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Simulation Using Realistic Spray Cooling for the Continuous Casting of Multi—component Steel
引用本文:HoufaSHEN RobertMacKenzie 等.Simulation Using Realistic Spray Cooling for the Continuous Casting of Multi—component Steel[J].材料科学技术学报,2002,18(4):311-314.
作者姓名:HoufaSHEN  RobertMacKenzie
作者单位:[1]DepartmentofMechanicalEngineering,TheUniversityofIowaCity,IA52242,USA [2]IPSCOInc,Regina,Sask,S4P3C7,Canada
基金项目:The authors are grateful to IPSCO Inc. for supporting this research program and for providing surface temperature measure-ments, and measurements of the spray nozzle flow characteris-tics. Without the nozzle flow pattern measurements made by Dr. L.K.Chia
摘    要:A three-dimensional heat transfer model for continuous steel slab casting has been developed with realistic spray cooling patterns and a coupled microsegregation solidification model that calculates the solidification path for multi-component steels.Temperature and composition dependent properties are implemented in a database for 15 chemical species.Considerable effort is made to accurately model the spray cooling heat transfer.Each spray nozzle position and distribution is considered, including variations of the spray patterns with flow rate, and spray overlay .Nozzle type, layout, nozzle-to-slab distance, and spray span and flux are variable.Natural convection,thermal radiation and contact cooling of individual rolls are computed. The present model provides more comprehensive information and realistic slab surface temperatures than results from a model using the “averaged“ treatment of boundary comditions .Cooling operating conditions and parameters of individual spray nozzles can be analzed to optimize muzzle spray distribution ,improve product quality,and troubleshoot issues such as nozzle clogging that may arise during production.One spray cooling correlation is used for the entire machine,achieving as good or better agreement with surface temperatre measurements than was found previously for the model using an “averaged“ treatment of boundary conditions and using three machine-segment-dependent correlations.

关 键 词:  连续铸造  显微组织  冷却  模拟分析
收稿时间:2001-05-08

Simulation Using Realistic Spray Cooling for the Continuous Casting of Multi-component Steel
Houfa SHEN,Richard A.Hardin,Robert MacKenzie,C.Beckermann.Simulation Using Realistic Spray Cooling for the Continuous Casting of Multi-component Steel[J].Journal of Materials Science & Technology,2002,18(4):311-314.
Authors:Houfa SHEN  Richard AHardin  Robert MacKenzie  CBeckermann
Affiliation:Department of Mechanical Engineering, The University of Iowa, Iowa City, IA 52242, USA...
Abstract:A three-dimensional heat transfer model for continuous steel slab casting has been developed with realistic spray cooling patterns and a coupled microsegregation solidification model that calculates the solidification path for multi-component steels. Temperature and composition dependent properties are implemented in a database for 15 chemical species. Considerable effort is made to accurately model the spray cooling heat transfer. Each spray nozzle position and distribution is considered, including variations of the spray patterns with flow rate, and spray overlap. Nozzle type, layout, nozzle-to-slab distance, and spray span and flux are variable. Natural convection, thermal radiation and contact cooling of individual rolls are computed. The present model provides more comprehensive information and realistic slab surface temperatures than results from a model using the "averaged" treatment of boundary conditions. Cooling operating conditions and parameters of individual spray nozzles can be analyzed to optimize nozzle spray distribution, improve product quality, and troubleshoot issues such as nozzle clogging that may arise during production. One spray cooling correlation is used for the entire machine, achieving as good or better agreement with surface temperature measurements than was found previously for the model using an "averaged" treatment of boundary conditions and using three machine-segment-dependent correlations.
Keywords:Steel  Continuous casting  Simulation
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