Experimental assessment of I-shaped steel beams with longitudinal stiffeners under lateral-torsional buckling

This study focused on the experimental assessment of the behavior of I-shaped steel beams with longitudinal stiffeners under the action of lateral-torsional buckling. Thirty-three IPE-140 steel beams with and without longitudinal stiffeners were tested under simple-support conditions with a laterall...

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Main Authors: Néstor I. Prado, Julian Carrillo, Gustavo A. Ospina, Dario Ramirez-Amaya
Format: Article
Language:English
Published: Universidad Nacional de Colombia 2018-10-01
Series:Dyna
Subjects:
Online Access:https://revistas.unal.edu.co/index.php/dyna/article/view/71892
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spelling doaj-25c64dbe20f04d379d74297a7f8805e92020-11-24T21:56:08ZengUniversidad Nacional de Colombia Dyna0012-73532346-21832018-10-018520727828710.15446/dyna.v85n207.7189249955Experimental assessment of I-shaped steel beams with longitudinal stiffeners under lateral-torsional bucklingNéstor I. Prado0Julian Carrillo1Gustavo A. Ospina2Dario Ramirez-Amaya3Universidad Pontificia BolivarianaUniversidad Militar Nueva GranadaUniversidad Pontificia BolivarianaUniversidad Pontificia BolivarianaThis study focused on the experimental assessment of the behavior of I-shaped steel beams with longitudinal stiffeners under the action of lateral-torsional buckling. Thirty-three IPE-140 steel beams with and without longitudinal stiffeners were tested under simple-support conditions with a laterally unbraced length ranging from 0.69 to 6.0 m. The stiffeners spacing was 0.42 m, which represented three times the depth of the section. The structural behavior of the beams is discussed in terms of their flexural capacity, the lateral displacement of the compression flange and the failure twist angle. The results showed that the use of longitudinal stiffeners increased the flexural capacity up to 82%, decreased the lateral displacement of the compression flange and the failure twist angle up to 72 and 90% respectively, with respect to the specimens without stiffeners.https://revistas.unal.edu.co/index.php/dyna/article/view/71892longitudinal stiffenerslateral-torsional bucklinglateral displacementlaterally unbraced lengthI-shaped beamfailure twist angleflexural capacity
collection DOAJ
language English
format Article
sources DOAJ
author Néstor I. Prado
Julian Carrillo
Gustavo A. Ospina
Dario Ramirez-Amaya
spellingShingle Néstor I. Prado
Julian Carrillo
Gustavo A. Ospina
Dario Ramirez-Amaya
Experimental assessment of I-shaped steel beams with longitudinal stiffeners under lateral-torsional buckling
Dyna
longitudinal stiffeners
lateral-torsional buckling
lateral displacement
laterally unbraced length
I-shaped beam
failure twist angle
flexural capacity
author_facet Néstor I. Prado
Julian Carrillo
Gustavo A. Ospina
Dario Ramirez-Amaya
author_sort Néstor I. Prado
title Experimental assessment of I-shaped steel beams with longitudinal stiffeners under lateral-torsional buckling
title_short Experimental assessment of I-shaped steel beams with longitudinal stiffeners under lateral-torsional buckling
title_full Experimental assessment of I-shaped steel beams with longitudinal stiffeners under lateral-torsional buckling
title_fullStr Experimental assessment of I-shaped steel beams with longitudinal stiffeners under lateral-torsional buckling
title_full_unstemmed Experimental assessment of I-shaped steel beams with longitudinal stiffeners under lateral-torsional buckling
title_sort experimental assessment of i-shaped steel beams with longitudinal stiffeners under lateral-torsional buckling
publisher Universidad Nacional de Colombia
series Dyna
issn 0012-7353
2346-2183
publishDate 2018-10-01
description This study focused on the experimental assessment of the behavior of I-shaped steel beams with longitudinal stiffeners under the action of lateral-torsional buckling. Thirty-three IPE-140 steel beams with and without longitudinal stiffeners were tested under simple-support conditions with a laterally unbraced length ranging from 0.69 to 6.0 m. The stiffeners spacing was 0.42 m, which represented three times the depth of the section. The structural behavior of the beams is discussed in terms of their flexural capacity, the lateral displacement of the compression flange and the failure twist angle. The results showed that the use of longitudinal stiffeners increased the flexural capacity up to 82%, decreased the lateral displacement of the compression flange and the failure twist angle up to 72 and 90% respectively, with respect to the specimens without stiffeners.
topic longitudinal stiffeners
lateral-torsional buckling
lateral displacement
laterally unbraced length
I-shaped beam
failure twist angle
flexural capacity
url https://revistas.unal.edu.co/index.php/dyna/article/view/71892
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AT juliancarrillo experimentalassessmentofishapedsteelbeamswithlongitudinalstiffenersunderlateraltorsionalbuckling
AT gustavoaospina experimentalassessmentofishapedsteelbeamswithlongitudinalstiffenersunderlateraltorsionalbuckling
AT darioramirezamaya experimentalassessmentofishapedsteelbeamswithlongitudinalstiffenersunderlateraltorsionalbuckling
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