PREDICTION OF SOLIDIFICATION STRUCTURES IN A 9.8 TON STEEL INGOT

20 Jun 2019, 16:30
20m
P4 (IMLAUER HOTEL PITTER SALZBURG)

P4

IMLAUER HOTEL PITTER SALZBURG

Oral Presentation Dendritic microstructure

Speaker

Benjamin Gerin (CNRS, Institut Jean Lamour)

Description

The control of the carbon macrosegregation level in steel ingots is important for the structural integrity of the nal component. During solidication, the fragmentation of the columnar dendrites is an important source of equiaxed grains, and has a large in uence on the macrosegregation and the grain structure. The goal of this study is to show that a numerical model that takes into account fragmentation can describe the formation of the structures and the macrosegregation during solidication of a large steel ingot. The present article describes the multiphase numerical model used in the simulations. The simulation results are compared to experimental data from a 9.8 t ingot cast in A5/6 steel by ArcelorMittal Industeel. The model can then be used to explain the formation of the observed structures. For example, we show that the structural transitions, rst from columnar to equiaxed globular and then to equiaxed dendritic at the bottom of the ingot are a consequence of the concurrent transport and growth of the dendrite fragments from the columnar zone. Furthermore, we show that most of the structures are formed very early on during solidication, whereas macrosegregation develops much more gradually
Speaker Country France

Author

Benjamin Gerin (CNRS, Institut Jean Lamour)

Co-authors

Prof. Hervé Combeau (CNRS, Institut Jean Lamour) Ms Isabelle Poitrault (ArcelorMittal Industeel) Maya Cherif (ArcelorMittal Industeel) Dr Miha Založnik (CNRS, Institut Jean Lamour)

Presentation materials