MetModel: microstructural evolution model for hot rolling and prediction of final product properties

Citation
Aj. Trowsdale et al., MetModel: microstructural evolution model for hot rolling and prediction of final product properties, IRONMAK ST, 28(2), 2001, pp. 170-174
Citations number
20
Categorie Soggetti
Metallurgy
Journal title
IRONMAKING & STEELMAKING
ISSN journal
03019233 → ACNP
Volume
28
Issue
2
Year of publication
2001
Pages
170 - 174
Database
ISI
SICI code
0301-9233(2001)28:2<170:MMEMFH>2.0.ZU;2-V
Abstract
Corus is actively working to develop metallurgical modelling tools (collect ively known as MetModel) for describing the hot processing of steel in the austenitic temperature range and applying these both to off line 'what if' development studies and to the online control of hot rolling mills. These m odels may be used to describe the evolution of structure during processing and to predict hot flow behaviour. They can additionally be coupled with an alytical hot rolling models to allow rolling loads and torques to be predic ted. Although previously used to develop flow stress predictions and rollin g force calculations for the online setup control of a coil plate mill, Met Model is primarily a microstructural prediction system, tracking the evolut ion of austenite during repeated deformation and recrystallisation (dynamic , metadynamic, and static) events. The prediction of microstructure during rolling and subsequent cooling and the calculation of as rolled product mec hanical properties are described. These developments are moving towards a p osition where online setup and dynamic control strategies can be based not only on the achievement of shape and gauge, but also on the use of the hot rolling mill as a metallurgical tool to engineer microstructures. Hence, de spite any variability in input stock and conditions, the processing route c an be tailored to maintain consistency in final mechanical properties. (C) 2001 loM Communications Ltd.