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Article Dans Une Revue Materials Science and Engineering: A Année : 2008

Gamma double prime precipitation kinetic in alloy 718

Loic Nazé
André Pineau
A. Organista
  • Fonction : Auteur
J.F. Uginet
  • Fonction : Auteur
P. Heritier
  • Fonction : Auteur

Résumé

Gamma double prime (γ′′), precipitation was studied in Alloy 718 using isothermal and isochronal aging heat treatments applied between 943 and 1003 K. It is shown, that the coarsening behavior of γ′′ precipitates follows the coarsening kinetic predictions of the Lifshitz–Slyozov–Wagner (LSW) theory. The activation energy for γ′′ growth has been determined as equal to 272 kJ mol−1 and seems to be controlled by volume diffusion of niobium in the matrix. The energy of the γ′′/matrix interface, Γ, has been found to be 95 ± 17 mJ m−2 by assuming that the γ′′ precipitates adopt a disk shape which minimizes the total energy. This energy includes a volume distortion term calculated from the Eshelby inclusion theory and a surface component which is assumed to be isotropic. This interfacial energy is discussed and compared with the energy of γ′/matrix and γ′′/matrix interfaces in other superalloys. The constant K′′ of the LSW law time dependence has been calculated using the value of interfacial energy and the activation energy of γ′′ precipitates coarsening and is found to be in good agreement with our experimental values.

Dates et versions

hal-00280896 , version 1 (20-05-2008)

Identifiants

Citer

Alexandre Devaux, Loic Nazé, Régine Molins, André Pineau, A. Organista, et al.. Gamma double prime precipitation kinetic in alloy 718. Materials Science and Engineering: A, 2008, 486, pp.117-122. ⟨10.1016/j.msea.2007.08.046⟩. ⟨hal-00280896⟩
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