Hot rolling of light gauge steel strip

Production of hot rolled thin gauge steel strip in a compact six-stand mill was studied by means of mathematical modelling and on site measurements. Data obtained during processing low carbon steel strip ranging from 1.06 to 2.68 mm in final outgoing thickness included speeds, reductions and separat...

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Autores principales: Zambrano, P. C., Delgado, A. L., Guerrero Mata, M. P., Colás, R., Leduc, L. A.
Formato: Artículo
Lenguaje:inglés
Publicado: The Iron and Steel Institute of Japan 2003
Acceso en línea:http://eprints.uanl.mx/29912/1/29912.pdf
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author Zambrano, P. C.
Delgado, A. L.
Guerrero Mata, M. P.
Colás, R.
Leduc, L. A.
author_facet Zambrano, P. C.
Delgado, A. L.
Guerrero Mata, M. P.
Colás, R.
Leduc, L. A.
author_sort Zambrano, P. C.
collection Repositorio Institucional
description Production of hot rolled thin gauge steel strip in a compact six-stand mill was studied by means of mathematical modelling and on site measurements. Data obtained during processing low carbon steel strip ranging from 1.06 to 2.68 mm in final outgoing thickness included speeds, reductions and separation forces at each of the six stands. The mean flow stress during rolling was calculated from the rolling loads, assuming adhesive conditions within the roll-gap, and by means of a mathematical model that accounts for strain hardening and the occurrence of various dynamic restoration phenomena during deformation. It was found that the values of the mean flow stress values, independently of the way they were obtained, varied as a function of both, strain rate and temperature, being possible to derive a unique formulation to describe their behaviour.
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spelling eprints-299122025-07-04T15:20:07Z http://eprints.uanl.mx/29912/ Hot rolling of light gauge steel strip Zambrano, P. C. Delgado, A. L. Guerrero Mata, M. P. Colás, R. Leduc, L. A. Production of hot rolled thin gauge steel strip in a compact six-stand mill was studied by means of mathematical modelling and on site measurements. Data obtained during processing low carbon steel strip ranging from 1.06 to 2.68 mm in final outgoing thickness included speeds, reductions and separation forces at each of the six stands. The mean flow stress during rolling was calculated from the rolling loads, assuming adhesive conditions within the roll-gap, and by means of a mathematical model that accounts for strain hardening and the occurrence of various dynamic restoration phenomena during deformation. It was found that the values of the mean flow stress values, independently of the way they were obtained, varied as a function of both, strain rate and temperature, being possible to derive a unique formulation to describe their behaviour. The Iron and Steel Institute of Japan 2003 Article PeerReviewed text en cc_by_nc_nd http://eprints.uanl.mx/29912/1/29912.pdf http://eprints.uanl.mx/29912/1.haspreviewThumbnailVersion/29912.pdf Zambrano, P. C. y Delgado, A. L. y Guerrero Mata, M. P. y Colás, R. y Leduc, L. A. (2003) Hot rolling of light gauge steel strip. ISIJ International, 43 (7). pp. 1030-1035. ISSN 0915-1559 http://doi.org/10.2355/isijinternational.43.1030 doi:10.2355/isijinternational.43.1030
spellingShingle Zambrano, P. C.
Delgado, A. L.
Guerrero Mata, M. P.
Colás, R.
Leduc, L. A.
Hot rolling of light gauge steel strip
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title Hot rolling of light gauge steel strip
title_full Hot rolling of light gauge steel strip
title_fullStr Hot rolling of light gauge steel strip
title_full_unstemmed Hot rolling of light gauge steel strip
title_short Hot rolling of light gauge steel strip
title_sort hot rolling of light gauge steel strip
url http://eprints.uanl.mx/29912/1/29912.pdf
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