Effect of Negative Temperatures on the Strength and Deformability of a Reinforced Concrete Element

One of the main components of the economic development of the Russian Federation is the current trend in the development of the territories of the Far North and the Arctic. The need for such development is enshrined at the state level in various programs. Experiments on the study of the effect of ne...

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Main Authors: Andrey D. Istomin, Victoria A. Petrova
Format: Article
Language:English
Published: Moscow State University of Civil Engineering (MGSU) 2023-10-01
Series:Железобетонные конструкции
Subjects:
Online Access:https://www.g-b-k.ru/jour/article/view/28
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author Andrey D. Istomin
Victoria A. Petrova
author_facet Andrey D. Istomin
Victoria A. Petrova
author_sort Andrey D. Istomin
collection DOAJ
description One of the main components of the economic development of the Russian Federation is the current trend in the development of the territories of the Far North and the Arctic. The need for such development is enshrined at the state level in various programs. Experiments on the study of the effect of negative temperatures on the operation of reinforcing steel show that with decreasing temperature, an increase in strength and modulus of elasticity is observed. At the same time, there are no unified recommendations on the deformation and strength properties of reinforcement for calculating reinforced concrete structures under conditions of low and ultra-low negative temperatures. RF standards do not take into account the influence of climatic (up to -70°C) and technological (up to -196°C) negative temperatures on the deformation and strength characteristics of reinforcing steel.The purpose of this work was to experimentally study the effect of negative temperatures (up to -196°C) on the deformation-strength properties of reinforcement, concrete and reinforced concrete rod elements. Concrete prisms 10x10x40 cm, samples of reinforcement of a periodic profile of class A400 and reinforced concrete prismatic rods with a section size of 12x18 cm and a reinforcement percentage of 1.45% were taken as prototypes. At the same time, the negative temperature of the tests varied. As a result of the studies carried out with centrally stretched reinforced concrete elements, it was found that lowering the temperature to -165°С leads to an in-crease in the cracking force by 162%; strength by 85%. Empirical dependencies are proposed to determine the deformation-strength characteristics of reinforcing steel, depending on the negative temperature.
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institution Kabale University
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language English
publishDate 2023-10-01
publisher Moscow State University of Civil Engineering (MGSU)
record_format Article
series Железобетонные конструкции
spelling doaj-art-337d96b9bd4e44b6906d953e58f26d032025-02-06T07:09:54ZengMoscow State University of Civil Engineering (MGSU)Железобетонные конструкции2949-16222949-16142023-10-014431210.22227/2949-1622.2023.4.3-1226Effect of Negative Temperatures on the Strength and Deformability of a Reinforced Concrete ElementAndrey D. Istomin0Victoria A. Petrova1Moscow State University of Civil Engineering (National Research University) (MGSU)Smart Construction LLCOne of the main components of the economic development of the Russian Federation is the current trend in the development of the territories of the Far North and the Arctic. The need for such development is enshrined at the state level in various programs. Experiments on the study of the effect of negative temperatures on the operation of reinforcing steel show that with decreasing temperature, an increase in strength and modulus of elasticity is observed. At the same time, there are no unified recommendations on the deformation and strength properties of reinforcement for calculating reinforced concrete structures under conditions of low and ultra-low negative temperatures. RF standards do not take into account the influence of climatic (up to -70°C) and technological (up to -196°C) negative temperatures on the deformation and strength characteristics of reinforcing steel.The purpose of this work was to experimentally study the effect of negative temperatures (up to -196°C) on the deformation-strength properties of reinforcement, concrete and reinforced concrete rod elements. Concrete prisms 10x10x40 cm, samples of reinforcement of a periodic profile of class A400 and reinforced concrete prismatic rods with a section size of 12x18 cm and a reinforcement percentage of 1.45% were taken as prototypes. At the same time, the negative temperature of the tests varied. As a result of the studies carried out with centrally stretched reinforced concrete elements, it was found that lowering the temperature to -165°С leads to an in-crease in the cracking force by 162%; strength by 85%. Empirical dependencies are proposed to determine the deformation-strength characteristics of reinforcing steel, depending on the negative temperature.https://www.g-b-k.ru/jour/article/view/28centrally tensioned reinforced concrete elementclimatic and technological negative temperaturedeformation-strength properties of reinforcementstrengthmodulus of elasticitycracking
spellingShingle Andrey D. Istomin
Victoria A. Petrova
Effect of Negative Temperatures on the Strength and Deformability of a Reinforced Concrete Element
Железобетонные конструкции
centrally tensioned reinforced concrete element
climatic and technological negative temperature
deformation-strength properties of reinforcement
strength
modulus of elasticity
cracking
title Effect of Negative Temperatures on the Strength and Deformability of a Reinforced Concrete Element
title_full Effect of Negative Temperatures on the Strength and Deformability of a Reinforced Concrete Element
title_fullStr Effect of Negative Temperatures on the Strength and Deformability of a Reinforced Concrete Element
title_full_unstemmed Effect of Negative Temperatures on the Strength and Deformability of a Reinforced Concrete Element
title_short Effect of Negative Temperatures on the Strength and Deformability of a Reinforced Concrete Element
title_sort effect of negative temperatures on the strength and deformability of a reinforced concrete element
topic centrally tensioned reinforced concrete element
climatic and technological negative temperature
deformation-strength properties of reinforcement
strength
modulus of elasticity
cracking
url https://www.g-b-k.ru/jour/article/view/28
work_keys_str_mv AT andreydistomin effectofnegativetemperaturesonthestrengthanddeformabilityofareinforcedconcreteelement
AT victoriaapetrova effectofnegativetemperaturesonthestrengthanddeformabilityofareinforcedconcreteelement