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Original scientific paper

https://doi.org/10.14256/JCE.4074.2024

Vertical-bending properties of composite box girder with corrugated steel web and steel bottom slab

Pei-wei , Gao
Cen Feng


Full text: croatian pdf 2.536 Kb

page 745-756

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Full text: english pdf 2.585 Kb

page 745-756

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Abstract

A composite box girder with corrugated steel webs and a steel bottom slab is a new type of steel–concrete structure that works primarily in the vertical-bending state. This study proposes a method to derive the governing differential equations and natural boundary conditions that define the additional deflection induced by the shear-lag effect as the generalised displacement. Two shear-lag longitudinal warping displacement difference functions were set for the cantilever and flange slabs of the box girder to accurately analyse its mechanical properties. The proposed equations are verified by experimental and numerical data. This equations reflect the vertical-bending mechanical properties of the composite box girder, including the non-uniform distribution of normal stress in the flange slabs and the influence of the accordion effect, shear lag, and self-equilibrium conditions.

Keywords

composite box girder; stress distribution; accordion effect; shear lag effect; self-equilibrium condition

Hrčak ID:

336438

URI

https://hrcak.srce.hr/336438

Publication date:

1.10.2025.

Article data in other languages: croatian

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