Abstract

This paper demonstrates the use of a new model consisting of a genetic algorithm in combination with thermodynamic calculations and analytical process models to minimize the processing time during a vacuum degassing treatment of liquid steel. The model sets multiple simultaneous targets for final S, N, O, Si and Al levels and uses the total slag mass, the slag composition, the steel composition and the start temperature as optimization variables. The predicted optimal conditions agree well with industrial practice. For those conditions leading to the shortest process time the target compositions for S, N and O are reached almost simultaneously.

Details

Title
Process-time Optimization of Vacuum Degassing Using a Genetic Alloy Design Approach
Author
Dilner, David; Lu, Qi; Mao, Huahai; Xu, Wei; Zwaag, Sybrand Vander; Selleby, Malin
Pages
7997-8011
Publication year
2014
Publication date
2014
Publisher
MDPI AG
e-ISSN
19961944
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
1645260129
Copyright
Copyright MDPI AG 2014