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Prediction of the Bending Strength of a Composite Steel Beam–Slab Member Filled with Recycled Concrete

This study investigated the structural behavior of a beam–slab member fabricated using a steel C-Purlins beam carrying a profile steel sheet slab covered by a dry board sheet filled with recycled aggregate concrete, called a CBPDS member. This concept was developed to reduce the cost and self-weight...

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Autores principales: Liejy, Mohammed Chyad, Al Zand, Ahmed W., Mutalib, Azrul A., Abdulhameed, Ali A., Kaish, A. B. M. A., Tawfeeq, Wadhah M., Baharom, Shahrizan, Al-Attar, Alyaa A., Hanoon, Ammar N., Yaseen, Zaher Mundher
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10096362/
https://www.ncbi.nlm.nih.gov/pubmed/37049042
http://dx.doi.org/10.3390/ma16072748
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author Liejy, Mohammed Chyad
Al Zand, Ahmed W.
Mutalib, Azrul A.
Abdulhameed, Ali A.
Kaish, A. B. M. A.
Tawfeeq, Wadhah M.
Baharom, Shahrizan
Al-Attar, Alyaa A.
Hanoon, Ammar N.
Yaseen, Zaher Mundher
author_facet Liejy, Mohammed Chyad
Al Zand, Ahmed W.
Mutalib, Azrul A.
Abdulhameed, Ali A.
Kaish, A. B. M. A.
Tawfeeq, Wadhah M.
Baharom, Shahrizan
Al-Attar, Alyaa A.
Hanoon, Ammar N.
Yaseen, Zaher Mundher
author_sort Liejy, Mohammed Chyad
collection PubMed
description This study investigated the structural behavior of a beam–slab member fabricated using a steel C-Purlins beam carrying a profile steel sheet slab covered by a dry board sheet filled with recycled aggregate concrete, called a CBPDS member. This concept was developed to reduce the cost and self-weight of the composite beam–slab system; it replaces the hot-rolled steel I-beam with a steel C-Purlins section, which is easier to fabricate and weighs less. For this purpose, six full-scale CBPDS specimens were tested under four-point static bending. This study investigated the effect of using double C-Purlins beams face-to-face as connected or separated sections and the effect of using concrete material that contains different recycled aggregates to replace raw aggregates. Test results confirmed that using double C-Purlins beams with a face-to-face configuration achieved better concrete confinement behavior than a separate configuration did; specifically, a higher bending capacity and ductility index by about +10.7% and +15.7%, respectively. Generally, the overall bending behavior of the tested specimens was not significantly affected when the infill concrete’s raw aggregates were replaced with 50% and 100% recycled aggregates; however, their bending capacities were reduced, at −8.0% and −11.6%, respectively, compared to the control specimen (0% recycled aggregates). Furthermore, a new theoretical model developed during this study to predict the nominal bending strength of the suggested CBPDS member showed acceptable mean value (0.970) and standard deviation (3.6%) compared with the corresponding test results.
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spelling pubmed-100963622023-04-13 Prediction of the Bending Strength of a Composite Steel Beam–Slab Member Filled with Recycled Concrete Liejy, Mohammed Chyad Al Zand, Ahmed W. Mutalib, Azrul A. Abdulhameed, Ali A. Kaish, A. B. M. A. Tawfeeq, Wadhah M. Baharom, Shahrizan Al-Attar, Alyaa A. Hanoon, Ammar N. Yaseen, Zaher Mundher Materials (Basel) Article This study investigated the structural behavior of a beam–slab member fabricated using a steel C-Purlins beam carrying a profile steel sheet slab covered by a dry board sheet filled with recycled aggregate concrete, called a CBPDS member. This concept was developed to reduce the cost and self-weight of the composite beam–slab system; it replaces the hot-rolled steel I-beam with a steel C-Purlins section, which is easier to fabricate and weighs less. For this purpose, six full-scale CBPDS specimens were tested under four-point static bending. This study investigated the effect of using double C-Purlins beams face-to-face as connected or separated sections and the effect of using concrete material that contains different recycled aggregates to replace raw aggregates. Test results confirmed that using double C-Purlins beams with a face-to-face configuration achieved better concrete confinement behavior than a separate configuration did; specifically, a higher bending capacity and ductility index by about +10.7% and +15.7%, respectively. Generally, the overall bending behavior of the tested specimens was not significantly affected when the infill concrete’s raw aggregates were replaced with 50% and 100% recycled aggregates; however, their bending capacities were reduced, at −8.0% and −11.6%, respectively, compared to the control specimen (0% recycled aggregates). Furthermore, a new theoretical model developed during this study to predict the nominal bending strength of the suggested CBPDS member showed acceptable mean value (0.970) and standard deviation (3.6%) compared with the corresponding test results. MDPI 2023-03-29 /pmc/articles/PMC10096362/ /pubmed/37049042 http://dx.doi.org/10.3390/ma16072748 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liejy, Mohammed Chyad
Al Zand, Ahmed W.
Mutalib, Azrul A.
Abdulhameed, Ali A.
Kaish, A. B. M. A.
Tawfeeq, Wadhah M.
Baharom, Shahrizan
Al-Attar, Alyaa A.
Hanoon, Ammar N.
Yaseen, Zaher Mundher
Prediction of the Bending Strength of a Composite Steel Beam–Slab Member Filled with Recycled Concrete
title Prediction of the Bending Strength of a Composite Steel Beam–Slab Member Filled with Recycled Concrete
title_full Prediction of the Bending Strength of a Composite Steel Beam–Slab Member Filled with Recycled Concrete
title_fullStr Prediction of the Bending Strength of a Composite Steel Beam–Slab Member Filled with Recycled Concrete
title_full_unstemmed Prediction of the Bending Strength of a Composite Steel Beam–Slab Member Filled with Recycled Concrete
title_short Prediction of the Bending Strength of a Composite Steel Beam–Slab Member Filled with Recycled Concrete
title_sort prediction of the bending strength of a composite steel beam–slab member filled with recycled concrete
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10096362/
https://www.ncbi.nlm.nih.gov/pubmed/37049042
http://dx.doi.org/10.3390/ma16072748
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