal-01683525⟩
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