Lateral-Torsional Buckling of FRP I-Section Beams

Article ID

3STQD

Lateral-Torsional Buckling of FRP I-Section Beams

Mojtaba B. Sirjani
Mojtaba B. Sirjani Old Dominion University
Zia Razzaq
Zia Razzaq
DOI

Abstract

This paper presents the outcome of an experimental and theoretical investigation into the loadcarrying capacity of Fiber Reinforced Polymer (FRP) I-section beams subjected to four-point loading. The overall lateral-torsional buckling, web and flange local buckling as well as material rupture load estimates are also made using the American Society of Civil Engineers’ Load and Resistance Factor Design (ASCELRFD) Pre-Standard for FRP Structures. Lateral-torsional buckling failure mode is found to govern for each of the beams studied. The study also revealed that the height of applied loads relative to the shear center has a very significant influence on lateral-torsional buckling load of a beam thus making ASCELRFD buckling load estimates over-conservative in a vareity of cases.

This paper presents the outcome of an experimental and theoretical investigation into the loadcarrying capacity of Fiber Reinforced Polymer (FRP) I-section beams subjected to four-point loading. The overall lateral-torsional buckling, web and flange local buckling as well as material rupture load estimates are also made using the American Society of Civil Engineers’ Load and Resistance Factor Design (ASCELRFD) Pre-Standard for FRP Structures. Lateral-torsional buckling failure mode is found to govern for each of the beams studied. The study also revealed that the height of applied loads relative to the shear center has a very significant influence on lateral-torsional buckling load of a beam thus making ASCELRFD buckling load estimates over-conservative in a vareity of cases.

Mojtaba B. Sirjani
Mojtaba B. Sirjani Old Dominion University
Zia Razzaq
Zia Razzaq

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Mojtaba B. Sirjani. 2017. “. Global Journal of Research in Engineering – E: Civil & Structural GJRE-E Volume 16 (GJRE Volume 16 Issue E5): .

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Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

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GJRE-E Classification: FOR Code: 090599
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Lateral-Torsional Buckling of FRP I-Section Beams

Mojtaba B. Sirjani
Mojtaba B. Sirjani Old Dominion University
Zia Razzaq
Zia Razzaq

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