Publicação
Influence of load-level and effective thickness on the fire resistance of composite slabs with steel deck
| Resumo: | Composite slabs with steel deck have been used on building construction due to its fast-and-easy crafting that brings economic outstanding alternatives to architects and engineers on large-scale steel framed constructions. At room temperatures and in Europe, the designing procedures of composite slabs are defined by Eurocode 1994-1-1. When it comes to the fire safety analysis of these elements, the designing procedure requires more attention due to the direct exposition of the steel deck to fire, affecting the overall bending resistance. This importance is presented in Eurocode 1994-1-2, taking in consideration the integrity, insulation and load-bearing criteria. In this work the thermal and mechanical behavior of composite slabs with steel deck exposed to standard fire ISO 834 are studied through numerical simulations using Finite-Element Method (FEM). The model was previously validated with one experimental test from literature. The ANSYS Mechanical APDL software was used to develop a parametric study, simulating four different geometries with different load levels, comprehending a total of 126 thermal and mechanical simulations used to determine the correlation between load-level and fire resistance. As result, a new simplified method is proposed for the load bearing fire resistance of composite slabs, considering the effect of the effective thickness and the load level. The fire resistance decreases with the load level and increases with the thickness of the concrete. A new proposal is presented to determine the fire resistance, based on these two parameters. |
|---|---|
| Autores principais: | Santos, Lucas Manoel Cunha |
| Outros Autores: | Piloto, P.A.G.; Balsa, Carlos; Kimura, Érica Fernanda Aiko |
| Assunto: | Composite slabs Steel deck Load level Fire resistance Numerical simulations |
| Ano: | 2021 |
| País: | Portugal |
| Tipo de documento: | artigo |
| Tipo de acesso: | acesso aberto |
| Instituição associada: | Instituto Politécnico de Bragança |
| Idioma: | inglês |
| Origem: | Biblioteca Digital do IPB |
Registos relacionados
article Validation models on the fire resistance of composite slab with steel deck
por: Piloto, P.A.G.
Publicado em: (2019)
por: Piloto, P.A.G.
Publicado em: (2019)
article The load-bearing of composite slabs with steel deck under natural fires
por: Alencar Filho, Marcílio Mariano
Publicado em: (2022)
por: Alencar Filho, Marcílio Mariano
Publicado em: (2022)
article The air gap effect on the fire resistance of composite slab with steel deck
por: Piloto, P.A.G.
Publicado em: (2019)
por: Piloto, P.A.G.
Publicado em: (2019)
groups Critical temperature for the components of composite slabs with steel deck under fire for load-bearing rating
por: Piloto, P.A.G.
Publicado em: (2019)
por: Piloto, P.A.G.
Publicado em: (2019)
article Fire resistance of composite slabs with steel deck: from experiments to numerical simulation
por: Piloto, P.A.G.
Publicado em: (2019)
por: Piloto, P.A.G.
Publicado em: (2019)
article Critical temperature for the components of composite slabs with steel deck under fire for load-bearing rating
por: Piloto, P.A.G.
Publicado em: (2019)
por: Piloto, P.A.G.
Publicado em: (2019)
article Thermal behaviour of rebars and steel deck components of composite slabs under natural fire
por: Alencar Filho, Marcílio Mariano
Publicado em: (2022)
por: Alencar Filho, Marcílio Mariano
Publicado em: (2022)
article Thermal behaviour of rebars and steel deck components of composite slabs under natural fire
por: Filho, Marcílio M. A.
Publicado em: (2022)
por: Filho, Marcílio M. A.
Publicado em: (2022)
article Three-dimensional numerical modelling of fire exposed compositew slabs with steel deck
por: Piloto, P.A.G.
Publicado em: (2019)
por: Piloto, P.A.G.
Publicado em: (2019)
school New developments for the calculation of the sagging moment resistance on composite slabs with steel deck exposed to fire
por: Tahraoui, Abid
Publicado em: (2023)
por: Tahraoui, Abid
Publicado em: (2023)
article Effect of the load level in the fire resistance of composite slab with steel decking
por: Balsa, Carlos
Publicado em: (2019)
por: Balsa, Carlos
Publicado em: (2019)
groups Effect of the load level in the fire resistance of composite slab with steel decking
por: Balsa, Carlos
Publicado em: (2019)
por: Balsa, Carlos
Publicado em: (2019)
article Effect of the load level on the resistance of composite slabs with steel decking under fire conditions
por: Piloto, P.A.G.
Publicado em: (2020)
por: Piloto, P.A.G.
Publicado em: (2020)
school Fire resistance of composite slabs with steel deck and insulation material
por: Lucca, Gabriel Turczyn De
Publicado em: (2024)
por: Lucca, Gabriel Turczyn De
Publicado em: (2024)
article New harmonised proposal for the fire resistance of composite slabs with steel deck
por: Piloto, Paulo A.G.
Publicado em: (2023)
por: Piloto, Paulo A.G.
Publicado em: (2023)
article Fire resistance of composite slabs with steel deck under natural fire
por: Piloto, Paulo A.G.
Publicado em: (2021)
por: Piloto, Paulo A.G.
Publicado em: (2021)
article Numerical simulation of the fire resistance of composite slabs with steel deck
por: Piloto, P.A.G.
Publicado em: (2018)
por: Piloto, P.A.G.
