Mathematical Models for Near Net Shape Casting Processes
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概要
- 論文の詳細を見る
A three-dimensional fully coupled turbulent fluid flow, heat transfer and solidification model for a twin-roll caster of steel has been developed. The model enables different metal delivery configurations and their effect on solid shell thicknesses to be evaluated. A typical tubular nozzle with horizontal outlets directed towards the side dams, as well as a vertical slot nozzle, have been simulated. The results show that the tubular nozzle leads to a non-uniform thickness of the twin solidifying shells along the width of the rolls. These results are in agreement with measurements of heat fluxes to the roll surfaces. A similar model has been constructed for a horizontal single belt caster with extended nozzle delivery systems, with and without flow modifiers. It is shown that the flow modifier has a positive effect on the flow patterns and on steel shell formation.
- 社団法人 日本鉄鋼協会の論文
- 1996-12-15
著者
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Netto Pedro
Universidade Federal Fluminense
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Guthrie Roderick
Mcgill Metals Processing Centre Mcgill University
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Guthrie Roderick
Mcgill Metals Processing Center Department Of Mining And Metallurgical Engineering Mcgill University
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TAVARES Roberto
Universidade Federal de Minas Gerais
関連論文
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- Numerical Studies on the In-situ Measurement of Inclusions in Liquid Steel Using the E.S.Z. or LiMCA Technique
- Physical and Mathematical Modelling of an Extended Nozzle for Metal Delivery to High Speed, Thin Strip Casting Machines
- Modelling of a Novel Configuration for Single-belt Caster:The Influence of Empirical Parameters on the Solidification Profile
- Physical and Mathematical Modelling of Steelmaking Tundish Operations : A Review of the Last Decade (1999-2009)
- A Technique for the Evaluation of Instantaneous Heat Fluxes for the Horizontal Strip Casting of Aluminum Alloys
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- Physical and Mathematical Modeling in Development of Metal Delivery System for Single Belt Casting Process
- Ab-initio Predictions of Interfacial Heat Fluxes in Horizontal Single Belt Casting (HSBC), Incorporating Surface Texture and Air Gap Evolution
- Physical and Mathematical Modelling of Inert Gas Shrouding in a Tundish
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- Progress in Strip Casting Technologies for Steel; Technical Developments
- Progress of Strip Casting Technology for Steel; Historical Developments
- The Physical and Mathematical Modelling of Gas Stirred Ladle Systems.
- Modelling of Non-isothermal Melt Flows in a Four Strand Delta Shaped Billet Caster Tundish Validated by Water Model Experiments