RESEARCH OF THE STRESS STATE OF A MODIFIED IN-SITU CONCRETE

Purpose. The article focuses on investigation of the stress state of a modified in-situ concrete of natural hardening. Methodology. To achieve the aim, the research of the microstructure of the modified cement matrix of concrete, as well as the mechanism of structure formation of modified concrete w...

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Main Author: D. V. Rudenko
Format: Article
Language:English
Published: Dnipro National University of Railway Transport named after Academician V. Lazaryan 2016-12-01
Series:Nauka ta progres transportu
Subjects:
Online Access:http://stp.diit.edu.ua/article/view/90515/86974
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spelling doaj-5557e3d99d894cc5811656354be4df602020-11-25T03:24:36Zeng Dnipro National University of Railway Transport named after Academician V. LazaryanNauka ta progres transportu2307-34892307-66662016-12-0166616617410.15802/stp2016/90515 RESEARCH OF THE STRESS STATE OF A MODIFIED IN-SITU CONCRETED. V. Rudenko0Zaporizhzhia State Engineering AcademyPurpose. The article focuses on investigation of the stress state of a modified in-situ concrete of natural hardening. Methodology. To achieve the aim, the research of the microstructure of the modified cement matrix of concrete, as well as the mechanism of structure formation of modified concrete with natural hardening was conducted; the methods for reliable evaluation of concrete strength were defined. Findings. The development of internal stresses affects the properties of concretedifferently. With an increase in temperature-shrinkage deformations in time and, thus, with increasing structural stresses in the cement sheath around the grains of the filler two opposite processes may develop: zone of plastic flow or cracking. Originality. It was established that the structural features complex of the modified concrete when the load transfer leads to the formation of extensive zones of prefracture which is able to absorb a significant amount of elastic strain energy that provides the design deformation properties of the concrete for special purposes. Ideas about the definition of the criteria of cracking modified concrete, hardening under natural conditions had further development. Practical value. The resulting equations allow to solve the problem about the minimum level of structural stress in monolithic concrete in a saturated large placeholder, as well as to assess the influence of structural stresses on the properties of concrete. In normal concrete with a relatively thin cement sheath at temperature-shrinkage deformations, high tangential and low radial tension occur. In vivo, this stress is higher as a result of higher values of Δε(τ), which is not observed in the modified concrete. In the modified concretes only tangential stresses are the greatest danger to structures. The change of shrinkage stress with time is straightforward. The total temperature-shrinkage deformations have a sawtooth graph. For modified concrete the amplitude is 48…53% less. This will allow solving a number of technological challenges in the construction of monolithic buildings.http://stp.diit.edu.ua/article/view/90515/86974modified concretein-situ concretestress statedeformation characteristics
collection DOAJ
language English
format Article
sources DOAJ
author D. V. Rudenko
spellingShingle D. V. Rudenko
RESEARCH OF THE STRESS STATE OF A MODIFIED IN-SITU CONCRETE
Nauka ta progres transportu
modified concrete
in-situ concrete
stress state
deformation characteristics
author_facet D. V. Rudenko
author_sort D. V. Rudenko
title RESEARCH OF THE STRESS STATE OF A MODIFIED IN-SITU CONCRETE
title_short RESEARCH OF THE STRESS STATE OF A MODIFIED IN-SITU CONCRETE
title_full RESEARCH OF THE STRESS STATE OF A MODIFIED IN-SITU CONCRETE
title_fullStr RESEARCH OF THE STRESS STATE OF A MODIFIED IN-SITU CONCRETE
title_full_unstemmed RESEARCH OF THE STRESS STATE OF A MODIFIED IN-SITU CONCRETE
title_sort research of the stress state of a modified in-situ concrete
publisher Dnipro National University of Railway Transport named after Academician V. Lazaryan
series Nauka ta progres transportu
issn 2307-3489
2307-6666
publishDate 2016-12-01
description Purpose. The article focuses on investigation of the stress state of a modified in-situ concrete of natural hardening. Methodology. To achieve the aim, the research of the microstructure of the modified cement matrix of concrete, as well as the mechanism of structure formation of modified concrete with natural hardening was conducted; the methods for reliable evaluation of concrete strength were defined. Findings. The development of internal stresses affects the properties of concretedifferently. With an increase in temperature-shrinkage deformations in time and, thus, with increasing structural stresses in the cement sheath around the grains of the filler two opposite processes may develop: zone of plastic flow or cracking. Originality. It was established that the structural features complex of the modified concrete when the load transfer leads to the formation of extensive zones of prefracture which is able to absorb a significant amount of elastic strain energy that provides the design deformation properties of the concrete for special purposes. Ideas about the definition of the criteria of cracking modified concrete, hardening under natural conditions had further development. Practical value. The resulting equations allow to solve the problem about the minimum level of structural stress in monolithic concrete in a saturated large placeholder, as well as to assess the influence of structural stresses on the properties of concrete. In normal concrete with a relatively thin cement sheath at temperature-shrinkage deformations, high tangential and low radial tension occur. In vivo, this stress is higher as a result of higher values of Δε(τ), which is not observed in the modified concrete. In the modified concretes only tangential stresses are the greatest danger to structures. The change of shrinkage stress with time is straightforward. The total temperature-shrinkage deformations have a sawtooth graph. For modified concrete the amplitude is 48…53% less. This will allow solving a number of technological challenges in the construction of monolithic buildings.
topic modified concrete
in-situ concrete
stress state
deformation characteristics
url http://stp.diit.edu.ua/article/view/90515/86974
work_keys_str_mv AT dvrudenko researchofthestressstateofamodifiedinsituconcrete
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