4.7 Article

Grain refinement of cast zinc through magnesium inoculation: Characterisation and mechanism

Journal

MATERIALS CHARACTERIZATION
Volume 106, Issue -, Pages 1-10

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.matchar.2015.05.011

Keywords

Cast Zn alloy; Grain refinement; Heterogeneous nucleation; Characterisation; Growth restriction

Funding

  1. Australian Research Council
  2. University of Queensland

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It was previously found that peritectic-forming solutes are more favourable for the grain refinement of cast Al alloys than eutectic-forming solutes. In this work, we report that the eutectic-forming solute, Mg, can also significantly grain refine cast Zn. Differential thermal analysis (DTA) of a Zn-Mg alloy, in which efficient grain refinement occurred, evidenced an unexpected peak that appeared before the nucleation of eta-Zn grains on the DTA spectrum. Based on extensive examination using X-ray diffraction, high resolution SEM and EDS, it was found that: (a) some faceted Zn-Mg intermetallic particles were reproducibly observed; (b) the particles were located at or near grain centres; (c) the atomic ratio of Mg to Zn in the intermetallic compound was determined to be around 1/2. Using tilting selected area diffraction (SAD) and convergent beam Kikuchi line diffraction pattern (CBKLDP) techniques, these faceted particles were identified as MgZn2 and an orientation relationship between such grain-centred MgZn2 particles and the eta-Zn matrix was determined. Hence, the unexpected peak on the DTA spectrum is believed to correspond to the formation of MgZn2 particles, which act as effective heterogeneous nucleation sites in the alloy. Together with the effect of Mg solute on restricting grain growth, such heterogeneous nucleation is cooperatively responsible for the grain size reduction in Zn-Mg alloys. (C) 2015 Elsevier Inc. All rights reserved.

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