Numerical Study on the Structural Performance of Steel Beams with Slant End-plate Connections

Abstract Thermal effects can be one of the most harmful conditions that any steel structure should expect throughout its service life. To counteract this effect, a new beam, with a capability to dissipate thermally induced axial force by slanting of end-plate connection at both ends, is proposed. Th...

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Main Authors: Farshad Zahmatkesh, Mohd. H. Osman, Elnaz Talebi, Ahmad B.H. Kueh, Mahmood. Md. Tahir
Format: Article
Language:English
Published: Marcílio Alves
Series:Latin American Journal of Solids and Structures
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252016000701360&lng=en&tlng=en
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spelling doaj-c03961dbcfcd49f09128afeebf3fd2e22020-11-25T00:23:26ZengMarcílio AlvesLatin American Journal of Solids and Structures1679-78251371360138710.1590/1679-78252158S1679-78252016000701360Numerical Study on the Structural Performance of Steel Beams with Slant End-plate ConnectionsFarshad ZahmatkeshMohd. H. OsmanElnaz TalebiAhmad B.H. KuehMahmood. Md. TahirAbstract Thermal effects can be one of the most harmful conditions that any steel structure should expect throughout its service life. To counteract this effect, a new beam, with a capability to dissipate thermally induced axial force by slanting of end-plate connection at both ends, is proposed. The beam was examined in terms of its elastic mechanical behavior under symmetric transverse load in presence of an elevated temperature by means of direct stiffness finite element model. The performance of such connection is defined under two resisting mechanisms; by friction force dissipation between faces of slant connection and by small upward crawling on slant plane. The presented numerical method is relatively easy and useful to evaluate the behavior of the proposed beam of various dimensions at different temperatures. Its applicability is evident through satisfactory results verification with those from experimental, analytical and commercially available finite element software. Based on the good agreement between theoretical and experimental methods, a series of design curves were developed as a safe-practical range for the slant end-plate connections which are depend on the conditions of the connection.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252016000701360&lng=en&tlng=enSlanted end-plate connectionelevated temperaturesymmetric transverse loaddirect stiffness finite element modelanalytical model
collection DOAJ
language English
format Article
sources DOAJ
author Farshad Zahmatkesh
Mohd. H. Osman
Elnaz Talebi
Ahmad B.H. Kueh
Mahmood. Md. Tahir
spellingShingle Farshad Zahmatkesh
Mohd. H. Osman
Elnaz Talebi
Ahmad B.H. Kueh
Mahmood. Md. Tahir
Numerical Study on the Structural Performance of Steel Beams with Slant End-plate Connections
Latin American Journal of Solids and Structures
Slanted end-plate connection
elevated temperature
symmetric transverse load
direct stiffness finite element model
analytical model
author_facet Farshad Zahmatkesh
Mohd. H. Osman
Elnaz Talebi
Ahmad B.H. Kueh
Mahmood. Md. Tahir
author_sort Farshad Zahmatkesh
title Numerical Study on the Structural Performance of Steel Beams with Slant End-plate Connections
title_short Numerical Study on the Structural Performance of Steel Beams with Slant End-plate Connections
title_full Numerical Study on the Structural Performance of Steel Beams with Slant End-plate Connections
title_fullStr Numerical Study on the Structural Performance of Steel Beams with Slant End-plate Connections
title_full_unstemmed Numerical Study on the Structural Performance of Steel Beams with Slant End-plate Connections
title_sort numerical study on the structural performance of steel beams with slant end-plate connections
publisher Marcílio Alves
series Latin American Journal of Solids and Structures
issn 1679-7825
description Abstract Thermal effects can be one of the most harmful conditions that any steel structure should expect throughout its service life. To counteract this effect, a new beam, with a capability to dissipate thermally induced axial force by slanting of end-plate connection at both ends, is proposed. The beam was examined in terms of its elastic mechanical behavior under symmetric transverse load in presence of an elevated temperature by means of direct stiffness finite element model. The performance of such connection is defined under two resisting mechanisms; by friction force dissipation between faces of slant connection and by small upward crawling on slant plane. The presented numerical method is relatively easy and useful to evaluate the behavior of the proposed beam of various dimensions at different temperatures. Its applicability is evident through satisfactory results verification with those from experimental, analytical and commercially available finite element software. Based on the good agreement between theoretical and experimental methods, a series of design curves were developed as a safe-practical range for the slant end-plate connections which are depend on the conditions of the connection.
topic Slanted end-plate connection
elevated temperature
symmetric transverse load
direct stiffness finite element model
analytical model
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252016000701360&lng=en&tlng=en
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