Flexural Performance of a Novel Steel Cold-Formed Beam–PSSDB Slab Composite System Filled with Concrete Material

Author:

Liejy Mohammed Chyad12,Al Zand Ahmed W.1ORCID,Mutalib Azrul A.1,Alghaaeb Mustafa Farooq13ORCID,Abdulhameed Ali A.4ORCID,Al-Attar Alyaa A.5,Tawfeeq Wadhah M.6,Hilo Salam J.7ORCID

Affiliation:

1. Department of Civil Engineering, Universiti Kebangsaan Malaysia (UKM), Bangi 43600, Malaysia

2. Al-Hawija Technical Institute, Northern Technical University, Kirkuk 36001, Iraq

3. Engineering Affairs, Ministry of Culture, Baghdad 13032, Iraq

4. Department of Reconstruction and Projects, University of Baghdad, Baghdad 10071, Iraq

5. Northern Technical University, Mosul 41002, Iraq

6. Faculty of Engineering, Sohar University, Sohar 311, Oman

7. Civil Engineering Department, University of Technology, Baghdad 10066, Iraq

Abstract

In this study, the flexural performance of a new composite beam–slab system filled with concrete material was investigated, where this system was mainly prepared from lightweight cold-formed steel sections of a beam and a deck slab for carrying heavy floor loads as another concept of a conventional composite system with a lower cost impact. For this purpose, seven samples of a profile steel sheet–dry board deck slab (PSSDB/PDS) carried by a steel cold-formed C-purlins beam (CB) were prepared and named “composite CBPDS specimen”, which were tested under a static bending load. Specifically, the effects of the profile steel sheet (PSS) direction (parallel or perpendicular to the span of the specimen) using different C-purlins configurations (double sections connected face-to-face, double separate sections, and a single section) were investigated. The research discussed the specimens’ failure modes, flexural behavior, bending capacity, bending strain relationships, and energy absorption index of specimens. Generally, the CBPDS specimens with the PSS slab placed in a parallel direction achieved approximately a 13–40% higher bending capacity compared with the corresponding specimens with a perpendicular PSS direction (depending on the configuration of the beam). Fabricating the beam of the CBPDS specimen with double C-purlins (face-to-face) led to more effective concrete confinement behavior compared with the double separate C-purlins beam. The related specimen recorded a 10% higher bending capacity. Finally, the suggested composite CBPDS system exhibited a sufficient energy absorption capability of the static bending load because it demonstrated high strength and high ductility.

Funder

Investigation & Instrumentation Management Center (CRIM), Universiti Kebangsaan Malaysia

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference46 articles.

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