Stability problems of steel‐concrete members composed of high‐strength materials

The presented paper deals with the stochastic analysis of the ultimate limit states of steel‐concrete building members. The load carrying capacity of steel‐concrete columns, comprising of steel profiles encased in high strength concrete, in compression is analyzed. The first part of the paper lists...

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Main Authors: Zdeněk Kala, Libor Puklický, Abayomi Omishore, Marcela Karmazínová, Jindřich Melcher
Format: Article
Language:English
Published: Vilnius Gediminas Technical University 2010-09-01
Series:Journal of Civil Engineering and Management
Subjects:
Online Access:https://journals.vgtu.lt/index.php/JCEM/article/view/5964
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spelling doaj-7a4c9e3c95fa45feae02a4324216b72a2021-07-02T01:20:51ZengVilnius Gediminas Technical UniversityJournal of Civil Engineering and Management1392-37301822-36052010-09-01163Stability problems of steel‐concrete members composed of high‐strength materialsZdeněk Kala0Libor Puklický1Abayomi Omishore2Marcela Karmazínová3Jindřich Melcher4Brno University of Technology, Faculty of Civil Engineering, Institute of Structural Mechanics, Veveří Str. 95, 602 00 Brno, Czech RepublicBrno University of Technology, Faculty of Civil Engineering, Institute of Structural Mechanics, Veveří Str. 95, 602 00 Brno, Czech RepublicBrno University of Technology, Faculty of Civil Engineering, Institute of Structural Mechanics, Veveří Str. 95, 602 00 Brno, Czech RepublicBrno University of Technology, Faculty of Civil Engineering, Institute of Metal and Timber Structures, Veveří Str. 95, 602 00 Brno, Czech RepublicBrno University of Technology, Faculty of Civil Engineering, Institute of Metal and Timber Structures, Veveří Str. 95, 602 00 Brno, Czech Republic The presented paper deals with the stochastic analysis of the ultimate limit states of steel‐concrete building members. The load carrying capacity of steel‐concrete columns, comprising of steel profiles encased in high strength concrete, in compression is analyzed. The first part of the paper lists assumptions for the determination of the theoretical load carrying capacity of the column. Principles of elasticity and plasticity are used to determine stresses in the concrete and steel sections. Statistical characteristics of input material and geometrical imperfections are listed. Results of the theoretical analysis are then compared with results of experimental research. Statistical characteristics of obtained results of the theoretical analysis were verified using statistical characteristics obtained from experimental research. Numerical simulation LHS and Monte Carlo methods, which take into account the influences of variability of input imperfections, were employed. The influence of the utilization of the plastic reserve in the determination of the load carrying capacity of the analysed strut is shown. The influence of the initial geometric imperfections of initial strut curvature on the load carrying capacity is also presented. Santrauka Straipsnyje pateikta plienbetonio pastatu elementu didžiausiu ribiniu būkliu stochastine analize, analizuojama plienbetonio kolonu, sudarytu iš plieniniu profiliuočiu, padengtu didelio stiprio betonu, laikomoji galia gniuždant. Pirmoje straipsnio dalyje išvardytos kolonos teorines laikomosios galios nustatymo prielaidos. Tamprumo ir plastiškumo principai taikyti itempiams betono ir plieno skerspjūviuose nustatyti. Nustatytos medžiagu ir geometriniu defektu statistines charakteristikos, teorines analizes rezultatai palyginti su eksperimentiniu tyrimu rezultatais. Teorines analizes metu gautu rezultatu statistines charakteristikos patikrintos taikant iš eksperimentiniu tyrimu gautus statistinius rodiklius. Pritaikytas skaitinis modeliavimas LHS ir Monte Karlo metodais, kurie ivertina pradiniu defektu kintamumo itaka. Parodyta plastiškumo atsargos naudojimo itaka, nustatant analizuojamojo statramsčio laikomaja galia, pateikta pradinio statramsčio išlinkio pirminiu geometriniu defektu itaka laikomajai galiai. First Published Online: 10 Feb 2011 Reikšminiai žodžiai: medžiagos, plienas, betonas, struktūra, defektai, susilpnejimas, patikimumas https://journals.vgtu.lt/index.php/JCEM/article/view/5964materialsteelconcretestructureimperfectionsfailure
