Effects of ladle change operations on steel cleanness

Since the introduction of continuous casting, concerns exist about the suitability of slabs cast during the transitional periods as successive ladle are teemed. Consequently, for critical applications such as thin-wall tinplate products, only steel cast during ‘steady-state’ conditions is selected....

Full description

Bibliographic Details
Main Author: Thomas, P. R.
Published: Swansea University 2006
Subjects:
669
Online Access:http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.639188
id ndltd-bl.uk-oai-ethos.bl.uk-639188
record_format oai_dc
spelling ndltd-bl.uk-oai-ethos.bl.uk-6391882015-05-02T03:27:43ZEffects of ladle change operations on steel cleannessThomas, P. R.2006Since the introduction of continuous casting, concerns exist about the suitability of slabs cast during the transitional periods as successive ladle are teemed. Consequently, for critical applications such as thin-wall tinplate products, only steel cast during ‘steady-state’ conditions is selected. In contrast, slab cast over defined lengths before and after a ladle change is downgraded to less demanding applications, irrespective of cleanness. To evaluate the steel cleanness during ladle changes, inclusions levels were assessed when the steel reservoir level in the tundish fell to predefined weights. This plant based research project found marked variations in oxygen levels and inclusion morphology over the transitional period. However, individual inclusions sizes remained consistent over the period. The study concluded that steel cleanness that steel cleanness levels improve towards the end of a heat and current grading rules are unnecessarily downgrading clean steel. The deteriorations in cleanness levels are ladle changes were primarily due to the presence of reoxidation products, caused by the practice of opening ‘new’ ladles with the steel stream unshrouded i.e. exposed to the atmosphere.669Swansea University http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.639188Electronic Thesis or Dissertation
collection NDLTD
sources NDLTD
topic 669
spellingShingle 669
Thomas, P. R.
Effects of ladle change operations on steel cleanness
description Since the introduction of continuous casting, concerns exist about the suitability of slabs cast during the transitional periods as successive ladle are teemed. Consequently, for critical applications such as thin-wall tinplate products, only steel cast during ‘steady-state’ conditions is selected. In contrast, slab cast over defined lengths before and after a ladle change is downgraded to less demanding applications, irrespective of cleanness. To evaluate the steel cleanness during ladle changes, inclusions levels were assessed when the steel reservoir level in the tundish fell to predefined weights. This plant based research project found marked variations in oxygen levels and inclusion morphology over the transitional period. However, individual inclusions sizes remained consistent over the period. The study concluded that steel cleanness that steel cleanness levels improve towards the end of a heat and current grading rules are unnecessarily downgrading clean steel. The deteriorations in cleanness levels are ladle changes were primarily due to the presence of reoxidation products, caused by the practice of opening ‘new’ ladles with the steel stream unshrouded i.e. exposed to the atmosphere.
author Thomas, P. R.
author_facet Thomas, P. R.
author_sort Thomas, P. R.
title Effects of ladle change operations on steel cleanness
title_short Effects of ladle change operations on steel cleanness
title_full Effects of ladle change operations on steel cleanness
title_fullStr Effects of ladle change operations on steel cleanness
title_full_unstemmed Effects of ladle change operations on steel cleanness
title_sort effects of ladle change operations on steel cleanness
publisher Swansea University
publishDate 2006
url http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.639188
work_keys_str_mv AT thomaspr effectsofladlechangeoperationsonsteelcleanness
_version_ 1716802674328862720