Three-dimensional final element analysis of composite steel - concrete aches

Latest structure construction crafts frequent use of composite steel-concrete arches for building and bridge applications. The leading goal of this research is to describe a three-dimensional finite element model capable of describing the response of a composite steel-concrete arch. The commercial software Abaqus was implemented to develop the proposed approach, where a certain experimental test results in the literature on a scaled steel-concrete composite arch have been compared to validate the accuracy and adequacy of the proposed finite element model. Furthermore, the current research developed a finite element model to study the fundamental behavior of a composite steel box-concrete arch with a specific parameter. These parameters including the degree of curvature, the number of the shear connector, and the support conditions have been considered the main study parameters. The proposed model has presented an excellent prediction of the initial stiffness, the ultimate strength, and the ductility of the composite arch. The Representative behavior was affected significantly by the designated variable for the steel box section with composite deck. Therefore, these findings may be crafted with the aim of structural design rules. © The Author 2023. This work is licensed under a Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) that allows others to share and adapt the material for any purpose (even commercially), in any medium with an acknowledgement of the work's authorship and initial publication in this journal.

Authors
Al-Brees R.H. , Abu Mahadi M.I. , Al-Gasham T.S. , Naji A.J.
Publisher
International University of Sarajevo
Issue number
2
Language
English
Pages
22-35
State
Published
Volume
11
Year
2023
Organizations
  • 1 Department of Civil Engineering, Academy of Engineering, RUDN University, Moscow, Russian Federation
  • 2 Civil Engineering Department, College of Engineering, University of Wasit, Iraq
  • 3 Roads and Transport Engineering Department, University of Al-Qadisiyah, Diwaniyah, Iraq
Keywords
Composition Arc; Concrete Deck; steel bridges; structure steel
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