STATIC BEARING CAPACITY OF STEEL-PLATE COMPOSITE WALLS

The features of the behavior of steel-plate composite walls for static loads are considered. Based on the analysis of modern technical and regulatory documentation, the rationale for the chosen research topic is given. A review of the literature is performed, and the features of development are not...

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Main Authors: Vladimir Travush, Petr Arleninov, Mikhail Desyatkin, Andrey Ivaschenko, Semen Kaprielov, Denis Konin, Alexey Krylov, Sergey Krylov, Igor Chilin, Andrey Sheinfeld
Format: Article
Language:English
Published: Publishing House ASV 2023-12-01
Series:International Journal for Computational Civil and Structural Engineering
Subjects:
Online Access:https://ijccse.iasv.ru/index.php/ijccse/article/view/764
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author Vladimir Travush
Petr Arleninov
Mikhail Desyatkin
Mikhail Desyatkin
Andrey Ivaschenko
Semen Kaprielov
Denis Konin
Alexey Krylov
Sergey Krylov
Igor Chilin
Andrey Sheinfeld
author_facet Vladimir Travush
Petr Arleninov
Mikhail Desyatkin
Mikhail Desyatkin
Andrey Ivaschenko
Semen Kaprielov
Denis Konin
Alexey Krylov
Sergey Krylov
Igor Chilin
Andrey Sheinfeld
author_sort Vladimir Travush
collection DOAJ
description The features of the behavior of steel-plate composite walls for static loads are considered. Based on the analysis of modern technical and regulatory documentation, the rationale for the chosen research topic is given. A review of the literature is performed, and the features of development are noted. A detailed description and features of the experimental structures under study and the materials used are presented. The features of the test are considered, and the test equipment is described. Analytical and numerical calculations of structures for eccentric compression have been performed. The description of the calculation complex and the used models of materials is presented; the description of numerical models, the features of their construction and calculation are given, the results of calculations are presented – stress distributions, deformations, features of cracking. The general types of experimental eccentric compression wall models are presented, the nature of the loss of bearing capacity of experimental structures is described, and a picture of destruction is presented. The analysis of the experimental data obtained and their comparison with analytical and numerical calculations are performed.
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spelling doaj.art-07b39578919f4369836f76bc7338ff3d2023-12-28T06:12:11ZengPublishing House ASVInternational Journal for Computational Civil and Structural Engineering2587-96182588-01952023-12-0119410.22337/2587-9618-2023-19-4-166-181STATIC BEARING CAPACITY OF STEEL-PLATE COMPOSITE WALLSVladimir Travush0Petr Arleninov1Mikhail Desyatkin2Mikhail Desyatkin3Andrey Ivaschenko4Semen Kaprielov5Denis Konin6Alexey Krylov7Sergey Krylov8Igor Chilin9Andrey Sheinfeld10Gorproject, Moscow, RUSSIANational Research Moscow State University of Civil Engineering, Moscow, RUSSIAInforsproekt, Moscow, RUSSIAInforsproekt, Moscow, RUSSIAInforsproekt, Moscow, RUSSIAJSC Research Center of Construction NIIZHB named after A.A. Gvozdev, Moscow, RUSSIAJSC Research Center of Construction TSNIISK named after V.A. Koucherenko, Moscow, RUSSIAJSC Research Center of Construction TSNIISK named after V.A. Koucherenko, Moscow, RUSSIASC Research Center of Construction NIIZHB named after A.A. Gvozdev, Moscow, RUSSIAJSC Research Center of Construction NIIZHB named after A.A. Gvozdev, Moscow, RUSSIAJSC Research Center of Construction NIIZHB named after A.A. Gvozdev, Moscow, RUSSIA The features of the behavior of steel-plate composite walls for static loads are considered. Based on the analysis of modern technical and regulatory documentation, the rationale for the chosen research topic is given. A review of the literature is performed, and the features of development are noted. A detailed description and features of the experimental structures under study and the materials used are presented. The features of the test are considered, and the test equipment is described. Analytical and numerical calculations of structures for eccentric compression have been performed. The description of the calculation complex and the used models of materials is presented; the description of numerical models, the features of their construction and calculation are given, the results of calculations are presented – stress distributions, deformations, features of cracking. The general types of experimental eccentric compression wall models are presented, the nature of the loss of bearing capacity of experimental structures is described, and a picture of destruction is presented. The analysis of the experimental data obtained and their comparison with analytical and numerical calculations are performed. https://ijccse.iasv.ru/index.php/ijccse/article/view/764oncrete, steel, reinforced concrete, composite steel and concrete structure, steel-plate reinforcement, steel-plate composite (SC) walls, adhesion, stud
spellingShingle Vladimir Travush
Petr Arleninov
Mikhail Desyatkin
Mikhail Desyatkin
Andrey Ivaschenko
Semen Kaprielov
Denis Konin
Alexey Krylov
Sergey Krylov
Igor Chilin
Andrey Sheinfeld
STATIC BEARING CAPACITY OF STEEL-PLATE COMPOSITE WALLS
International Journal for Computational Civil and Structural Engineering
oncrete, steel, reinforced concrete, composite steel and concrete structure, steel-plate reinforcement, steel-plate composite (SC) walls, adhesion, stud
title STATIC BEARING CAPACITY OF STEEL-PLATE COMPOSITE WALLS
title_full STATIC BEARING CAPACITY OF STEEL-PLATE COMPOSITE WALLS
title_fullStr STATIC BEARING CAPACITY OF STEEL-PLATE COMPOSITE WALLS
title_full_unstemmed STATIC BEARING CAPACITY OF STEEL-PLATE COMPOSITE WALLS
title_short STATIC BEARING CAPACITY OF STEEL-PLATE COMPOSITE WALLS
title_sort static bearing capacity of steel plate composite walls
topic oncrete, steel, reinforced concrete, composite steel and concrete structure, steel-plate reinforcement, steel-plate composite (SC) walls, adhesion, stud
url https://ijccse.iasv.ru/index.php/ijccse/article/view/764
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AT andreyivaschenko staticbearingcapacityofsteelplatecompositewalls
AT semenkaprielov staticbearingcapacityofsteelplatecompositewalls
AT deniskonin staticbearingcapacityofsteelplatecompositewalls
AT alexeykrylov staticbearingcapacityofsteelplatecompositewalls
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