The analysis of deflections and cracking resistance in pre-stressed slabs of off-shuttering formation

The paper presents an example of calculations of an assembled reinforced concrete hollow core slab of off-shuttering formation which has been reinforced with pre-stressed wire in its top and bottom areas. The numerical modelling of statically determinate pre-stressed assembled reinforced concrete ho...

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Main Authors: Panfilov Denis, Piskareva Irina, Fomina Julia
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20168601008
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spelling doaj-a80896e184064baa9bef38cbd4615b812021-04-02T14:17:41ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01860100810.1051/matecconf/20168601008matecconf_ipicse2016_01008The analysis of deflections and cracking resistance in pre-stressed slabs of off-shuttering formationPanfilov Denis0Piskareva Irina1Fomina Julia2Samara State Technical University, Institute of Architecture and Civil EngineeringSamara State Technical University, Institute of Architecture and Civil EngineeringSamara State Technical University, Institute of Architecture and Civil EngineeringThe paper presents an example of calculations of an assembled reinforced concrete hollow core slab of off-shuttering formation which has been reinforced with pre-stressed wire in its top and bottom areas. The numerical modelling of statically determinate pre-stressed assembled reinforced concrete hollow core slab exposed to short duration uniform loading is shown as a finite element model in PC “LIRA SAPR 2014 R3”. This article contains information about the finite elements used, fixing conditions of the slab and of the order in which links between concrete and steel reinforcement were modelled. The calculation results are presented in the form of isofields of finite elements motion in this calculation model. Table 1 presents research results as a finite element model calculations according to the methodology given in specification documents.http://dx.doi.org/10.1051/matecconf/20168601008
collection DOAJ
language English
format Article
sources DOAJ
author Panfilov Denis
Piskareva Irina
Fomina Julia
spellingShingle Panfilov Denis
Piskareva Irina
Fomina Julia
The analysis of deflections and cracking resistance in pre-stressed slabs of off-shuttering formation
MATEC Web of Conferences
author_facet Panfilov Denis
Piskareva Irina
Fomina Julia
author_sort Panfilov Denis
title The analysis of deflections and cracking resistance in pre-stressed slabs of off-shuttering formation
title_short The analysis of deflections and cracking resistance in pre-stressed slabs of off-shuttering formation
title_full The analysis of deflections and cracking resistance in pre-stressed slabs of off-shuttering formation
title_fullStr The analysis of deflections and cracking resistance in pre-stressed slabs of off-shuttering formation
title_full_unstemmed The analysis of deflections and cracking resistance in pre-stressed slabs of off-shuttering formation
title_sort analysis of deflections and cracking resistance in pre-stressed slabs of off-shuttering formation
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2016-01-01
description The paper presents an example of calculations of an assembled reinforced concrete hollow core slab of off-shuttering formation which has been reinforced with pre-stressed wire in its top and bottom areas. The numerical modelling of statically determinate pre-stressed assembled reinforced concrete hollow core slab exposed to short duration uniform loading is shown as a finite element model in PC “LIRA SAPR 2014 R3”. This article contains information about the finite elements used, fixing conditions of the slab and of the order in which links between concrete and steel reinforcement were modelled. The calculation results are presented in the form of isofields of finite elements motion in this calculation model. Table 1 presents research results as a finite element model calculations according to the methodology given in specification documents.
url http://dx.doi.org/10.1051/matecconf/20168601008
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