contributor author | Mahdi Asadnia | |
contributor author | W. M. Kim Roddis | |
date accessioned | 2022-01-30T19:14:06Z | |
date available | 2022-01-30T19:14:06Z | |
date issued | 2020 | |
identifier other | %28ASCE%29BE.1943-5592.0001521.pdf | |
identifier uri | http://yetl.yabesh.ir/yetl1/handle/yetl/4264910 | |
description abstract | This study determined an explicit tolerance for bottom flanges of tub girders giving computed first yield moment including the strength reduction due to initial out-of-flatness of tub girders higher than the flexural design capacity for the limit state of bottom flange local buckling in current standards. Finite-element analysis (FEA) was used to construct flexural strength–reduction curves for tub girders with various out-of-flatness magnitudes covering a range of girder cross sections and spans. Tub bottom flange slenderness ratios between 25 and 120 were modeled as covering the practical range. Models were built with coexisting out-of-flatness in both webs and flanges. The appropriate residual stress pattern was created using heat analysis. Models were laterally supported to ensure the local buckling limit state controls. Both 344.7-MPa (Grade 50 Steel) and 689.4-MPa (Grade 100 Steel) yield steel plates were considered with elastic-perfectly plastic material behavior. Large deflection theory was used to iteratively capture the secondary moments due to out-of-flatness. The current tolerance of D/150 out-of-flatness for the fascia web of an I-shaped plate girder was shown to implicitly accept a 20% strength reduction. Results showed that compressive flexural design formulas for tub girders in current standards conservatively reduce the strength to account for local buckling. Code adoption of bf/200 is recommended for the tub girder bottom flange out-of-flatness tolerance, where bf represents the bottom flange width. | |
publisher | ASCE | |
title | Strength-Based Out-of-Flatness Tolerance for Bottom Flanges of Steel Box Girders | |
type | Journal Paper | |
journal volume | 25 | |
journal issue | 2 | |
journal title | Journal of Bridge Engineering | |
identifier doi | 10.1061/(ASCE)BE.1943-5592.0001521 | |
page | 04019141 | |
tree | Journal of Bridge Engineering:;2020:;Volume ( 025 ):;issue: 002 | |
contenttype | Fulltext | |