Publicado em: (2018)
article Insulation strategies to enhance fire resistance in composite slabs with reduced carbon emissions
por: Ribeiro, Otavio G.N.
Publicado em: (2025)
por: Ribeiro, Otavio G.N.
Publicado em: (2025)
article Insulation strategies to enhance fire resistance in composite slabs with reduced carbon emissions
por: Ribeiro, O.G.N.
Publicado em: (2025)
por: Ribeiro, O.G.N.
Publicado em: (2025)
groups Fire resistance of composite slabs with profiled steel decking: trapezoidal and reentrant numerical simulation
por: Piloto, P.A.G.
Publicado em: (2018)
por: Piloto, P.A.G.
Publicado em: (2018)
article Fire resistance of composite slabs with steel deck: experimental analysis and numerical simulation
por: Piloto, P.A.G.
Publicado em: (2018)
por: Piloto, P.A.G.
Publicado em: (2018)
article Fire resistance of composite slabs withp rofiled steel decking: trapezoidal and reentrant numerical simulation
por: Piloto, P.A.G.
Publicado em: (2018)
por: Piloto, P.A.G.
Publicado em: (2018)
groups Numerical simulation of composite slabs with steel deck under fire conditions
por: Balsa, Carlos
Publicado em: (2019)
por: Balsa, Carlos
Publicado em: (2019)
article Numerical simulation of composite slabs with steel deck under fire conditions
por: Balsa, Carlos
Publicado em: (2019)
por: Balsa, Carlos
Publicado em: (2019)
article New developments on the bending resistance in composite slabs with steel deck under fire
por: Piloto, P.A.G.
Publicado em: (2022)
por: Piloto, P.A.G.
Publicado em: (2022)
article Three-dimensional numerical analysis on the fire behaviour of composite slabs with steel deck
por: Piloto, P.A.G.
Publicado em: (2020)
por: Piloto, P.A.G.
Publicado em: (2020)
school Numerical simulation of composite slabs with steel deck under fire conditions
por: Ribeiro, Fernando
Publicado em: (2019)
por: Ribeiro, Fernando
Publicado em: (2019)
article A new proposal for estimating the temperatures on the steel deck components of composite slabs under fire
por: Balsa, Carlos
Publicado em: (2023)
por: Balsa, Carlos
Publicado em: (2023)
article A new proposal for estimating the temperatures on the steel deck components of composite slabs under fire
por: Balsa, Carlos
Publicado em: (2023)
por: Balsa, Carlos
Publicado em: (2023)
groups A new proposal for estimating the temperatures on the steel deck components of composite slabs under fire
por: Balsa, Carlos
Publicado em: (2023)
por: Balsa, Carlos
Publicado em: (2023)
school New developments on the bending resistance in composite slabs with steel deck under fire
por: Silveira, Matheus Bez da
Publicado em: (2022)
por: Silveira, Matheus Bez da
Publicado em: (2022)
article Fire safety in perforated wooden slab, a numerical approach
por: Fonseca, E.M.M.
Publicado em: (2013)
por: Fonseca, E.M.M.
Publicado em: (2013)
article Punching behavior of BubbleDeck type reinforced concrete slabs
por: Nicácio, Wanderley G.
Publicado em: (2020)
por: Nicácio, Wanderley G.
Publicado em: (2020)
school Numerical analysis of wooden slabs with perforations under fire conditions
por: Haddad, Djaafer
Publicado em: (2016)
por: Haddad, Djaafer
Publicado em: (2016)
groups Advanced Calculation Model Calibrated with Experimental Test of Wooden Slabs Exposed to Fire
por: Fonseca, Elza M M
Publicado em: (2019)
por: Fonseca, Elza M M
Publicado em: (2019)
school Influence of concrete thickness on the natural fire resistance of composite SLABS
por: Amira, Sirine
Publicado em: (2020)
por: Amira, Sirine
Publicado em: (2020)
article A new calculation method for the temperature of the components of composite slabs under fire
por: Piloto, Paulo A.G.
Publicado em: (2021)
por: Piloto, Paulo A.G.
Publicado em: (2021)
article Fire resistance of cellular wooden slabs with rectangular and circular perforations
por: Couto, David
Publicado em: (2015)
por: Couto, David
Publicado em: (2015)
groups Fire resistance of cellular wooden slabs with rectangular and circular perforations
por: Couto, David
Publicado em: (2015)
por: Couto, David
Publicado em: (2015)
article Perforated cellular wooden slabs under fire: Numerical and experimental approaches
por: Couto, David
Publicado em: (2016)
por: Couto, David
Publicado em: (2016)
Registos relacionados
-
article Validation models on the fire resistance of composite slab with steel deck
por: Piloto, P.A.G.
Publicado em: (2019) -
article The load-bearing of composite slabs with steel deck under natural fires
por: Alencar Filho, Marcílio Mariano
Publicado em: (2022) -
article The air gap effect on the fire resistance of composite slab with steel deck
por: Piloto, P.A.G.
Publicado em: (2019) -
groups Critical temperature for the components of composite slabs with steel deck under fire for load-bearing rating
por: Piloto, P.A.G.
Publicado em: (2019) -
article Fire resistance of composite slabs with steel deck: from experiments to numerical simulation
por: Piloto, P.A.G.
Publicado em: (2019)