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Study on Mechanical Properties of Multi-Cavity Steel-Concrete Composite Beam

This paper proposes a new form of composite beam: a multi-cavity steel-concrete composite beam. This composite beam uses internal perforated steel plate to connect the concrete with the steel structure, and shear connectors are no longer required, which is more suitable for industrial production. Th...

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Autores principales: Li, Chunbao, Cao, Hui, Guan, Di, Li, Shen, Wang, Xukai, Soloveva, Valentina Y., Dalerjon, Hojiboev, Fan, Zhiguang, Qin, Pengju, Liu, Xiaohui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9320568/
https://www.ncbi.nlm.nih.gov/pubmed/35888348
http://dx.doi.org/10.3390/ma15144882
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author Li, Chunbao
Cao, Hui
Guan, Di
Li, Shen
Wang, Xukai
Soloveva, Valentina Y.
Dalerjon, Hojiboev
Fan, Zhiguang
Qin, Pengju
Liu, Xiaohui
author_facet Li, Chunbao
Cao, Hui
Guan, Di
Li, Shen
Wang, Xukai
Soloveva, Valentina Y.
Dalerjon, Hojiboev
Fan, Zhiguang
Qin, Pengju
Liu, Xiaohui
author_sort Li, Chunbao
collection PubMed
description This paper proposes a new form of composite beam: a multi-cavity steel-concrete composite beam. This composite beam uses internal perforated steel plate to connect the concrete with the steel structure, and shear connectors are no longer required, which is more suitable for industrial production. The mechanical properties of a multi-cavity steel-concrete composite beam in industrial applications are studied to avoid failures. In this paper, two multi-cavity steel-concrete composite beams with a size of 2500 mm × 200 mm × 300 mm were prepared, in which the angle of internal porous steel plate was set as 60° and 75°, respectively. A full-scale static load test was conducted on the beams to research its deformation and failure modes. The finite element software ANSYS was used to perform finite element modeling of multi-cavity steel-concrete composite beams and to analyze the influence of concrete strength, steel strength, porosity, and the angle of internal porous steel plate on the mechanical properties of composite beams. The results are as follows: before the composite beam reaches its serviceability limit state, its deformation basically shows a linear change; with the increase of load, the plastic deformation is gradually obvious, which can still provide a certain bearing capacity in the failure stage; the bearing capacity of the composite beam is positively correlated with the strength of concrete and steel, while negatively correlated with the porosity and the angle of internal porous steel plate; composite beams have large bearing capacity, good ductility and integrity.
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spelling pubmed-93205682022-07-27 Study on Mechanical Properties of Multi-Cavity Steel-Concrete Composite Beam Li, Chunbao Cao, Hui Guan, Di Li, Shen Wang, Xukai Soloveva, Valentina Y. Dalerjon, Hojiboev Fan, Zhiguang Qin, Pengju Liu, Xiaohui Materials (Basel) Article This paper proposes a new form of composite beam: a multi-cavity steel-concrete composite beam. This composite beam uses internal perforated steel plate to connect the concrete with the steel structure, and shear connectors are no longer required, which is more suitable for industrial production. The mechanical properties of a multi-cavity steel-concrete composite beam in industrial applications are studied to avoid failures. In this paper, two multi-cavity steel-concrete composite beams with a size of 2500 mm × 200 mm × 300 mm were prepared, in which the angle of internal porous steel plate was set as 60° and 75°, respectively. A full-scale static load test was conducted on the beams to research its deformation and failure modes. The finite element software ANSYS was used to perform finite element modeling of multi-cavity steel-concrete composite beams and to analyze the influence of concrete strength, steel strength, porosity, and the angle of internal porous steel plate on the mechanical properties of composite beams. The results are as follows: before the composite beam reaches its serviceability limit state, its deformation basically shows a linear change; with the increase of load, the plastic deformation is gradually obvious, which can still provide a certain bearing capacity in the failure stage; the bearing capacity of the composite beam is positively correlated with the strength of concrete and steel, while negatively correlated with the porosity and the angle of internal porous steel plate; composite beams have large bearing capacity, good ductility and integrity. MDPI 2022-07-13 /pmc/articles/PMC9320568/ /pubmed/35888348 http://dx.doi.org/10.3390/ma15144882 Text en © 2022 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
Li, Chunbao
Cao, Hui
Guan, Di
Li, Shen
Wang, Xukai
Soloveva, Valentina Y.
Dalerjon, Hojiboev
Fan, Zhiguang
Qin, Pengju
Liu, Xiaohui
Study on Mechanical Properties of Multi-Cavity Steel-Concrete Composite Beam
title Study on Mechanical Properties of Multi-Cavity Steel-Concrete Composite Beam
title_full Study on Mechanical Properties of Multi-Cavity Steel-Concrete Composite Beam
title_fullStr Study on Mechanical Properties of Multi-Cavity Steel-Concrete Composite Beam
title_full_unstemmed Study on Mechanical Properties of Multi-Cavity Steel-Concrete Composite Beam
title_short Study on Mechanical Properties of Multi-Cavity Steel-Concrete Composite Beam
title_sort study on mechanical properties of multi-cavity steel-concrete composite beam
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9320568/
https://www.ncbi.nlm.nih.gov/pubmed/35888348
http://dx.doi.org/10.3390/ma15144882
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