collection DOAJ
language English
format Article
sources DOAJ
author Zdeněk Kala
Libor Puklický
Abayomi Omishore
Marcela Karmazínová
Jindřich Melcher
spellingShingle Zdeněk Kala
Libor Puklický
Abayomi Omishore
Marcela Karmazínová
Jindřich Melcher
Stability problems of steel‐concrete members composed of high‐strength materials
Journal of Civil Engineering and Management
material
steel
concrete
structure
imperfections
failure
author_facet Zdeněk Kala
Libor Puklický
Abayomi Omishore
Marcela Karmazínová
Jindřich Melcher
author_sort Zdeněk Kala
title Stability problems of steel‐concrete members composed of high‐strength materials
title_short Stability problems of steel‐concrete members composed of high‐strength materials
title_full Stability problems of steel‐concrete members composed of high‐strength materials
title_fullStr Stability problems of steel‐concrete members composed of high‐strength materials
title_full_unstemmed Stability problems of steel‐concrete members composed of high‐strength materials
title_sort stability problems of steel‐concrete members composed of high‐strength materials
publisher Vilnius Gediminas Technical University
series Journal of Civil Engineering and Management
issn 1392-3730
1822-3605
publishDate 2010-09-01
description The presented paper deals with the stochastic analysis of the ultimate limit states of steel‐concrete building members. The load carrying capacity of steel‐concrete columns, comprising of steel profiles encased in high strength concrete, in compression is analyzed. The first part of the paper lists assumptions for the determination of the theoretical load carrying capacity of the column. Principles of elasticity and plasticity are used to determine stresses in the concrete and steel sections. Statistical characteristics of input material and geometrical imperfections are listed. Results of the theoretical analysis are then compared with results of experimental research. Statistical characteristics of obtained results of the theoretical analysis were verified using statistical characteristics obtained from experimental research. Numerical simulation LHS and Monte Carlo methods, which take into account the influences of variability of input imperfections, were employed. The influence of the utilization of the plastic reserve in the determination of the load carrying capacity of the analysed strut is shown. The influence of the initial geometric imperfections of initial strut curvature on the load carrying capacity is also presented. Santrauka Straipsnyje pateikta plienbetonio pastatu elementu didžiausiu ribiniu būkliu stochastine analize, analizuojama plienbetonio kolonu, sudarytu iš plieniniu profiliuočiu, padengtu didelio stiprio betonu, laikomoji galia gniuždant. Pirmoje straipsnio dalyje išvardytos kolonos teorines laikomosios galios nustatymo prielaidos. Tamprumo ir plastiškumo principai taikyti itempiams betono ir plieno skerspjūviuose nustatyti. Nustatytos medžiagu ir geometriniu defektu statistines charakteristikos, teorines analizes rezultatai palyginti su eksperimentiniu tyrimu rezultatais. Teorines analizes metu gautu rezultatu statistines charakteristikos patikrintos taikant iš eksperimentiniu tyrimu gautus statistinius rodiklius. Pritaikytas skaitinis modeliavimas LHS ir Monte Karlo metodais, kurie ivertina pradiniu defektu kintamumo itaka. Parodyta plastiškumo atsargos naudojimo itaka, nustatant analizuojamojo statramsčio laikomaja galia, pateikta pradinio statramsčio išlinkio pirminiu geometriniu defektu itaka laikomajai galiai. First Published Online: 10 Feb 2011 Reikšminiai žodžiai: medžiagos, plienas, betonas, struktūra, defektai, susilpnejimas, patikimumas
topic material
steel
concrete
structure
imperfections
failure
url https://journals.vgtu.lt/index.php/JCEM/article/view/5964
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