Abstract

A theoretical model which emphasizes crystallographic considerations during the growth of Widmanstätten precipitates is developed. The theory predicts that the crystallographic anisotropy of interface kinetics process becomes significant under the growth conditions of small peclet numbers, viz. p < a 1 5.5 , where a 1 is the anisotropy parameter. The results of this model are applied to the experimental data on the growth of Widmanstätten cementite plates in hypereutectoid steels.

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