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Modelling of heat transfer, phase transformations and microstructure in continuous casting strand

Abstract

Three earlier developed models of heat transfer, solidification and phase transformations for steels were coupled and applied to continuous casting strands of Imatra Steel. The new model was validated by comparing calculated results of microstructure, phase fraction and hardness with experimentally measured data. (orig.) 23 refs.
Publication Date:
Dec 31, 1998
Product Type:
Technical Report
Report Number:
TKK-MK-52
Reference Number:
SCA: 360101; 360102; PA: FI-99:003337; EDB-99:079614; SN: 99002121474
Resource Relation:
Other Information: PBD: 1998
Subject:
36 MATERIALS SCIENCE; CASTING; STEELS; METAL INDUSTRY; MATHEMATICAL MODELS; HEAT TRANSFER; PHASE TRANSFORMATIONS; MICROSTRUCTURE; SOLIDIFICATION; HARDNESS; 360101; 360102; PREPARATION AND FABRICATION; STRUCTURE AND PHASE STUDIES
OSTI ID:
10147846
Research Organizations:
Helsinki Univ. of Technology, Otaniemi (Finland). Lab. of Metallurgy
Country of Origin:
Finland
Language:
English
Other Identifying Numbers:
Other: ON: DE99758890; ISBN 951-22-4244-3; TRN: FI9903337
Availability:
OSTI; NTIS
Submitting Site:
FI
Size:
39 p.
Announcement Date:
Sep 13, 1999

Citation Formats

Miettinen, J, and Kytoenen, H. Modelling of heat transfer, phase transformations and microstructure in continuous casting strand. Finland: N. p., 1998. Web.
Miettinen, J, & Kytoenen, H. Modelling of heat transfer, phase transformations and microstructure in continuous casting strand. Finland.
Miettinen, J, and Kytoenen, H. 1998. "Modelling of heat transfer, phase transformations and microstructure in continuous casting strand." Finland.
@misc{etde_10147846,
title = {Modelling of heat transfer, phase transformations and microstructure in continuous casting strand}
author = {Miettinen, J, and Kytoenen, H}
abstractNote = {Three earlier developed models of heat transfer, solidification and phase transformations for steels were coupled and applied to continuous casting strands of Imatra Steel. The new model was validated by comparing calculated results of microstructure, phase fraction and hardness with experimentally measured data. (orig.) 23 refs.}
place = {Finland}
year = {1998}
month = {Dec}
}