author_facet Wang, Meng
Wang, Meng
author Wang, Meng
spellingShingle Wang, Meng
Advanced Materials Research
Parametric Study of Beam to Column Extended Endplate Connection in Fire
General Engineering
author_sort wang, meng
spelling Wang, Meng 1662-8985 Trans Tech Publications, Ltd. General Engineering http://dx.doi.org/10.4028/www.scientific.net/amr.594-597.779 <jats:p>In this paper, numerical study results using ABAQUS are presents to demonstrate the failure modes and the behaviour of endplate connection with different parameters at elevated temperature. Numerical models and simulation methodology are first validated by the comparison to experimental data. Then the behaviour of beam and the failure modes endplate connection with different parameters- including beam span, beam load ratio, column cross section, endplate type- are studied. It can be concluded that all these parameters has a effects on the behaviour of the connection, while some parameters has a great influence on the survivability of the joint.</jats:p> Parametric Study of Beam to Column Extended Endplate Connection in Fire Advanced Materials Research
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title Parametric Study of Beam to Column Extended Endplate Connection in Fire
title_unstemmed Parametric Study of Beam to Column Extended Endplate Connection in Fire
title_full Parametric Study of Beam to Column Extended Endplate Connection in Fire
title_fullStr Parametric Study of Beam to Column Extended Endplate Connection in Fire
title_full_unstemmed Parametric Study of Beam to Column Extended Endplate Connection in Fire
title_short Parametric Study of Beam to Column Extended Endplate Connection in Fire
title_sort parametric study of beam to column extended endplate connection in fire
topic General Engineering
url http://dx.doi.org/10.4028/www.scientific.net/amr.594-597.779
publishDate 2012
physical 779-784
description <jats:p>In this paper, numerical study results using ABAQUS are presents to demonstrate the failure modes and the behaviour of endplate connection with different parameters at elevated temperature. Numerical models and simulation methodology are first validated by the comparison to experimental data. Then the behaviour of beam and the failure modes endplate connection with different parameters- including beam span, beam load ratio, column cross section, endplate type- are studied. It can be concluded that all these parameters has a effects on the behaviour of the connection, while some parameters has a great influence on the survivability of the joint.</jats:p>
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author_facet Wang, Meng, Wang, Meng
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container_start_page 779
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container_volume 594-597
description <jats:p>In this paper, numerical study results using ABAQUS are presents to demonstrate the failure modes and the behaviour of endplate connection with different parameters at elevated temperature. Numerical models and simulation methodology are first validated by the comparison to experimental data. Then the behaviour of beam and the failure modes endplate connection with different parameters- including beam span, beam load ratio, column cross section, endplate type- are studied. It can be concluded that all these parameters has a effects on the behaviour of the connection, while some parameters has a great influence on the survivability of the joint.</jats:p>
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spelling Wang, Meng 1662-8985 Trans Tech Publications, Ltd. General Engineering http://dx.doi.org/10.4028/www.scientific.net/amr.594-597.779 <jats:p>In this paper, numerical study results using ABAQUS are presents to demonstrate the failure modes and the behaviour of endplate connection with different parameters at elevated temperature. Numerical models and simulation methodology are first validated by the comparison to experimental data. Then the behaviour of beam and the failure modes endplate connection with different parameters- including beam span, beam load ratio, column cross section, endplate type- are studied. It can be concluded that all these parameters has a effects on the behaviour of the connection, while some parameters has a great influence on the survivability of the joint.</jats:p> Parametric Study of Beam to Column Extended Endplate Connection in Fire Advanced Materials Research
spellingShingle Wang, Meng, Advanced Materials Research, Parametric Study of Beam to Column Extended Endplate Connection in Fire, General Engineering
title Parametric Study of Beam to Column Extended Endplate Connection in Fire
title_full Parametric Study of Beam to Column Extended Endplate Connection in Fire
title_fullStr Parametric Study of Beam to Column Extended Endplate Connection in Fire
title_full_unstemmed Parametric Study of Beam to Column Extended Endplate Connection in Fire
title_short Parametric Study of Beam to Column Extended Endplate Connection in Fire
title_sort parametric study of beam to column extended endplate connection in fire
title_unstemmed Parametric Study of Beam to Column Extended Endplate Connection in Fire
topic General Engineering
url http://dx.doi.org/10.4028/www.scientific.net/amr.594-597.779