Analytical description of physical and technical parameters of a bending reinforced concrete structure, influencing reinforcement fire resistance

The paper presents field experiments and analytical description results of physical and technical parameters of bending reinforced concrete structures and their fire resistance. The results take into account the burial depth of working reinforcement, the thermo-diffusion value of protective layer co...

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Main Authors: Ilyin Nikolay, Panfilov Denis, Gorshkalev Pavel
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201819604019
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spelling doaj-1a34141ce9d44cb0a8cee961fd1211672021-02-02T04:46:18ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011960401910.1051/matecconf/201819604019matecconf_rsp2018_04019Analytical description of physical and technical parameters of a bending reinforced concrete structure, influencing reinforcement fire resistanceIlyin NikolayPanfilov DenisGorshkalev PavelThe paper presents field experiments and analytical description results of physical and technical parameters of bending reinforced concrete structures and their fire resistance. The results take into account the burial depth of working reinforcement, the thermo-diffusion value of protective layer concrete, the degree of reinforcement fire resistance, the nominal diameter of working reinforcement. The degree of reinforcement fire resistance is characterized by the thickness of the protective layer of concrete that changes its size and thermal characteristics in conditions of high temperatures, corrected for the conditions of the center of gravity in the reinforcement cross-section heating up. The study reveals a mathematical description of the indicators, which take into account the value of concrete thermo-diffusion reduced coefficient, intensity of force tension in working reinforcement and the size of its diameter. Analytical functions are derived for these indicators. This research results can be used for making computer algorithms and programs to calculate design fire resistance of bending reinforced concrete constructions of buildings and constructions.https://doi.org/10.1051/matecconf/201819604019
collection DOAJ
language English
format Article
sources DOAJ
author Ilyin Nikolay
Panfilov Denis
Gorshkalev Pavel
spellingShingle Ilyin Nikolay
Panfilov Denis
Gorshkalev Pavel
Analytical description of physical and technical parameters of a bending reinforced concrete structure, influencing reinforcement fire resistance
MATEC Web of Conferences
author_facet Ilyin Nikolay
Panfilov Denis
Gorshkalev Pavel
author_sort Ilyin Nikolay
title Analytical description of physical and technical parameters of a bending reinforced concrete structure, influencing reinforcement fire resistance
title_short Analytical description of physical and technical parameters of a bending reinforced concrete structure, influencing reinforcement fire resistance
title_full Analytical description of physical and technical parameters of a bending reinforced concrete structure, influencing reinforcement fire resistance
title_fullStr Analytical description of physical and technical parameters of a bending reinforced concrete structure, influencing reinforcement fire resistance
title_full_unstemmed Analytical description of physical and technical parameters of a bending reinforced concrete structure, influencing reinforcement fire resistance
title_sort analytical description of physical and technical parameters of a bending reinforced concrete structure, influencing reinforcement fire resistance
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description The paper presents field experiments and analytical description results of physical and technical parameters of bending reinforced concrete structures and their fire resistance. The results take into account the burial depth of working reinforcement, the thermo-diffusion value of protective layer concrete, the degree of reinforcement fire resistance, the nominal diameter of working reinforcement. The degree of reinforcement fire resistance is characterized by the thickness of the protective layer of concrete that changes its size and thermal characteristics in conditions of high temperatures, corrected for the conditions of the center of gravity in the reinforcement cross-section heating up. The study reveals a mathematical description of the indicators, which take into account the value of concrete thermo-diffusion reduced coefficient, intensity of force tension in working reinforcement and the size of its diameter. Analytical functions are derived for these indicators. This research results can be used for making computer algorithms and programs to calculate design fire resistance of bending reinforced concrete constructions of buildings and constructions.
url https://doi.org/10.1051/matecconf/201819604019
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AT panfilovdenis analyticaldescriptionofphysicalandtechnicalparametersofabendingreinforcedconcretestructureinfluencingreinforcementfireresistance
AT gorshkalevpavel analyticaldescriptionofphysicalandtechnicalparametersofabendingreinforcedconcretestructureinfluencingreinforcementfireresistance
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