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- W1489727851 abstract "The recently developed inverse growth restriction model is a useful method of predicting the number of successful nucleation events during solidification and therefore grain size. It is proposed that the inverse growth restriction model can be incorporated into simulation models relatively easily. This paper extends the model to include the effect of changing castings conditions such as cooling rate, degree of superheat and ultrasonic treatment on grain size. The extended model indicates that the effect of a range of casting conditions can be incorporated into a simulation model without additional complexity. The application of the inverse growth restriction model in microstructure development simulation models is discussed. Two areas requiring further research have been identified. One area is to study the relative impact of thermal and consitutional undercooling on the final as-cast grain size. Through this understanding a model that predicts these relative effects can be developed. The other area is to determine the feasability of the proposed hypothesis that the lattice mismatch between the nucleant particle and the primary phase can be used as a measure of potency rather than the undercooling required for nucleation of the grain." @default.
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- W1489727851 date "2009-01-01" @default.
- W1489727851 modified "2023-09-25" @default.
- W1489727851 title "An inverse growth restriction model for predicting solidified grain size" @default.
- W1489727851 hasPublicationYear "2009" @default.
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