Microstructural evaluation of primary crystallization with diffusion-controlled grain growth

D. Crespo, T. Pradell, M. T. Clavaguera-Mora, and N. Clavaguera
Phys. Rev. B 55, 3435 – Published 1 February 1997
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Abstract

A model has been developed for evaluating grain size distributions in primary crystallizations where the grain growth is diffusion controlled. The body of the model is grounded in a recently presented mean-field integration of the nucleation and growth kinetic equations, modified conveniently in order to take into account a radius-dependent growth rate, as occurs in diffusion-controlled growth. The classical diffusion theory is considered, and a modification of this is proposed to take into account interference of the diffusion profiles between neighbor grains. The potentiality of the mean-field model to give detailed information on the grain size distribution and transformed volume fraction for transformations driven by nucleation and either interface- or diffusion-controlled growth processes is demonstrated. The model is evaluated for the primary crystallization of an amorphous alloy, giving an excellent agreement with experimental data. Grain size distributions are computed, and their properties are discussed.

    DOI:https://doi.org/10.1103/PhysRevB.55.3435

    ©1997 American Physical Society

    Authors & Affiliations

    D. Crespo

    • Departament de Física Aplicada, Universitat Polit`ecnica de Catalunya, Campus Nord UPC, M`odul B4, 08034 Barcelona, Spain

    T. Pradell

    • Escola Universit`aria d'Enginyeria T`ecnica Agricola, Universitat Polit`ecnica de Catalunya, Urgell 187, 08036 Barcelona, Spain

    M. T. Clavaguera-Mora

    • Grup de Física de Materials I, Departament de Física, Facultat de Ci`encies, Universitat Aut`onoma de Barcelona,

    N. Clavaguera

    • Grup de Física de l'Estat S`olid, Departament d'ECM, Facultat de Física, Universitat de Barcelona, Diagonal, 647,

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    Issue

    Vol. 55, Iss. 6 — 1 February 1997

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