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On secondary dendrite arm coarsening in peritectic solidification

journal contribution
posted on 2024-11-01, 14:02 authored by Dong Ma, Wei Xu, SerChoon Ng, Yi Li
A model for isothermal coarsening of secondary dendrite arms in peritectic reaction and transformation (liquid + primary-phase → peritectic-phase) is proposed to evaluate the secondary dendrite arm spacing (λ 2) of the primary phase in directional solidification of peritectic alloys. The model defines three stages for thin-arm dissolution (or thick-arm coarsening), i.e. the initial, intermediate and final stages: The initial thin-arm dissolution through the primary phase is sustained solely by the Gibbs-Thomson effect; the intermediate thin-arm dissolution through the peritectic phase is driven by Gibbs-Thomson effect but retarded by the peritectic reaction and transformation; the final dissolution through the primary and peritectic phases is enhanced by the Gibbs-Thomson effect and the phase transformation. The kinetics of peritectic reaction and transformation were found to be crucial to determine the thin-arm dissolution, which were characterized by the reaction constant (f) and the diffusion coefficient of solute in solid peritectic-phase (D S), respectively. The present model shows that λ 2 V m is constant for a given Pb-Bi peritectic alloy, where V is growth velocity, and the factor, m, ranges from 1/3 to 1/2, rather than that normally observed (e.g. 1/3) for single-phase solidification. It is also notable that the calculated λ 2 for a Zn-7.37 wt.% Cu peritectic alloy was reasonably consistent with our earlier experiments for various growth velocities.

History

Journal

Materials Science and Engineering A: Structural Materials: Properties, Microstructure and Processing

Volume

390

Issue

1-2

Start page

52

End page

62

Total pages

11

Publisher

Elsevier B.V.

Place published

Switzerland

Language

English

Copyright

© 2004 Elsevier B.V.

Former Identifier

2006040449

Esploro creation date

2020-06-22

Fedora creation date

2013-04-08

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