Experimental study of the composite steel deck in terms of geometric and mechanical parameters

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The behavior of the composite steel deck is conditioned, mainly, to the interaction that exists between the concrete and the steel deck, the shear connection between these two materials is provided by the mechanical adherence, which exists in its interface. In order to study these characteristics, a...

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Detalles Bibliográficos
Autores: Cueva, Jean, Diaz, Miguel
Formato: artículo
Fecha de Publicación:2019
Institución:Universidad Nacional de Ingeniería
Repositorio:Revista UNI - Tecnia
Lenguaje:español
OAI Identifier:oai:oai:revistas.uni.edu.pe:article/705
Enlace del recurso:http://www.revistas.uni.edu.pe/index.php/tecnia/article/view/705
Nivel de acceso:acceso abierto
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spelling Experimental study of the composite steel deck in terms of geometric and mechanical parametersCueva, JeanDiaz, MiguelThe behavior of the composite steel deck is conditioned, mainly, to the interaction that exists between the concrete and the steel deck, the shear connection between these two materials is provided by the mechanical adherence, which exists in its interface. In order to study these characteristics, a series of full-scale slab tests have been carried out, such as bending tests to identify the slipping load, which is directly related to the shear bond strength of the slab. The study of the shear bond strength is very important because in most cases the geometric conditions of the section and the slenderness of the slab will lead to this type of failure. For this reason, this research will be in charge of studying this failure condition, based on previously full-scale slab tests and newly constructed specimens, in order to cover as many situations as possible. The experimental results of these tests, such as the slipping load and the corresponding deflection, will allow establishing a new relationship between the slipping load, the geometric and mechanical parameters. This proposed relationship will be carried out for each of the steel deck profiles under study and this formulation will be validated as an alternative proposal to the "m y k method".Universidad Nacional de Ingeniería2019-08-07info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionTECNIA Special Issue on Earthquake Engineeringapplication/pdfaudio/mpegapplication/epub+ziphttp://www.revistas.uni.edu.pe/index.php/tecnia/article/view/70510.21754/tecnia.v29i2.705TECNIA; Vol 29 No 2 (2019): Special Issue on Earthquake EngineeringTECNIA; Vol. 29 Núm. 2 (2019): Edición especial en Ingeniería Sísmica2309-04130375-7765reponame:Revista UNI - Tecniainstname:Universidad Nacional de Ingenieríainstacron:UNIspahttp://www.revistas.uni.edu.pe/index.php/tecnia/article/view/705/1107http://www.revistas.uni.edu.pe/index.php/tecnia/article/view/705/1125http://www.revistas.uni.edu.pe/index.php/tecnia/article/view/705/1147info:eu-repo/semantics/openAccess2021-05-29T15:55:42Zmail@mail.com -
dc.title.none.fl_str_mv Experimental study of the composite steel deck in terms of geometric and mechanical parameters
title Experimental study of the composite steel deck in terms of geometric and mechanical parameters
spellingShingle Experimental study of the composite steel deck in terms of geometric and mechanical parameters
Cueva, Jean
title_short Experimental study of the composite steel deck in terms of geometric and mechanical parameters
title_full Experimental study of the composite steel deck in terms of geometric and mechanical parameters
title_fullStr Experimental study of the composite steel deck in terms of geometric and mechanical parameters
title_full_unstemmed Experimental study of the composite steel deck in terms of geometric and mechanical parameters
title_sort Experimental study of the composite steel deck in terms of geometric and mechanical parameters
dc.creator.none.fl_str_mv Cueva, Jean
Diaz, Miguel
author Cueva, Jean
author_facet Cueva, Jean
Diaz, Miguel
author_role author
author2 Diaz, Miguel
author2_role author
dc.description.none.fl_txt_mv The behavior of the composite steel deck is conditioned, mainly, to the interaction that exists between the concrete and the steel deck, the shear connection between these two materials is provided by the mechanical adherence, which exists in its interface. In order to study these characteristics, a series of full-scale slab tests have been carried out, such as bending tests to identify the slipping load, which is directly related to the shear bond strength of the slab. The study of the shear bond strength is very important because in most cases the geometric conditions of the section and the slenderness of the slab will lead to this type of failure. For this reason, this research will be in charge of studying this failure condition, based on previously full-scale slab tests and newly constructed specimens, in order to cover as many situations as possible. The experimental results of these tests, such as the slipping load and the corresponding deflection, will allow establishing a new relationship between the slipping load, the geometric and mechanical parameters. This proposed relationship will be carried out for each of the steel deck profiles under study and this formulation will be validated as an alternative proposal to the "m y k method".
description The behavior of the composite steel deck is conditioned, mainly, to the interaction that exists between the concrete and the steel deck, the shear connection between these two materials is provided by the mechanical adherence, which exists in its interface. In order to study these characteristics, a series of full-scale slab tests have been carried out, such as bending tests to identify the slipping load, which is directly related to the shear bond strength of the slab. The study of the shear bond strength is very important because in most cases the geometric conditions of the section and the slenderness of the slab will lead to this type of failure. For this reason, this research will be in charge of studying this failure condition, based on previously full-scale slab tests and newly constructed specimens, in order to cover as many situations as possible. The experimental results of these tests, such as the slipping load and the corresponding deflection, will allow establishing a new relationship between the slipping load, the geometric and mechanical parameters. This proposed relationship will be carried out for each of the steel deck profiles under study and this formulation will be validated as an alternative proposal to the "m y k method".
publishDate 2019
dc.date.none.fl_str_mv 2019-08-07
dc.type.none.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
TECNIA Special Issue on Earthquake Engineering
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status_str publishedVersion
dc.identifier.none.fl_str_mv http://www.revistas.uni.edu.pe/index.php/tecnia/article/view/705
10.21754/tecnia.v29i2.705
url http://www.revistas.uni.edu.pe/index.php/tecnia/article/view/705
identifier_str_mv 10.21754/tecnia.v29i2.705
dc.language.none.fl_str_mv spa
language spa
dc.relation.none.fl_str_mv http://www.revistas.uni.edu.pe/index.php/tecnia/article/view/705/1107
http://www.revistas.uni.edu.pe/index.php/tecnia/article/view/705/1125
http://www.revistas.uni.edu.pe/index.php/tecnia/article/view/705/1147
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
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dc.publisher.none.fl_str_mv Universidad Nacional de Ingeniería
publisher.none.fl_str_mv Universidad Nacional de Ingeniería
dc.source.none.fl_str_mv TECNIA; Vol 29 No 2 (2019): Special Issue on Earthquake Engineering
TECNIA; Vol. 29 Núm. 2 (2019): Edición especial en Ingeniería Sísmica
2309-0413
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