C Conferentia Proceedings
CILAMCE2017-0251 ADVANCED ANALYSIS IN STEEL AND STEEL-CONCRETE COMPOSITE STRUCTURES

Analysis of Steel-Concrete Composite Box Girder Bridges With External Prestressing

Bruno Tasca de Linhares1

1 Universidade Comunitária da Região de Chapecó (Unochapecó)

doi:10.20906/CPS/CILAMCE2017-0251

Resumo

Steel-Concrete Composite Strutures have been used extensively in the construction of bridges and urban viaducts, especially from the second half of the twentieth century. The popularity of this type of solution, with box sections, has increased due to its high flexural capacity and torsion stiffness combined with a closed cross section that reduces the exposed surface to corrosion. This paper discusses the structural behavior, analysis and verification procedures in the Ultimate Limite State (ULS) of Composite Box Girder Bridges with application of external prestressing. In view of the paucity of literature on the subject and the absence of Brazilian standard, this work aims to produce a analysis script to determine the flexural capacity of prestressed composite box girder structures in ULS. Grounded in the American Standard AASHTO-LRFD:2012 and the literature review, we propose a case study for analytical verification/dimensioning of the structure, concerning positive and negative bending moments, shear and shear connectors. After this initial stage, prestressing was applied to the structure, and with de aid of analytical methods, and the virtual work method, the prestress losses and the relation between the additional strain of the tendons and the external applied moment were obtained. Thus, it was possible to make the horizontal forces balance through the Bisection and Newton-Raphson Methods and obtain the increment of positive and negative flexion strength. It was observed, with prestressing, an important increase of capacity in the negative bending region for ULS (~40%); for the positive bending region, the increase was somewhat higher than 7%, compared with the non-prestressed structure. Finally, a finite element model with shell elements was held with aid of the software SAP2000 to confront the initial analysis, made in space frame bars model, recommended by AASHTO-LRFD:2012 standard. The results show that the space frame bars model, in terms of displacements and stresses, is appropriate to analyze this ty

Palavras-chave: Composite Structures; Box Girder Bridges; External Prestressing; Virtual Work Method; Prestress Losses; Finite Elements Moldel

Como citar

Bruno Tasca de Linhares. “Analysis of Steel-Concrete Composite Box Girder Bridges With External Prestressing”. XXXVIII Ibero-Latin American Congress on Computational Methods in Engineering. CILAMCE2017. 2017. DOI: 10.20906/CPS/CILAMCE2017-0251