Grain coarsening of cast magnesium alloys at high cooling rate: a new observation

Y Ali, G You, F Pan, MX Zhang - Metallurgical and Materials Transactions …, 2017 - Springer
Y Ali, G You, F Pan, MX Zhang
Metallurgical and Materials Transactions A, 2017Springer
Most studies in the area of grain refinement have always taken for granted that higher
cooling rate results in finer grains. However, when microstructural variation of the as-cast Mg
with cooling rate was investigated using a specially designed V-shaped copper mold, the
results were different. Although fast cooling during solidification led to microstructural
refining in pure Mg, grain coarsening was observed at a higher cooling rate in Mg alloys that
were inoculation treated with 1.0 wtápctZr and 1.4 wtápctCaO, and in the Mg-Al binary …
Abstract
Most studies in the area of grain refinement have always taken for granted that higher cooling rate results in finer grains. However, when microstructural variation of the as-cast Mg with cooling rate was investigated using a specially designed V-shaped copper mold, the results were different. Although fast cooling during solidification led to microstructural refining in pure Mg, grain coarsening was observed at a higher cooling rate in Mg alloys that were inoculation treated with 1.0wtápctZr and 1.4wtápctCaO, and in the Mg-Al binary alloys. It is considered that the grain coarsening at higher cooling rate was attributed to the smaller constitutional undercooling zone formed at fast cooling due to the high temperature gradient in the three Mg alloys. These results can help in redefining the role of cooling rate in the grain refinement process.
Springer
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