Microstructural evolution of phase decomposition Cu-Ni-Fe alloys

E. Avila-Davila, D. Melo-Maximo, O. Soriano Vargas, V. Lopez-Hirata, M. Saucedo-Munoz, H. Dorantes-Rosales, J. Gonzalez-Velazquez

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Resumen

The computer simulation of the microstructural evolution was carried out based on a solution of the nonlinear Cahn-Hilliard partial differential equation by the finite difference method in the isothermally-aged Cu-Ni-Fe alloy system. The calculated results were compared to those determined by atom-probe field ion microscope analyses of the solution treated and aged alloys. Both the numerically simulated and experimental results showed a good agreement for the growth kinetics and morphology of the decomposed phases in the aged Cu-46at.%Ni-4at.%Fe and Cu-48at.%Ni-8at.%Fe alloys. The growth kinetics was observed to be very slow during the early stages of aging. The morphology of decomposed phases consisted of an irregular shape with no preferential alignment for short aging times and a further aging caused the change of initial to cuboid shape of the decomposed Ni-Cu-Fe rich phase aligned in the elastically-softest crystallographic direction <100> of the Cu-Ni-Fe rich matrix.

Idioma originalInglés
Título de la publicación alojadaMaterials Science and Technology Conference and Exhibition MS and T'08
Páginas856-866
Número de páginas11
EstadoPublicada - 2008
EventoMaterials Science and Technology Conference and Exhibition, MS and T'08 - Pittsburgh, PA, Estados Unidos
Duración: 5 oct. 20089 oct. 2008

Serie de la publicación

NombreMaterials Science and Technology Conference and Exhibition, MS and T'08
Volumen2

Conferencia

ConferenciaMaterials Science and Technology Conference and Exhibition, MS and T'08
País/TerritorioEstados Unidos
CiudadPittsburgh, PA
Período5/10/089/10/08

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