Stability of skewed I-shaped girder bridges using bent plate connections

Lateral bracing systems consisting of cross frames and their connections play a significant role in the elastic buckling strength of steel girder bridges. By providing lateral and torsional stability, they prevent lateral torsional buckling of the girder during bridge construction prior to the concr...

Full description

Bibliographic Details
Main Author: Quadrato, Craig Eugene
Format: Others
Language:English
Published: 2010
Subjects:
Online Access:http://hdl.handle.net/2152/ETD-UT-2010-05-981
id ndltd-UTEXAS-oai-repositories.lib.utexas.edu-2152-ETD-UT-2010-05-981
record_format oai_dc
spelling ndltd-UTEXAS-oai-repositories.lib.utexas.edu-2152-ETD-UT-2010-05-9812015-09-20T16:54:57ZStability of skewed I-shaped girder bridges using bent plate connectionsQuadrato, Craig EugeneSkewed straight steel girder bridgeBent plateSplit pipe stiffenerGirder bucklingGirder stabilityLateral bracing systems consisting of cross frames and their connections play a significant role in the elastic buckling strength of steel girder bridges. By providing lateral and torsional stability, they prevent lateral torsional buckling of the girder during bridge construction prior to the concrete bridge deck curing. To perform this function, the bracing system must possess adequate strength and stiffness. And since each component of the bracing system acts in series, the overall stiffness of the system is less than the least stiff component. In skewed bridges, cross frames at the ends of the girders are installed parallel to the bridge skew angle, and their connection to the girder requires that the cross frames be at an angle that prohibits welding a stiffener from the cross frame directly to the girder web. To make this connection, many states use a bent plate to span the angle between the web stiffener and cross frame. While this bent plate connection is now being widely used, it has never been rationally designed to account for its strength or stiffness in the bracing system. Results from field studies show that the bent plate connection may be limiting the cross frame stiffness thereby hampering its ability to provide stability to the girder during construction. The result is significant girder end rotations. The purpose of this research is to classify the impact of the bent plate connection on the end cross frame stiffness in skewed straight steel girder bridges and propose methods to improve the end cross frame’s structural efficiency. This research uses laboratory testing, finite element modeling, and parametric studies to recommend design guidance and construction practices related to the end cross frames of skewed steel girder bridges. In addition to recommending methods to stiffen the existing bent plate connection, an alternative pipe stiffener connection is evaluated. The pipe stiffener not only offers the possibility of a stiffer connection, but can also provide warping restraint to the end of the girder which may significantly increase the girder elastic buckling capacity.text2010-10-04T18:19:00Z2010-10-04T18:19:19Z2010-10-04T18:19:00Z2010-10-04T18:19:19Z2010-052010-10-04May 20102010-10-04T18:19:19Zthesisapplication/pdfhttp://hdl.handle.net/2152/ETD-UT-2010-05-981eng
collection NDLTD
language English
format Others
sources NDLTD
topic Skewed straight steel girder bridge
Bent plate
Split pipe stiffener
Girder buckling
Girder stability
spellingShingle Skewed straight steel girder bridge
Bent plate
Split pipe stiffener
Girder buckling
Girder stability
Quadrato, Craig Eugene
Stability of skewed I-shaped girder bridges using bent plate connections
description Lateral bracing systems consisting of cross frames and their connections play a significant role in the elastic buckling strength of steel girder bridges. By providing lateral and torsional stability, they prevent lateral torsional buckling of the girder during bridge construction prior to the concrete bridge deck curing. To perform this function, the bracing system must possess adequate strength and stiffness. And since each component of the bracing system acts in series, the overall stiffness of the system is less than the least stiff component. In skewed bridges, cross frames at the ends of the girders are installed parallel to the bridge skew angle, and their connection to the girder requires that the cross frames be at an angle that prohibits welding a stiffener from the cross frame directly to the girder web. To make this connection, many states use a bent plate to span the angle between the web stiffener and cross frame. While this bent plate connection is now being widely used, it has never been rationally designed to account for its strength or stiffness in the bracing system. Results from field studies show that the bent plate connection may be limiting the cross frame stiffness thereby hampering its ability to provide stability to the girder during construction. The result is significant girder end rotations. The purpose of this research is to classify the impact of the bent plate connection on the end cross frame stiffness in skewed straight steel girder bridges and propose methods to improve the end cross frame’s structural efficiency. This research uses laboratory testing, finite element modeling, and parametric studies to recommend design guidance and construction practices related to the end cross frames of skewed steel girder bridges. In addition to recommending methods to stiffen the existing bent plate connection, an alternative pipe stiffener connection is evaluated. The pipe stiffener not only offers the possibility of a stiffer connection, but can also provide warping restraint to the end of the girder which may significantly increase the girder elastic buckling capacity. === text
author Quadrato, Craig Eugene
author_facet Quadrato, Craig Eugene
author_sort Quadrato, Craig Eugene
title Stability of skewed I-shaped girder bridges using bent plate connections
title_short Stability of skewed I-shaped girder bridges using bent plate connections
title_full Stability of skewed I-shaped girder bridges using bent plate connections
title_fullStr Stability of skewed I-shaped girder bridges using bent plate connections
title_full_unstemmed Stability of skewed I-shaped girder bridges using bent plate connections
title_sort stability of skewed i-shaped girder bridges using bent plate connections
publishDate 2010
url http://hdl.handle.net/2152/ETD-UT-2010-05-981
work_keys_str_mv AT quadratocraigeugene stabilityofskewedishapedgirderbridgesusingbentplateconnections
_version_ 1716821125358419968